Source: https://patents.google.com/patent/JP6375772B2/en
Timestamp: 2019-11-14 23:20:11
Document Index: 57799645

Matched Legal Cases: ['art 50', 'art 51', 'art 50', 'art 61', 'art 41', 'art 44', 'art 46', 'art 51', 'art, 42']

JP6375772B2 - Report system, information processing system, server device, terminal device, and program - Google Patents
Report system, information processing system, server device, terminal device, and program Download PDF
JP6375772B2
JP6375772B2 JP2014163892A JP2014163892A JP6375772B2 JP 6375772 B2 JP6375772 B2 JP 6375772B2 JP 2014163892 A JP2014163892 A JP 2014163892A JP 2014163892 A JP2014163892 A JP 2014163892A JP 6375772 B2 JP6375772 B2 JP 6375772B2
JP2014163892A
JP2016038880A (en
2014-08-11 Application filed by 株式会社デンソー filed Critical 株式会社デンソー
2014-08-11 Priority to JP2014163892A priority Critical patent/JP6375772B2/en
2016-03-22 Publication of JP2016038880A publication Critical patent/JP2016038880A/en
2018-08-22 Publication of JP6375772B2 publication Critical patent/JP6375772B2/en
The present invention relates to a notification system including an information processing system existing in a vehicle and a server device configured to be able to perform wireless communication with the information processing system.
When the vehicle stops on the road, particularly when the vehicle stops while traveling on a highway, it is necessary to quickly signal the subsequent vehicle that the vehicle has stopped. However, the method using a reflector or a flame tube takes time and may cause an accident.
Conventionally, a technique has been proposed in which a base station side arithmetic device receives a plurality of vehicle information, determines whether the vehicle is a preceding vehicle or a succeeding vehicle, and provides information to the succeeding vehicle (see Patent Document 1). In the technique of Patent Document 1, a GPS position signal is acquired to identify the position of a vehicle, and the positional relationship between a plurality of vehicles is determined.
JP 2002-222491 A
When the running vehicle stops, the earlier the timing at which the driver of the following vehicle recognizes the stop of the preceding vehicle, the higher the possibility of accident avoidance.Therefore, information indicating that the vehicle has stopped It is preferable to transmit as early as possible.
An object of the present invention is to provide a technique for quickly transmitting information to another vehicle when the vehicle stops traveling.
A notification system (1) according to a first aspect of the present invention includes an information processing system (5) present in a vehicle and a server device (2) configured to be able to wirelessly communicate with the information processing system. System.
The information processing system includes an information acquisition unit (41), an entry determination unit (44), an entry signal transmission unit (45), a stop detection unit (46), a first transmission unit (47), and a process execution unit. (51).
The information acquisition unit acquires travel region information that is information related to a region where the vehicle travels. The entry determination unit determines whether the vehicle has entered a specific range. The approach signal transmission unit includes the travel area information acquired by the information acquisition unit and the specific information that is information that can specify the information processing system when the approach determination unit determines that the vehicle has entered the specific range. , An approach signal that is a signal including, is transmitted to the server device.
The stop detection unit detects a signal related to the stop of traveling of the vehicle. A 1st transmission part transmits the 1st stop signal which is a signal containing driving | running | working area information to a server apparatus, when the said signal is detected by the stop detection part.
Further, the processing execution unit transmits from the server device when the server device receives a first stop signal transmitted from an information processing system existing in another vehicle different from the own vehicle that is the vehicle in which the information processing system exists. When a second stop signal is received, which is a signal including information regarding the stop position of the other vehicle, a predetermined process is executed.
The server device includes a vehicle information storage unit (61), a signal generation unit (63), a transmission destination specifying unit (64a), and a second transmission unit (65).
The vehicle information storage unit stores the travel area information and the specific information included in the entry signal in association with each other when the entry signal transmitted from the entry signal transmission unit is received. The signal generation unit generates a second stop signal based on the first stop signal transmitted from the first transmission unit.
When the transmission destination specifying unit receives the first stop signal transmitted from the first transmission unit, the information processing system existing in the range determined based on the travel area information included in the first stop signal is It specifies based on the travel area information and specific information memorize | stored in a memory | storage part. The second transmission unit, the information processing system identified by the destination specifying unit, transmits the second stop signal generated by the signal generation unit.
The vehicle information storage unit stores one area among a plurality of areas into which roads are divided, which is determined based on travel area information included in the approach signal, and specific information. The transmission destination specifying unit specifies the information processing system based on specific information associated with one area determined based on the travel area information included in the first stop signal.
In the notification system configured as described above, the server device specifies the information processing system of the transmission destination based on the travel area information stored in the vehicle information storage unit. That is, when the first stop signal is received, the transmission destination can be specified only by collating with the travel area information stored in advance, so that the second stop signal can be transmitted quickly.
Moreover, the 2nd aspect of this invention is the information system (1) containing the information processing system (5) which exists in a vehicle, and the server apparatus (2) comprised by the said information processing system so that radio | wireless communication was possible. is there.
The information processing system includes an information acquisition unit (41), a stop detection unit (46), a first transmission unit (47), and a process execution unit (51). These are the same as in the first aspect described above.
The server device includes a signal generation unit (63), a transmission range setting unit (64b), and a second transmission unit (65). The signal generator is the same as in the first aspect described above.
The transmission range setting unit, when receiving the first stop signal transmitted from the first transmission unit, determines a range on the road to transmit the second stop signal based on at least the travel area information included in the first stop signal. Set. The second transmission unit broadcasts and transmits the second stop signal generated by the signal generation unit in the range set by the transmission range setting unit.
In the notification system configured as described above, the server device sets a range in which the second stop signal is to be transmitted based on the signal transmitted from the information processing system, and transmits the second stop signal to the range. Therefore, it is not necessary to individually determine the position where the information processing system exists, and the second stop signal can be transmitted quickly while reducing the processing load on the server device.
According to a third aspect of the present invention, there is provided a notification system (1) including an information processing system (5) existing in a vehicle and a server device (2) configured to be able to wirelessly communicate with the information processing system. is there.
The information processing system includes a vehicle information acquisition unit (151), an entry determination unit (44), an entry transmission (152) unit, an area information storage unit (74), a stop detection unit (46), A transmission unit (47) and a process execution unit (51) are provided. Among these, the entry determination unit, the stop detection unit, and the process execution unit are the same as in the first aspect described above.
A vehicle information acquisition part acquires the information which shows the state of this vehicle containing the positional information on a vehicle, and the information regarding rotation of a steering. The transmission unit at the time of entry is information that indicates the state of the vehicle acquired by the vehicle information acquisition unit and information that can specify the information processing system when it is determined by the entry determination unit that the vehicle has entered the specific range. An approach signal which is a signal including certain specific information is transmitted to the server device.
The area information storage unit stores travel area information, which is information related to the area where the vehicle travels, transmitted from the server device. The first transmission unit transmits a first stop signal, which is a signal including travel region information stored in the region information storage unit, when the stop detection unit detects a signal related to stop of traveling of the vehicle. Send to.
The server device includes an area information generation unit (153), an area information transmission unit (154), a signal generation unit (63), a signal transmission destination setting unit (64), and a second transmission unit (65). Prepare. Among these, the signal generation unit is the same as in the first aspect described above.
The area information generation unit generates travel area information based on information indicating the state of the vehicle included in the approach signal transmitted from the approach transmission unit. The area information transmission unit transmits the travel area information generated by the area information generation unit to an information processing system that is a transmission source of information indicating the state of the vehicle specified by the specific information included in the approach signal.
The signal transmission destination setting unit sets a transmission destination for transmitting the second stop signal based on at least the travel area information included in the first stop signal when the first stop signal transmitted from the first transmission unit is received. To do. The second transmission unit transmits the second stop signal generated by the signal generation unit to the transmission destination set by the signal transmission destination setting unit.
In the notification system configured as described above, the server device generates travel area information based on a signal transmitted from the information processing system. Therefore, the processing load of the information processing system can be reduced.
Another aspect of the present invention is an information processing system constituting the notification system according to any one of the first to third aspects of the present invention described above. Another aspect is a server device constituting the notification system according to any one of the first to third aspects of the present invention described above. If it is such an information processing system and a server apparatus, a part of notification system of this invention can be comprised.
Another aspect of the present invention is an information acquisition unit, an entry determination unit, and an entry signal transmission unit that constitute an information processing system that constitutes the notification system according to any one of the first to third aspects of the present invention described above. And a stop detection unit, a first transmission unit, and a process execution unit, and is configured to be able to be taken out from the vehicle.
The terminal device configured as described above can constitute a part of the information processing system described above.
By the way, although each function part which comprises the information processing system mentioned above may be implement | achieved by hardware, the information acquisition part of an information processing system, an approach determination part, an approach signal transmission part, a stop detection part, a 1st transmission part Alternatively, the processing execution unit may be realized by a program for causing a computer to function.
With such a program, the computer can function as a part of the information processing system described above. The computer is preferably a computer including a storage device capable of storing data and a communication device capable of wireless communication with the outside.
It is a block diagram which shows the structure of a report system. It is a block diagram which shows the structure of an information processing system. It is a functional block diagram of a report system. It is a figure explaining the function of a report system. It is a flowchart explaining the vehicle side main process of 1st Embodiment. It is a flowchart explaining the server 1st response process of 1st Embodiment. It is a figure explaining an area list. It is a flowchart explaining the stop determination process of 1st Embodiment. It is a flowchart explaining the server 2nd response process of 1st Embodiment. It is a flowchart explaining the warning process of 1st Embodiment. It is a flowchart explaining the server 1st response process of 2nd Embodiment. It is a flowchart explaining the server 2nd response process of 2nd Embodiment. It is a figure explaining the selection method of a delivery area. It is a flowchart explaining the server 2nd response process of 3rd Embodiment. It is a figure explaining a stop position range. It is a flowchart explaining the warning process of 3rd Embodiment. It is a flowchart explaining the vehicle side main process of other embodiment. It is a figure explaining the stop position range of other embodiments. It is a functional block diagram of the report system of other embodiments. It is a functional block diagram of the report system of other embodiments. It is a functional block diagram of the report system of other embodiments.
1 is a system including a server device 2, a signal transmission / reception device 3, and a plurality of information processing systems 5 mounted on a vehicle 4. The server device 2 and the information processing system 5 are signal transmission / reception devices. 3 through wireless communication.
The server device 2 includes a CPU 11, a ROM 12 that stores programs executed by the CPU 11, a RAM 13 that is used as a work area when the CPU 11 executes programs, and a hard disk drive (HDD) 14 that has storage areas for storing various data. And a well-known computer system including a communication module 15 that performs wireless communication with the signal transmission / reception device 3 and a bus line (not shown) that connects them.
The server device 2 is also connected to be communicable with another server device 2 wirelessly or by wire. Each server device 2 transmits / receives data to / from the corresponding signal transmitting / receiving device 3.
The server device 2 and the signal transmission / reception device 3 are not limited to a configuration in which the server device 2 and the signal transmission / reception device 3 correspond one-to-one. One server device 2 may be configured to control a plurality of signal transmission / reception devices 3, or a plurality of server devices 2 may be configured to control one signal transmission / reception device 3. In addition, a plurality of server devices 2 may not be provided, and a single server device 2 may be used.
The signal transmission / reception device 3 is a device that performs wireless communication with the information processing system 5. In this embodiment, a communication facility of a base station for mobile communication (for example, a communication facility for a line such as LTE or 3G communication) is used. In addition, various apparatuses other than the base station can be used like a communication apparatus on a road constituting road-vehicle communication.
Further, the signal transmission / reception device 3 and the information processing system 5 may be configured to be able to communicate by a communication method that complies with a plurality of communication standards. In that case, the communication method can be switched according to the contents to be transmitted / received. For example, it is considered to use different communication methods for transmission and reception, such as using FM multiplex broadcast broadcasting equipment for signal transmission from the signal transmitting / receiving device 3 to the information processing system 5 and using a telephone line for reception. It is done.
The information processing system 5 is a device that performs wireless communication with the server device 2 via the signal transmission / reception device 3. As shown in FIG. 2, the information processing system 5 includes a radio signal receiving device 21, a GPS receiver 22, a steering angle sensor 23, a speed sensor 24, a navigation system 25, a speaker 26, an information processing device 31, and the like.
When the vehicle 4 is located in a predetermined area, the radio signal receiving apparatus 21 is an apparatus that receives a signal including information that can specify the position of the area. In this embodiment, an ETC (Electronic Toll Collection System) vehicle-mounted device is used. The radio signal reception device 21 outputs ETC information received from the roadside antenna to the information processing device 31. Note that the automatic fee payment function is not related to the present embodiment and will not be described.
A GPS (Global Positioning System) receiver 22 receives a signal output from a GPS artificial satellite with an antenna (not shown) and outputs the signal to the information processing device 31.
The steering angle sensor 23 is a sensor that detects the steering angle of the steering, and the speed sensor 24 is a sensor that detects the traveling speed of the vehicle 4. Detection signals from these sensors are output to the information processing device 31.
The navigation system 25 includes a position detection unit including a GPS receiver, a gyroscope, a vehicle speed sensor, a storage unit that stores map data, a display unit that displays various images such as a map display image, and various instructions from the passenger. The apparatus includes an input unit for inputting, and can execute map display processing, route guidance processing, and the like.
The map display process is a process of calculating the current position of the vehicle based on each detection signal from the position detection means, and displaying a map near the current position on the display means based on the map data stored in the storage means. is there. The route guidance process calculates a destination route that is an optimum route from the current position to the destination set by the passenger based on the map data stored in the storage means, and calculates the current position and the destination. This is a process of performing travel guidance to the target in consideration of the relationship with the route.
Note that the GPS receiver 22 and the speed sensor 24 described above may be used as the GPS receiver and the vehicle speed sensor that constitute the navigation system 25.
The speaker 26 receives the control signal from the information processing device 31 and outputs sound into the vehicle 4.
The information processing device 31 is mainly configured by a known microcomputer including a CPU 32, a ROM 33, a RAM 34, a nonvolatile memory 35, a communication module 36, an I / O (not shown), a bus line connecting them, and the like. The CPU 32 controls the information processing apparatus 31 in accordance with a program stored in the ROM 33 or the nonvolatile memory 35.
The communication module 36 is a module for performing wireless communication with the signal transmission / reception device 3. In addition, when communicating with the signal transmission / reception apparatus 3 by a some communication system, the some module corresponding to the communication system is arrange | positioned. In this embodiment, the communication module 36 is communicable via a mobile communication network, and a telephone number that can identify the communication module 36 is given.
The server apparatus 2 and the information processing apparatus 31 having the above-described configuration function as each unit illustrated in the functional block diagram of FIG.
The information processing apparatus 31 includes an information acquisition unit 41, a position detection unit 42, a storage unit 43, an entry determination unit 44, an entry signal transmission unit 45, a stop detection unit 46, a first transmission unit 47, a reception unit 49, a relationship determination unit 50, It functions as a process execution unit 51, an exit determination unit 52, and an exit signal transmission unit 53. The storage unit 43 includes an area information storage unit 74 and a specific range storage unit 75.
The server device 2 functions as a vehicle information storage unit 61, a stop information storage unit 62, a signal generation unit 63, a signal transmission destination setting unit 64, a second transmission unit 65, and a deletion control unit 66. The function of each part of the information processing device 31 and the server device 2 will be described later.
[1-2. Notification system functions]
An outline of the function of the notification system 1 will be described with reference to FIGS. 3 and 4. In addition, since it is an outline | summary, although there exists a part which has also demonstrated the content different from the specific structure of this embodiment, all are the content contained in the technical scope of this invention.
In FIG. 4, a vehicle 4 (4a to 4d) travels on a road 101 in the direction of an arrow. The vehicle 4 e is a vehicle that travels on a road other than the road 101. A boundary region 102 (102a to 102d) is set on the road 101. A range surrounded by the boundary regions 102a, 102c, and 102d is a specific range 103.
The vehicles 4a to 4e and the boundary regions 102a to 102d represent those existing at different positions. However, in the following description, when the vehicle and the position of the boundary region are not distinguished, the vehicle 4, This is described as a boundary region 102.
Each vehicle 4 is equipped with an information processing system 5 and executes the following processing. In some cases, a vehicle on which the information processing system 5 that is the subject of processing is mounted is referred to as a host vehicle, and a vehicle that is mounted on the information processing system 5 but is not the subject of processing is referred to as another vehicle.
(1) Bulletin Preparation Stage First, processing in the information processing system 5 mounted on the vehicle 4 will be described.
The information acquisition unit 41 acquires travel area information that is information related to an area where the vehicle travels. Examples of the travel area information include information for specifying a road, information for specifying a predetermined range on the road, and information for specifying a travel direction. Since the region on the road on which the vehicle travels differs if the traveling direction is different, the region can be limited by specifying the traveling direction. The information acquisition unit 41 includes a road specifying unit 71, a traveling direction determining unit 72, and a specific range specifying unit 73.
The road identification unit 71 identifies the road 101 on which the vehicle 4 is traveling. The method for identifying the road is not particularly limited, and for example, it is conceivable to perform identification by comparison (map matching) between the vehicle position and map information.
The vehicle position described above can be detected based on the GPS information acquired from the GPS receiver 22 by the position detector 42. Further, the vehicle position information may be acquired from the navigation system 25 using the navigation system 25 as a position detection unit.
As another road specifying method different from the above, a method of specifying based on a radio signal transmitted from a signal transmission device (not shown) arranged along the road is also conceivable. The signal is received by the wireless signal receiving device 21.
The signal transmission device arranged along the road corresponds to an ETC roadside device in the present embodiment, but may be a signal transmission device such as a DSRC or a beacon. Since these signal transmission devices transmit signals including different information for each installation position, the road can be identified by analyzing the signals.
Information on the road specified by the road specifying unit 71 is stored in the area information storage unit 74 as a road ID.
The traveling direction determination unit 72 determines whether the vehicle is traveling in the upward or downward direction on the traveling road. A method for determining the traveling direction is not particularly limited, and determination based on changes in the vehicle position with time, determination based on information received from a signal transmission device such as the above-described ETC, DSRC, or beacon can be considered. Information for specifying the traveling direction (hereinafter also simply referred to as traveling direction information) is stored in the area information storage unit 74.
The specific range specifying unit 73 specifies the specific range when the vehicle 4 enters the specific range 103. The specific range 103 is a preset range on the road, and the notification system 1 executes each process due to the vehicle 4 traveling in the range. Information regarding a plurality of specific ranges is stored in the specific range storage unit 75, and the specific range into which the vehicle 4 has entered is specified from the plurality of specific ranges.
The specific range 103 may be divided into a plurality of small areas as shown in FIG. 4, and in that case, it is specified to which small area it has entered. In FIG. 4, the boundary area 102a to the boundary area 102b is the area A, the boundary area 102b to the boundary area 102c is the area B, and the boundary area 102b to the boundary area 102d is the area C. In other words, the areas A to C are specified as different specific ranges.
The method for specifying the specific range is not particularly limited, but (i) specifying based on the comparison between the map information of the specific range (for example, latitude and longitude information of each boundary region 102) and the vehicle position, (ii) the boundary region It may be specified based on information received from a signal transmission device such as ETC, DSRC, or beacon installed in 102.
Information regarding a plurality of specific ranges is stored in the database of the specific range storage unit 75 as described above. The information for specifying by the above method (i) is map information indicating the range of each specific range. Each map information is memorize | stored with specific range ID matched with each specific range.
As information for specifying by the above method (ii), information included in the signal received from the signal transmission device, which can specify the installation position (information indicating which IC (interchange) has passed if it is an ETC) ) And a specific range. As in the case of (i) above, the specific range is stored together with the specific range ID.
The information stored in the database of the specific range storage unit 75 described above may be updated as needed. For example, new data can be downloaded or acquired by connecting to a recording medium.
The specific range ID specified by the specific range specifying unit 73 is stored in the region information storage unit 74.
As described above, the information acquisition unit 41 acquires travel area information. The acquired travel area information is stored in the area information storage unit 74.
The entry determination unit 44 determines whether or not the vehicle 4 has entered the specific range 103. The method for determining entry into the specific range 103 is not particularly limited, but determination based on the comparison between the map information of the specific range stored in advance and the vehicle position, ETC, DSRC, beacon, etc. installed in the boundary region 102 A determination based on information received from the signal transmission device may be considered.
When the approach determination unit 44 determines that the vehicle 4 has entered the specific range 103, the approach signal transmission unit 45 includes travel area information and specific information that is information that can identify the information processing system 5. The approach signal including is transmitted to the server apparatus 2. The specific information can be, for example, a telephone number given to the communication module 36 of the information processing apparatus 31, but an identifier other than a telephone number such as an account ID may be used.
In the server device 2, when the vehicle information storage unit 61 receives the entry signal transmitted from the entry signal transmission unit 45, the vehicle area storage unit 61 associates and stores the travel area information and the specific information included in the entry signal.
The road ID, the traveling direction information, and the specific range ID can be collected as one or two pieces of information. For example, by identifying a road, a running direction, and a range on the road as the specific range ID, only the specific range ID is sufficient as the travel area information. In addition, information other than the above may be aggregated.
Note that the information acquisition unit 41 may be configured to acquire travel region information before the entry determination unit 44 determines that the vehicle 4 has entered the specific range, or determines that the vehicle 4 has entered the specific range. The configuration may be such that the travel area information is acquired when it is done.
(2) Stop bulletin stage The function of the notification system 1 when the vehicle 4 stops traveling will be described.
First, processing in the information processing system 5 mounted on the vehicle 4 will be described.
The stop detection unit 46 detects from the output of a sensor mounted on the vehicle 4 that the vehicle 4 has stopped or that the vehicle 4 has become difficult to travel normally. The detection of these states is realized by detecting a signal related to the stop of traveling of the vehicle.
Specifically, for example, the stop of the vehicle 4 is detected when a signal indicating the traveling speed of the vehicle 4 is equal to or lower than a predetermined threshold (for example, 5 km / h or lower). Further, for example, by detecting a signal indicating that there is an abnormality in the vehicle 4 or the driver, such as that the airbag has been deployed, the tire has been punctured, or a button to be pressed in an emergency is detected, the vehicle 4 It is possible to detect that the vehicle is in a state where normal running is not possible.
In the following description, the detection of the stop of the running of the vehicle means that the stop detection unit 46 has detected the signal described above. In addition, stoppage of vehicle travel is also simply referred to as stoppage.
When the stop detection unit 46 detects that the vehicle 4 has stopped traveling, the first transmission unit 47 detects the travel region information stored in the region information storage unit 74 and the position of the vehicle 4 detected by the position detection unit 42. A first stop signal including information and specific information is transmitted to the server device 2. That is, the first stop signal is transmitted in response to the stop of traveling of the vehicle 4.
Next, processing in the server device 2 will be described.
When the stop information storage unit 62 receives the first stop signal transmitted from the first transmission unit 47, the stop information storage unit 62 stores the travel region information, the position information, and the specific information included in the first stop signal in association with each other.
The signal generator 63 generates a second stop signal based on the received first stop signal. The second stop signal is a signal including information on the stop position of the stopped vehicle 4d. Specifically, it may be a part or all of the travel area information, the first stop signal (latitude / longitude information), or information including both the travel area information and the first stop signal.
The signal generator 63 is based on information (traveling area information or first stop signal) indicating the current position of the stopped vehicle 4 included in the first stop signal, and one corresponding to the distance from that position as a starting point. The above range may be set, and the second stop signal may be generated using the range information indicating the range as information regarding the stop position of the vehicle 4.
The signal transmission destination setting unit 64 sets a transmission destination for transmitting the second stop signal. The signal transmission destination setting unit 64 includes a transmission destination specifying unit 64a that specifies the information processing system 5 as a transmission destination, and a transmission range setting unit 64b that sets a certain range as the transmission destination.
Specifically, the transmission destination specifying unit 64a is, for example, an information processing system 5 mounted on the vehicle 4 located behind the traveling direction of the vehicle 4 starting from the position of the stopped vehicle 4 included in the first stop signal. Is specified based on the travel area information stored in the vehicle information storage unit 61.
Specifically, for example, the transmission range setting unit 64b may determine a certain range based on the position of the stopped vehicle 4 included in the first stop signal and perform broadcast transmission.
Of course, the transmission destination setting method is not limited to this. For example, the information processing system 5 mounted on the vehicle 4 located in the vicinity of the stopped vehicle 4 is specified as a transmission destination, or is mounted on the vehicle 4 existing in the same specific range as the stopped vehicle 4 or in a specific range nearby. For example, the information processing system 5 may be specified as a transmission destination.
The second transmission unit 65 transmits the second stop signal to the transmission destination set by the signal transmission destination setting unit 64. When the second stop signal is broadcasted, for example, information is transmitted from the signal transmission / reception device 3 to all the information processing systems 5 existing in a range where the signal transmission / reception device 3 can communicate (so-called telephone line). (Like earthquake early warning using). Further, it may be transmitted by a method such as FM multiplex broadcasting.
(3) Alarm stage When the vehicle 4 other than the host vehicle 4 stops traveling, the following processing is executed.
The receiving unit 49 receives the second stop information transmitted from the server device 2.
The relationship determination unit 50 stops the vehicle based on the information regarding the stop position included in the second stop signal received by the reception unit 49 and the travel region information of the host vehicle 4 stored in the region information storage unit 74. The positional relationship between the vehicle 4 and the host vehicle 4 is determined. That is, it is determined whether or not the other vehicle in which the host vehicle 4 has stopped is present at a distance to be noted (hereinafter, also simply described as being located in the attention area).
Specifically, when the vehicle 4d in FIG. 4 stops, the relationship determination unit 50 of the vehicle 4c that is located in the region B, has the same traveling direction, and is located behind the vehicle 4d is It is determined that it is located in the attention area. The relationship determination unit 50 of the vehicle 4 located in a place other than the above determines that the host vehicle 4 is not located in the attention area. This determination method is merely an example, and for example, the relationship determination unit 50 of the vehicle 4b may be determined to be located in the attention area.
The process execution unit 51 executes a predetermined process according to the result of determination by the relationship determination unit 50. For example, when it is determined that the host vehicle 4 is located in the attention area, a warning is given to the driver. Specifically, a warning screen may be displayed on the display means of the navigation system 25, or an alarm sound may be issued from the speaker 26. At this time, a warning according to the distance to the stopped vehicle 4 can be performed.
Moreover, you may perform control of the vehicle 4 other than the warning to a driver | operator. Various controls that are possible because the vehicle 4 can pass in the vicinity of the vehicle that has stopped safely can be executed.
Even if it is determined that the vehicle is not located in the caution area, a warning is issued when the vehicle enters the area B by a subsequent run.
In addition, you may comprise so that the relationship determination part 50 mentioned above can determine whether the own vehicle is located ahead of a driving direction rather than the other vehicle which stopped. In that case, the process execution part 51 may be comprised so that execution of the said process may be complete | finished, when the relationship determination part 50 determines with the own vehicle being located ahead of a driving direction rather than another vehicle.
The exit determination unit 52 determines whether or not the vehicle 4 has exited from the specific range 103. A method for determining exit from the specific range 103 is not particularly limited, but determination based on a comparison between map information of a specific range stored in advance and the vehicle position, ETC, DSRC, beacon, etc. installed in the boundary region 102 A determination based on information received from the signal transmission device may be considered. That is, the determination can be performed by the same method as the approach determination unit 44.
The exit signal transmission unit 53 transmits an exit signal including specific information to the server device 2 when the exit determination unit 52 determines that the vehicle 4 has exited the specific range 103.
In the server device 2, when the deletion control unit 66 receives the exit signal transmitted from the exit signal transmission unit 53, the deletion control unit 66 stores the travel area information associated with the specific information included in the exit signal in the vehicle information storage. It deletes from the part 61.
[1-3. processing]
Hereinafter, a specific processing example of the reporting system 1 will be described. In the present embodiment, the notification system 1 executes notification to surrounding vehicles when a vehicle traveling on a predetermined highway stops.
(1) Vehicle side main process The vehicle side main process which CPU32 of the information processing apparatus 31 performs is demonstrated based on the flowchart shown in FIG. For example, this process is started when the vehicle starts running (when the vehicle speed exceeds a predetermined threshold).
In S1, the CPU 32 determines whether or not the host vehicle has passed through a predetermined highway entrance ETC gate. If the host vehicle has not passed the entrance ETC gate (S1: NO), S1 is performed again. That is, it waits until it passes the entrance ETC gate. On the other hand, if the host vehicle has passed the entrance ETC gate (S1: YES), the process proceeds to S2.
In S2, the CPU 32 starts a stop determination process. The stop determination process is executed in parallel with this process. Details of the stop determination process will be described later.
In S3, the CPU 32 stores the IC name. When moving through a JCT (junction) to an expressway that is determined to make a report from an expressway that does not execute a report by the report system 1, the JCT name is stored instead of the IC name.
When the process moves from S2 to S3, the IC name can be acquired based on the ETC information. When the process moves from S12 to S3, it is possible to determine the passage of the IC or JCT by specifying the traveling position of the host vehicle by map matching, and to obtain the name of the IC or JCT that has passed. The term “passing” here means to travel on the main line without passing through the IC or JCT.
In S3, the CPU 32 stores the acquired information as information (road ID) for identifying the road on which the host vehicle is traveling and information (specific range ID) for identifying the region on which the host vehicle is traveling. To do.
In S4, the CPU 32 determines and stores whether the traveling direction of the host vehicle is up or down. The traveling direction can be determined based on a change with time of the vehicle position.
In S <b> 5, the CPU 32 transmits an entry signal to the server device 2. The approach signal includes travel area information and information (vehicle ID) that can identify the information processing system 5 (information processing device 31). The travel area information is information including the road ID, the specific range ID, and the travel direction information described above.
In addition, the server apparatus 2 which received driving | running | working area information sends the 2nd stop signal A containing the information of the 1st stop flag which shows whether the vehicle stopped in the area set based on the driving | running | working area information exists. The information is transmitted to the information processing system 5 of the vehicle (S27 in FIG. 6). In the example of FIG. 4, when the vehicle 4d stops, the areas A to C can be set as the areas described above. The area may be set by distinguishing the traveling direction.
In S <b> 6, the CPU 32 receives the second stop signal A from the server device 2. And based on the information of the 1st stop flag, the 1st stop flag is set as ON or OFF.
In S7, the CPU 32 determines whether or not the first stop flag is off. If the first stop flag is off (S7: YES), that is, if there is no vehicle stopped in the predetermined area, the process proceeds to S8. On the other hand, if the first stop flag is not off (S7: NO), that is, if the flag is on, the process proceeds to S10.
In S8, the CPU 32 checks whether or not the second stop signal B is newly transmitted from the server device 2. The second stop signal B is a signal transmitted from the server device 2 when a stopped vehicle is generated (S50 in FIG. 9), and includes a second stop flag indicating whether or not there is a stopped vehicle. If the second stop signal B is received, the second stop flag is set to ON.
In S9, the CPU 32 determines whether or not the second stop flag is off. If the second stop flag is off (S9: YES), that is, if there is no vehicle stopped in the predetermined area, the process proceeds to S11. On the other hand, if the second stop flag is not off (S9: NO), that is, if the flag is on, the process proceeds to S10.
In S10, the CPU 32 starts warning processing. The warning process is executed in parallel with this process. Details of the warning process will be described later.
In S11, the CPU 32 determines whether or not the boundary area has been passed. The boundary area is a boundary when a traveling highway is divided into a plurality of areas, and can be a place where JCT or IC exists or its vicinity. Based on the GPS information, the CPU 32 makes a determination based on the fact that the vehicle position has passed the boundary region, and that a signal has been received from a fixed short-range wireless communication device such as ETC.
In the example of FIG. 4, the locations where the ICs exist are the boundary regions 102a, 102c, and 102d, and the locations where the JCT exists are the boundary regions 102b. In S11, it is determined that one of the boundary regions 102 has been passed.
If it passes through the boundary region (S11: YES), the process proceeds to S12. On the other hand, if the boundary region has not been passed (S11: NO), the process returns to S8.
In S12, the CPU 32 determines whether or not the own vehicle has passed the highway exit ETC gate. If the host vehicle has not passed the exit ETC gate (S12: NO), that is, if the vehicle has passed through the boundary area and entered a different area on the expressway, the process returns to S3. In S3, a new specific range ID is acquired.
On the other hand, if the host vehicle has passed the exit ETC gate (S12: YES), that is, if the vehicle has passed the boundary area and descended the highway, the process proceeds to S13.
In S13, the CPU 32 deletes the IC and JCT ID information and travel direction information stored in S3 and S4. In addition, the CPU 32 transmits to the server device 2 an exit signal that is a signal indicating that the above-described information should be deleted. In the server device 2, the travel area information transmitted in S5 is deleted.
In S14, the CPU 32 ends the stop determination process started in S2 and the warning process started in S10. Thereafter, the process returns to S1.
(2) Server 1st Response Processing Server 1st response processing executed by the CPU 11 of the server device 2 will be described based on the flowchart shown in FIG. This process is continuously executed while the server apparatus 2 is activated.
In S21, the CPU 11 determines whether or not the information processing device 31 mounted on any vehicle has received the entry signal (traveling area information and vehicle ID) transmitted to the server device 2 in S5 of FIG. To check. If the entry signal has not been received (S21: NO), S21 is performed again. That is, the CPU 11 waits until it receives an entry signal. On the other hand, if the entry signal is received (S21: YES), the process proceeds to S22.
In S22, the CPU 11 updates the area list based on the information received in S21. As shown in FIG. 7, the area list is a list for traveling management created for each area obtained by dividing the specific range 103 in consideration of the traveling direction, and the vehicle ID of the vehicle traveling in each area. Is remembered. That is, the area list itself includes a road ID, a specific range ID, and traveling direction information. This area list is stored in the vehicle information storage unit 61.
In S22, the CPU 11 identifies the area in which the vehicle is traveling from the traveling area information, and stores the vehicle ID (phone number in FIG. 7) in the area list of the area. Since the approach signal is also transmitted when the vehicle moves in the area, the vehicle ID moves to a different area list as shown by an arrow in FIG.
Note that the lower the priority is set for a newly stored vehicle ID. This priority order is the order in which the second stop signal B is transmitted in S50 of FIG.
In S23, the CPU 11 determines whether or not the server is in the stop generation mode. The state in the stop generation mode is a state in which a stop vehicle is generated in the specific range 103 managed by the server device 2 and a predetermined flag is turned on. The stop generation mode is turned on in S51 of FIG.
If it is the stop generation mode (S23: YES), the process proceeds to S24. On the other hand, if it is not the stop generation mode (S23: NO), the process proceeds to S26.
In S24, the CPU 11 determines whether or not the position of the vehicle specified by the travel area information included in the approach signal received in S21 is within the stop signal distribution area. Specifically, it is determined whether the area list whose vehicle ID has been updated in S22 has the area flag set to ON in S46 of FIG.
If the position of the vehicle is within the stop signal distribution area (S24: YES), the process proceeds to S25. On the other hand, if it is not within the stop signal distribution area (S24: NO), the process proceeds to S26.
In S25, the CPU 11 sets, as the second stop signal A, information for turning on the first stop flag, information on the stop position of the vehicle that has triggered the stop occurrence mode, and the vehicle ID of the vehicle. To do. Thereafter, the process proceeds to S27.
In S26, the CPU 11 sets information for turning off the first stop flag as a non-stop signal. Thereafter, the process proceeds to S27.
In S27, the second stop signal A or the non-stop signal is transmitted to the vehicle (information processing device 31) that is the transmission source of the travel area information received in S21. Thereafter, the process returns to S21.
(3) Stop determination process The stop determination process which CPU32 of the information processing apparatus 31 performs is demonstrated based on the flowchart shown in FIG. This process is started in S2 of the vehicle side main process of FIG.
In S31, the CPU 32 determines whether or not the own vehicle has stopped. Here, it is determined that the vehicle has stopped when the traveling speed of the host vehicle becomes 5 km / h or less. If it is not determined that the vehicle has stopped (S31: NO), S31 is performed again. That is, it waits until the own vehicle stops. On the other hand, if it determines with having stopped (S31: YES), a process will transfer to S32.
In S32, the CPU 32 acquires GPS position information. This position information is latitude / longitude information indicating the stopped position.
In S33, the CPU 32 obtains the GPS position information acquired in S32, the vehicle ID, the road ID and specific range ID acquired in the latest S3, and the traveling direction information acquired in the latest S4. Set as the first stop signal.
In S34, the CPU 32 transmits the first stop signal set in S33 to the server device 2.
In S35, the CPU 32 determines whether or not the traveling of the host vehicle has been resumed. Here, it is determined that the traveling is resumed when the traveling speed of the host vehicle becomes 30 km / h or more. If it is not determined that traveling has been resumed (S35: NO), S35 is performed again. That is, it waits until the driving | running | working of the own vehicle is restarted. On the other hand, if it determines with having restarted driving | running | working (S35: YES), a process will transfer to S36.
In S <b> 36, the CPU 32 transmits information on stopping cancellation to the server device 2. The vehicle ID is included in the stop release information, and the server device 2 can recognize that the stop of the vehicle corresponding to the vehicle ID has been released. After S36, the process returns to S31.
(4) Server 2nd Response Processing Server 2nd response processing executed by the CPU 11 of the server device 2 will be described based on the flowchart shown in FIG. This process is continuously executed while the server apparatus 2 is activated.
In S41, the CPU 11 determines whether or not a first stop signal has been received. The first stop signal is transmitted from the information processing apparatus 31 in S34 of the stop determination process. If the first stop signal has been received (S41: YES), the process proceeds to S45. On the other hand, if the first stop signal has not been received (S41: NO), the process proceeds to S42.
In S42, the CPU 11 determines whether or not a notification command has been received. The notification command is transmitted from another server device 2 in S49 described later. If the notification command has been received (S42: YES), the process proceeds to S50. On the other hand, if the notification command has not been received (S42: NO), the process proceeds to S43.
In S43, the CPU 11 determines whether or not stop stop information has been received. The stop cancellation is transmitted from the information processing device 31 in S36 of the stop determination process. If the stop cancellation information is received (S43: YES), the process proceeds to S52. On the other hand, if the stop cancellation information is not received (S43: NO), the process proceeds to S44.
In S44, the CPU 11 determines whether or not a release command has been received. The release command is transmitted from another server device 2 in S55 described later. If a release command has been received (S44: YES), the process proceeds to S54. On the other hand, if the release command has not been received (S44: NO), the process returns to S41.
In S45, the CPU 11 specifies an area list including the vehicle ID (telephone number) of the first stop signal determined to be received in S41 from the plurality of area lists.
In S46, the CPU 11 turns on the area flag of the area list specified in S45. The area flag is a flag that stands when a stopped vehicle is generated in the area. In S46, the GPS position information included in the received first stop signal is stored in the area list in association with the vehicle ID as information indicating the stop position.
In S47, the CPU 11 selects a distribution area for the second stop signal B. This distribution area is predetermined in S46 corresponding to the area list with the area flag turned on. Specifically, an area in the area list and an area located behind the area in the traveling direction, in other words, an area in which a traveling vehicle is present toward the place where the stopped vehicle is generated are selected.
In S48, the CPU 11 sets information for turning on the second stop flag, information on the stop position included in the first stop signal, and the vehicle ID as the second stop signal B.
In S49, the CPU 11 transmits a notification command to the server device 2 located in the distribution area selected in S46. The notification command is a command for causing the corresponding server device 2 to transmit the second stop signal B. Therefore, the server device 2 that has received the notification command in S42 transmits the second stop signal B even when the vehicle stops outside the distribution area corresponding to the server device 2.
In S50, the CPU 11 distributes the second stop signal B to the vehicles in the area list of the area selected as the distribution area. In other words, the vehicle in the area list is a vehicle (information processing device 31) having a vehicle ID registered in the area list. The second stop signal B is distributed using a telephone line, but the distribution order follows the priority order of the area list.
In S51, the CPU 11 turns on the stop generation mode. Thereafter, the process returns to S41.
The process of S52 is executed when it is determined in S43 that stop cancellation information has been received. In S52, the CPU 11 selects an area list including the vehicle ID included in the stop cancellation information determined to have been received in S43 from the plurality of area lists.
In S53, the CPU 11 turns off the area flag of the area list selected in S52. Also, the GPS position information stored in the area list in S46 is deleted.
In S54, CPU11 sets the stop position and vehicle ID of the vehicle of the transmission origin of the stop cancellation signal received in S43 as cancellation information. The release information is information indicating that the stopped vehicle has disappeared, and the information processing device 31 uses the reception of the information as a trigger to control the alarm or the like that has been executed based on the presence of the stopped vehicle. Stop.
In S55, the CPU 11 issues a release command to the server device 2 located in the distribution area corresponding to the area list selected in S52 (that is, the distribution area previously selected in S47 based on the stop of the vehicle having the same vehicle ID). Send. The release command is a command for transmitting release information to the corresponding server device 2.
In S56, the CPU 11 distributes release information. The distribution destination is the area selected in S47, but the server device 2 distributes the vehicle to the vehicle with the vehicle ID registered in the area list of its corresponding area.
In S57, the CPU 11 turns off the stop generation mode. Thereafter, the process returns to S41.
(5) Warning Process The warning process executed by the CPU 32 of the information processing apparatus 31 will be described based on the flowchart shown in FIG. This process is started in S10 of the vehicle side main process of FIG. At this time, at least one of the first stop flag and the second stop flag is on.
In S61, the CPU 32 determines whether or not the second stop flag is on. If the second stop flag is on (S61: YES), the process proceeds to S62. On the other hand, if the second stop flag is not on (S61: NO), that is, if the first stop flag is on, the process proceeds to S63.
In S62, based on the second stop signal B received in S8 of FIG. 5, the CPU 32 determines whether or not the position of the host vehicle is within the stop signal distribution area and the traveling direction matches. If they match (S62: YES), the process proceeds to S63. On the other hand, if they do not match (S62: NO), this process ends.
In S63, the CPU 32 stores the received stop signal. When the process proceeds from S61 to S63, the second stop signal A received at S6 in FIG. 5 is stored, and when the process proceeds from S62 to S63, the second stop signal B received at S8 in FIG. 5 is stored. .
In S64, the CPU 32 calculates the distance from the stop position to the host vehicle position based on the stop position included in the stop signal stored in S63 and the position of the host vehicle.
In S65, the CPU 32 issues a warning according to the distance calculated in S64. As a specific warning method, for example, a display means of the navigation system 25 may indicate that a stopped vehicle has occurred, or voice guidance may be provided through the speaker 26.
Further, the CPU 32 sets the color and size so that the content (characters etc.) displayed on the display means becomes more conspicuous as the distance is shorter. The CPU 32 sets the volume of the speaker 26 to be larger as the distance is closer, and sounds a warning sound when the distance is closer. The change according to the distance is not limited to these, and can be realized in various modes.
In addition, you may comprise so that a warning may not be implemented when the distance from the calculated stop position to the own vehicle position is near a predetermined threshold value or more.
In S66, the CPU 32 determines whether or not the host vehicle has passed the stop position of another vehicle included in the stop signal stored in S63. If the host vehicle has passed the stop position (S66: YES), the process proceeds to S68. On the other hand, if the host vehicle has not passed the stop position (S66: NO), the process proceeds to S67.
In S67, the CPU 32 determines whether release information has been received. The release information is transmitted in S56 of FIG. If release information has been received (S67: YES), the process proceeds to S68. On the other hand, if release information has not been received (S67: NO), the process returns to S64.
In S68, the CPU 32 turns off the corresponding stop flag. That is, the stop flag that was turned on due to the stop of the vehicle that no longer requires the warning is turned off. Specifically, for example, when the process proceeds from S66 to S68, that is, when the own vehicle passes the stop position of another vehicle, the stop flag associated with the stop position is turned off, and when the process proceeds from S67 to S68, the reception is performed. The stop flag associated with the vehicle ID of the release information that has been released can be turned off.
In S69, the CPU 32 stops the warning. Thereafter, the process returns to S61.
[1A] In the notification system 1 of the present embodiment, the vehicle ID of the vehicle that is traveling in each area is included in the area list for travel management created for each area in which the specific range 103 is divided in consideration of the traveling direction. I remember it. Therefore, the processing load of the server device 2 that searches for a vehicle to which the second stop signal B should be transmitted is small, and the second stop signal can be transmitted quickly.
[1B] In the notification system 1 of the present embodiment, the specific information is stored in the area list described above with a priority determined by a predetermined criterion, and the second stop signal is transmitted to the information processing apparatus 31 according to the priority. Send to. Therefore, signals can be transmitted in an appropriate order, and accident occurrence can be further reduced. The method of assigning priorities is not limited to that described above, and priorities can be determined by various methods.
[1C] In the notification system 1 of the present embodiment, it is determined whether or not the vehicle 4 has left the specific range 103, and when it is determined that the vehicle 4 has left the specific range 103, the information processing system 5 is specified. An exit signal that is a signal including specific information that is possible information is transmitted to the server device 2. When the server device 2 receives the exit signal, the server device 2 deletes the travel area information associated with the specific information included in the exit signal from the vehicle information storage unit 61.
Therefore, the reporting system 1 can reduce the risk of erroneously transmitting the second stop signal to the information processing system 5 of the vehicle 4 that has passed the specific range. In addition, deletion here is deleting from the object which can become a transmission destination, Comprising: You may memorize | store in the aspect which does not become a target which transmits a 2nd stop signal when a stop vehicle generate | occur | produces.
In 1st Embodiment mentioned above, the driving | running | working area information and vehicle ID contained in the approach signal received in S21 of the server 1st response process of FIG. 6 illustrated the structure processed and classified for every area of a specific range. However, in this embodiment, it does not classify | categorize for every area, and broadcast-transmits to the predetermined range, without transmitting the 2nd stop signal B addressed to specific vehicle ID.
Next, a specific processing example of the notification system 1 according to the second embodiment will be described. In the present embodiment, only the server first response process and the server second response process are different from those in the first embodiment, and the description of other processes is omitted.
(1) Server 1st response process The server 1st response process which CPU11 of the server apparatus 2 performs is demonstrated based on the flowchart shown in FIG. In addition, about the step which performs the process same as the server 1st response process of FIG. 6 of 1st Embodiment, a part of description is omitted using the same code | symbol.
After S21 of the server first response process, S22 is not executed, and the process proceeds to S23. If it determines with it being a stop generation | occurrence | production mode in S23 (S23: YES), a process will transfer to S71.
In S71, the CPU 11 determines whether or not the position of the vehicle specified by the travel area information included in the approach signal received in S21 is within the stop signal distribution area. The stop signal distribution area is an area where information is distributed when a stopped vehicle is generated in the specific range 103, and is set in S82 of FIG.
If the position of the vehicle is within the stop signal distribution area (S71: YES), the process proceeds to S25. On the other hand, if it is not within the stop signal distribution area (S71: NO), the process proceeds to S26.
(2) Server 2nd Response Processing Server 2nd response processing executed by the CPU 11 of the server device 2 will be described based on the flowchart shown in FIG. In addition, about the step which performs the same process as the server 2nd response process of FIG. 9 of 1st Embodiment, a part of description is omitted using the same code | symbol.
If the first stop signal is received in S41 (S41: YES), the process proceeds to S81. If the notification command is received in S42 (S42: YES), the process proceeds to S84. If the stop cancellation information is received in S43 (S43: YES), the process proceeds to S85. If the release command is received in S44 (S44: YES), the process proceeds to S86.
In S81, the CPU 11 stores the first stop signal determined to have been received in S41 and the vehicle ID of the information processing apparatus 31 that is the transmission source of the signal in association with each other.
In S82, the CPU 11 selects a distribution area for the second stop signal B.
A delivery area selection method will be described with reference to FIG. The vehicle 4 is stopped while traveling on the highway 111. Expressway 111 is divided into the area where IC 112 (112a to 112c) and JCT 113 are located as a boundary, IC B to JCT B are area 1, JCT B to IC C are area 2, and IC C to IC D are divided into area 3. Yes.
Here, the signal transmission / reception apparatus 3 (3a-3c) which distributes a signal for every area is defined. The signal transmission / reception device 3 a distributes the signal to the area 1, the signal transmission / reception device 3 b distributes the signal to the area 2, and the signal transmission / reception device 3 c distributes the signal to the area 3. Of course, it may be distributed outside the area, and the distribution range may overlap. Each signal transmitting / receiving device 3 is provided with a server device 2 (2a to 2c) adjacent thereto.
The vehicle 4 stops on the way to the area 2 in the JCT direction. At this time, since the vehicle existing in the area 1 is located in front of the vehicle 4 in the traveling direction or on a road having a different traveling direction, the urgency of receiving the stop information is low. Therefore, area 1 is not set as the distribution range, and areas 2 and 3 are selected as the distribution range.
In S83, the CPU 11 sets, as the second stop signal B, information for turning on the second stop flag, the distribution area, the traveling direction, the stop position information included in the first stop signal, and the vehicle ID. Thereafter, the process proceeds to S49.
After S49, the process proceeds to S84.
In S84, the CPU 11 broadcasts the second stop signal B. Thereafter, the process proceeds to S51.
In S85, the CPU 11 selects the distribution area selected in S82, that is, the distribution area in which broadcast transmission is executed in S84. Thereafter, the process proceeds to S54.
After S55, the process proceeds to S86.
In S86, the CPU 11 broadcasts release information. Thereafter, the process proceeds to S57.
[2A] In the notification system 1 of the present embodiment, the server device 2 sets a range in which the second stop signal is to be transmitted based on the signal transmitted from the information processing system 5, and sends the second stop signal to the range. Send. Therefore, it is not necessary to individually determine the position where the information processing system 5 exists, and the second stop signal can be transmitted quickly while reducing the processing load on the server device 2.
[3-1. Difference from Second Embodiment]
Since the basic configuration of the third embodiment is the same as that of the second embodiment, the description of the common configuration will be omitted, and the description will focus on the differences.
In the third embodiment, the transmission range setting unit 64b of the signal transmission destination setting unit 64 functions. When the transmission range setting unit 64b receives the first stop signal transmitted from the first transmission unit 47, the transmission range setting unit 64b transmits the second stop signal B based on at least the travel area information included in the first stop signal. Set the range (stop position range). The second transmission unit 65 broadcasts the second stop signal B generated by the signal generation unit 63 to the stop position range set by the transmission range setting unit 64b.
[3-2. processing]
Next, a specific processing example of the notification system 1 according to the third embodiment will be described. In the present embodiment, only the server second response process and the warning process are different from those of the second embodiment, and the description of the other processes is omitted.
(1) Server 2nd response process The server 2nd response process which CPU11 of the server apparatus 2 performs is demonstrated based on the flowchart shown in FIG. In addition, about the step which performs the process same as the server 2nd response process of FIG. 12 of 2nd Embodiment, a part of description is omitted using the same code | symbol.
After the distribution area of the second stop signal B is selected in S82, the process proceeds to S91.
In S91, the CPU 11 determines a stop position range from the stop position and the section. The stop position range is information indicating a certain range including latitude and longitude information. As shown in FIG. 15, three stop position ranges 121 of a first range 121a, a second range 121b, and a third range 121c are set starting from a stop position 120 on the road 101 in the order from the stop position toward the rear. The
The method for setting the stop position range is not particularly limited. The stop position does not need to be the starting point of the range, and a position spaced from the stop position may be the starting point. Further, a method for determining the stop position range may be determined for each predetermined section. For example, in a section where there are many curves and the traveling speed is low, each stop position range can be set small. The stop position range may be specified by information other than latitude and longitude. The range may be divided into other than three.
In S92, the CPU 11 sets a warning level for each stop position range. The warning level is set according to the degree of danger. For example, the stop position range close to the stop position has high urgency, but the urgency becomes low as the distance increases, so an appropriate warning level is set according to the distance.
In S93, the CPU 11 sets, as the second stop signal B, information for turning on the second stop flag, information on the stop position range in which the warning level is set, and the vehicle ID. Thereafter, the process proceeds to S49. All the information on the stop position range (in this embodiment, information on three stop position ranges) is set.
(2) Warning Process The warning process executed by the CPU 32 of the information processing apparatus 31 will be described based on the flowchart shown in FIG. In addition, about the step which performs the process same as the warning process of FIG. 10 of 1st Embodiment, a part of description is omitted using the same code | symbol.
If the 2nd stop flag is ON in S61 (S61: YES), processing will shift to S101.
In S101, the CPU 32 determines whether or not the position of the host vehicle is included in any of the stop position ranges included in the second stop signal B determined to have been received in S8. That is, it is determined whether or not the host vehicle is located in one of the stop position ranges 121 of the first range 121a, the second range 121b, and the third range 121c in FIG.
If it is located in any range (S101: YES), the process proceeds to S63. On the other hand, if it is not located in any range (S101: NO), this process is terminated.
After S63, the process proceeds to S102.
In S102, the CPU 32 issues a warning at a warning level set in the stop position range where the host vehicle is located. Thereafter, the process proceeds to S66.
If release information is not received in S67 (S67: NO), the process proceeds to S103.
In S103, the positional relationship between the stop position range and the vehicle position is checked. Since the second stop signal B determined to have been received in S8 includes a plurality of stop position ranges, the vehicle is positioned while traveling by determining which one of the stop position ranges is located. It is detected that the stop position range has changed.
In S104, the warning level is reset. If there is a change in the positional relationship between the stop position range checked in S103 and the vehicle position, the warning level changes according to the stop position range, and the warning level is set. Thereafter, the process proceeds to S102.
[3A] In the notification system 1 of the present embodiment, the first stop signal transmitted from the information processing system 5 includes information indicating the current position of the vehicle 4, and the server device 2 is included in the first stop signal. One or more stop position ranges corresponding to the distance from the position as a starting point is set based on information indicating the current position of the vehicle, and information indicating the stop position range is used as information on the stop position of the vehicle. A stop signal B is generated.
The information processing system 5 determines whether or not the host vehicle 4 is located in the above-described range included in the received second stop signal B, and executes a predetermined process according to the determination result.
In such a notification system 1, since the server device 2 transmits only the information indicating the range information and the warning level, the second stop signal B can be quickly transmitted to the information processing system 5. The information processing system 5 only has to determine whether or not the host vehicle is included in the transmitted stop position range, and the processing load on the information processing system 5 can be reduced.
[4A] In the above embodiment, the configuration in which each process is executed for a vehicle traveling on a highway has been exemplified. However, the present invention is not limited to this, and the above-described process is executed on a road other than the highway. It may be a configuration.
An example of the vehicle-side main process in that case will be described based on the flowchart shown in FIG. In addition, about the step which performs the same process as the vehicle side main process of FIG. 5 of 1st Embodiment, a part of description is omitted using the same code | symbol.
In S121, the CPU 32 determines whether or not the host vehicle has entered a specific range. The determination method is not particularly limited, but determination based on comparison (map matching) between GPS information indicating the vehicle position and map information indicating a specific range, or determination based on information received from a signal transmission device such as ETC, DSRC, or beacon And so on.
If the host vehicle has not entered the specific range (S121: NO), S121 is performed again. On the other hand, if the host vehicle has entered the specific range (S121: YES), the process proceeds to S2.
After S2, the process proceeds to S122.
In S122, the CPU 32 acquires and stores location information that can specify the road and the specific range, and travel region information including the travel direction. Thereafter, the process proceeds to S5. The road and the specific range can be specified by the same method as in S121. The traveling direction can be determined from a change over time of the vehicle position or information received from a signal transmission device that transmits a signal only to a vehicle traveling in one of the traveling directions.
When it is determined in S9 that the second stop flag is off (S9: YES), or after S10, the process proceeds to S123.
In S123, the CPU 32 determines whether or not the host vehicle has passed the boundary area. The method for setting the boundary region is not particularly limited. Arbitrary points may be set as the boundary region, or the boundary region may be set at regular intervals. The passage of the boundary region can also be determined by the same method as in S121.
If it passes through the boundary area (S123: YES), the process proceeds to S124. On the other hand, if the boundary region has not been passed (S123: NO), the process returns to S8.
In S124, the CPU 32 determines whether or not the own vehicle has escaped from the specific range. If the own vehicle has not escaped from the specific range (S124: NO), the process returns to S122. On the other hand, if the own vehicle has escaped from the specific range (S124: YES), the process proceeds to S125. Escape within a specific range can also be determined by the same method as in S121.
In S125, the CPU 32 deletes the travel area information stored in S122 and transmits an exit signal, which is a signal indicating that the travel area information should be deleted, to the server device 2. Thereafter, the process proceeds to S14.
The notification system 1 configured in this way is not limited to a highway, and can be applied to various roads.
[4B] In the above embodiment, the configuration in which the position information indicating the stop position of the vehicle 4 acquired by the position detection unit 42 is included in the first stop signal and the second stop signals A and B is transmitted and received. The signal indicating the stop position of 4 is not necessarily transmitted. For example, when the range of the specific range 103 is set small, the specific range ID can be used instead of the position information.
[4C] In the third embodiment, the configuration in which the stop position range is set as a latitude / longitude range based on the stop position is exemplified, but the stop position range may be set by other methods. For example, as shown in FIG. 18, a method of dividing the range by a circle 131 (131a to 131c) centered on the stop position 120 (that is, a method of dividing the range by a linear distance from the stop position) may be used.
Further, based on the actual travel distance on the road 101, for example, a stop position range may be set with a point every 500 m from the stop position as a break.
[4D] The specific range may be classified into a plurality of types, and the communication method between the server device 2 and the information processing system 5 may be changed for each classification of the specific range that has entered.
As illustrated in FIG. 19, the information processing device 31 a functions as a range determination unit 54 that determines the type of a specific range determined to have entered by the entry determination unit 44. The first transmission unit 47 is capable of communication using a communication method that complies with a plurality of communication standards. The first transmission unit 47 uses a communication method that is set in advance according to the type of the specific range determined by the range determination unit 54, and travel region information Etc. are transmitted to the server apparatus 2.
That is, in this configuration, the specific range is associated with one of the communication methods. The method for associating the specific range with the communication method is not particularly limited, but may be individually associated with each specific range, or may be associated according to a road, a road type, a region where the road exists, or the like. May be.
In order to enable communication using a communication method compliant with a plurality of communication standards, it is conceivable that the information processing apparatus 31a includes a plurality of communication modules having different communication standards.
[4E] In the above embodiment, the configuration using the road ID, the traveling direction information, and the specific range ID as the travel area information is exemplified, but if any one of these is used, all information is used. It does not have to be. For example, if the road ID or the specific range ID is known, the area where the vehicle travels is narrowed down. Moreover, when the transmission range of the signal transmitted to the vehicle by the signal transmission / reception device 3 is limited, if the traveling direction is known, the region in which the vehicle travels can be narrowed down.
[4F] In the above embodiment, the server device 2 and the information processing system 5 communicate with each other via the signal transmission / reception device 3, but the information processing systems 5 directly communicate with each other without using the server device 2. The structure to perform, ie, the structure which performs vehicle-to-vehicle communication, may be sufficient. In this case, the signal transmitting / receiving device 3 may be used.
Thus, in the configuration in which the information processing systems 5 directly communicate with each other, the information processing system 5 mounted on the vehicle 4 that has stopped traveling transmits the first stop signal to the outside, and the information mounted on the other vehicles 4 The processing system 5 receives the first stop signal. Since the received first stop signal includes information on the stop position of the stopped vehicle 4, it can be handled as the second stop signal described in the above embodiment.
When performing vehicle-to-vehicle communication, the communication module 36 periodically transmits data to an unspecified number of other information processing devices 31 existing in the vicinity of the information processing device 31 (in a communication area where radio waves reach) by a broadcast method. It is conceivable to configure to transmit wirelessly.
Note that the information processing system 5 stores the information of the destination to which the signal is transmitted to the storage unit in both cases of communication via the server device 2, vehicle-to-vehicle communication, and road-to-vehicle communication not via the server device. doing. When broadcasting is performed, an address that can be received by each information processing system 5 existing in another vehicle is designated as a destination and transmitted.
[4G] In the above-described embodiment, the configuration in which the information processing system 5 is mounted on the vehicle 4 is exemplified. However, all functional units may be present in the vehicle 4 when used as a system. That is, all the components for functioning as the information processing system may be moved in accordance with the movement of the vehicle 4, and a part or all of the information processing system is brought into the vehicle 4 (taken out of the vehicle 4). May be configured).
As a specific example, an information processing device (terminal device) such as a smartphone can have the function of the information processing device 31 of each of the above embodiments. The vehicle 4 has an interface device (communication with a smartphone) that communicates with devices and sensors (a wireless signal reception device 21, a GPS receiver 22, a steering angle sensor 23, a speed sensor 24, and the like) that are desirably mounted on the vehicle 4. Wireless communication device or the like).
Each function of the information processing device 31 may be mounted on either the vehicle 4 or the smartphone. However, since the smartphone usually has a wireless communication function such as a telephone line, the smartphone is provided with an entry signal transmission unit 45. Communication functions such as the first transmission unit 47 and the reception unit 49 can be mounted. Moreover, a process can be smoothly performed by integrating control of the information acquisition part 41, the approach determination part 44, the stop detection part 46, the process execution part 51, etc. to a smart phone.
[4H] In the above-described embodiment, the configuration in which the travel area information is acquired by the information processing system 5 is exemplified. However, the server apparatus 2 may generate the travel area information.
Specifically, in the information processing apparatus 31b of the information processing system 5, as illustrated in FIG. 20, the vehicle information acquisition unit 151 acquires information indicating the vehicle state including vehicle position information and information related to steering rotation. When the entry determination unit 44 detects entry of the vehicle into the specific range, information indicating the state of the vehicle by the entry transmission unit 152 and specific information that is information that can identify the information processing system 5 Are transmitted to the server device as an approach signal.
In the server device 2a, the area information generation unit 153 generates travel area information based on information indicating the state of the vehicle included in the transmitted approach signal, and the area information transmission unit 154 generates the generated travel area information. Then, the information is transmitted to the information processing system 5 of the transmission source specified by the specific information included in the entry signal.
In the information processing system 5, the region information storage unit 74 stores travel region information, which is information related to the region in which the vehicle 4 travels, transmitted from the server device.
Similarly to the first to third embodiments described above, the stop detection unit 46, the first transmission unit 47, the process execution unit 51, the signal generation unit 63, the signal transmission destination setting unit 64 (the transmission destination identification unit 64a or A transmission range setting unit 64b), a second transmission unit 65, and the like.
If it is the report system comprised in this way, the processing load of the information processing system 5 can be reduced.
[4I] In the first embodiment, the configuration in which the specific information is stored in the area list to store the travel area information and the specific information in association with each other is illustrated. However, the travel area information is not used without using the area list. And the combination of specific information may be managed individually.
[4J] In the above-described embodiment, the configuration in which the stop position range is set by the transmission range setting unit 64b provided in the server device 2 is exemplified. However, the information processing system 5 may set the stop position range. As shown in FIG. 21, the information processing apparatus 31 c of this embodiment includes a second range setting unit 48.
The second range setting unit 48 is a range (stop position range) according to the distance from the current position of the vehicle 4 detected by the position detection unit 42 when the stop detection unit 46 detects the stop of the vehicle. Set one or more. The first transmission unit 47 transmits to the server device 2 a first stop signal including the set range information and the travel region information stored in the region information storage unit 74.
In the server apparatus 2, it is not necessary to perform processing by the transmission range setting unit 64 b, and a signal including information indicating the stop position range set by the second range setting unit 48 is transmitted as the second stop signal B.
The notification system configured as described above can achieve the same effects as those of the third embodiment described above.
[4K] In the third embodiment, the configuration in which the signal including the information on the stop position range is transmitted as the second stop signal B to the information processing system 5 by broadcast transmission is illustrated. However, as in the first embodiment, in the broadcast, Instead, the second stop signal B transmitted individually to the information processing system 5 may include information on the stop position range as in the third embodiment.
[4L] The functions of one component in the above embodiment may be distributed as a plurality of components, or the functions of a plurality of components may be integrated into one component. In addition, at least a part of the configuration of the above embodiment may be replaced with a known configuration having a similar function. Moreover, you may abbreviate | omit a part of structure of the said embodiment.
In addition, at least a part of the configuration of the above embodiment may be added to or replaced with the configuration of the other embodiment. In addition, all the aspects included in the technical idea specified only by the wording described in the claim are embodiment of this invention.
[4M] Each functional unit constituting the information processing system 5 may be realized by hardware, but may be realized by a program for causing a computer to function as each functional unit of the information processing system 5. In particular, it is conceivable that the information acquisition unit 41, the entry determination unit 44, the stop detection unit 46, the entry signal transmission unit 45, the first transmission unit 47, and the process execution unit 51 can be implemented as a realizable program.
The computer described above is preferably a computer including a storage device capable of storing data and a communication device capable of wireless communication with the outside.
DESCRIPTION OF SYMBOLS 1 ... Report system, 2 ... Server apparatus, 4 ... Vehicle, 5 ... Information processing system, 11 ... CPU, 21 ... Radio signal receiving device, 31 ... Information processing apparatus, 32 ... CPU, 41 ... Information acquisition part, 42 ... Position Detection unit, 44 ... entry determination unit, 45 ... entry signal transmission unit, 46 ... stop detection unit, 47 ... first transmission unit, 48 ... second range setting unit, 49 ... reception unit, 50 ... relationship determination unit, 51 ... Process execution unit 52 ... Exit determination unit 53 ... Exit signal transmission unit 54 ... Range determination unit 61 ... Vehicle information storage unit 62 ... Stop information storage unit 63 ... Signal generation unit 64 ... Signal transmission destination setting unit 64a ... transmission destination specifying unit, 64b ... transmission range setting unit, 65 ... second transmission unit, 66 ... deletion control unit, 71 ... road specifying unit, 72 ... travel direction determination unit, 73 ... specific range specifying unit, 74 ... Area information storage unit, 75 ... specific range storage unit, 101 ... road 103 ... certain range, 121 ... stop position range, 151 ... vehicle information acquisition unit, 152 ... enters upon transmission unit, 153 ... area information generating section, 154 ... area information transmitting section
An information system (1) including an information processing system (5) existing in a vehicle and a server device (2) configured to be capable of wireless communication with the information processing system,
An information acquisition unit (41) for acquiring travel region information which is information relating to a region where the vehicle travels;
An entry determination unit (44) for determining whether or not the vehicle has entered a specific range;
When the approach determination unit determines that the vehicle has entered the specific range, the travel region information acquired by the information acquisition unit, and specific information that is information that can specify the information processing system, An ingress signal transmitting unit (45) for transmitting an ingress signal, which is a signal including: to the server device;
A stop detection unit (46) for detecting a signal related to the stop of traveling of the vehicle;
A first transmission unit (47) for transmitting a first stop signal, which is a signal including the travel area information, to the server device when the signal is detected by the stop detection unit;
Sent from the server device when the server device receives the first stop signal transmitted from the information processing system that is present in another vehicle different from the host vehicle that is the vehicle in which the information processing system is present. A process execution unit (51) that executes a predetermined process when receiving a second stop signal that is a signal including information on the stop position of the other vehicle.
A vehicle information storage unit (61) that stores the traveling region information and the specific information included in the approach signal in association with each other when the approach signal transmitted from the approach signal transmission unit is received;
A signal generator (63) for generating the second stop signal based on the first stop signal transmitted from the first transmitter;
When the first stop signal transmitted from the first transmission unit is received, the vehicle information includes the information processing system existing in a range determined based on the travel area information included in the first stop signal. A transmission destination specifying unit (64a) for specifying based on the travel region information and the specifying information stored in the storage unit;
A second transmission unit (65) that transmits the second stop signal generated by the signal generation unit to the information processing system specified by the transmission destination specification unit ;
The vehicle information storage unit links one area among a plurality of areas into which roads are divided, which is determined based on the travel area information included in the approach signal, and the specific information. Remember it,
The transmission destination specifying unit specifies the information processing system based on the specifying information associated with the one area determined based on the traveling area information included in the first stop signal. A reporting system characterized by
The notification system according to claim 1,
An exit determination unit (52) for determining whether or not the vehicle has exited the specific range;
When the exit determination unit determines that the vehicle has exited from the specific range, the exit is transmitted to the server device as an exit signal including specific information that is information that can identify the information processing system. A signal transmission unit (53),
When the exit signal transmitted from the exit signal transmission unit is received, a deletion control unit that deletes the travel area information associated with the specific information included in the exit signal from the vehicle information storage unit (66) It is provided. The reporting system characterized by the above-mentioned.
The notification system according to claim 1 or 2,
The vehicle information storage unit in the server device stores the specific information with a priority determined by a predetermined standard,
The said 2nd transmission part transmits the said 2nd stop signal to the said information processing system according to the said priority. The notification system characterized by the above-mentioned.
The notification system according to any one of claims 1 to 3 , wherein
The information processing system includes a position detection unit (42) for detecting the position of the vehicle,
The first stop signal includes information indicating a current position of the vehicle detected by the position detector.
The signal generation unit sets one or more ranges on the road according to the distance from the position based on information indicating the current position of the vehicle included in the first stop signal, The second stop signal is generated with the information indicating the information on the stop position of the vehicle,
The process execution unit determines whether or not the host vehicle is located in the range included in the second stop signal received by the information processing system, and executes a predetermined process according to the determination result A reporting system characterized by
A vehicle information acquisition unit (151) for acquiring information indicating a state of the vehicle including information on the position of the vehicle and information on steering rotation;
Information indicating the state of the vehicle acquired by the vehicle information acquisition unit and information capable of specifying the information processing system when the entry determination unit determines that the vehicle has entered the specific range. An on-entry transmission unit (152) for transmitting an entry signal, which is a signal including specific information, to the server device;
A region information storage unit (74) that stores travel region information that is transmitted from the server device and is information related to a region in which the vehicle travels;
When the signal is detected by the stop detection unit, a first transmission unit (47) that transmits a first stop signal, which is a signal including the travel region information stored in the region information storage unit, to the server device. )When,
An area information generation unit (153) that generates the travel area information based on information indicating the state of the vehicle included in the approach signal transmitted from the approach transmission unit;
A region information transmission unit that transmits the travel region information generated by the region information generation unit to the information processing system that is a transmission source of information indicating the state of the vehicle specified by the specific information included in the entry signal (154),
A signal for setting a transmission destination for transmitting the second stop signal based on at least the travel area information included in the first stop signal when the first stop signal transmitted from the first transmission unit is received. A transmission destination setting unit (64);
A notification system comprising: a second transmission unit (65) configured to transmit the second stop signal generated by the signal generation unit to the transmission destination set by the signal transmission destination setting unit.
An information processing system constituting the notification system according to claim 5 .
The vehicle information acquisition unit, the entry determination unit, the entry time transmission unit, the area information storage unit, the stop detection unit, and the first transmission unit constituting the information processing system according to claim 6. And the processing execution unit, and is configured to be able to be taken out from the vehicle.
The vehicle information acquisition unit, the entry determination unit, and the entry of the information processing system constituting the notification system according to claim 5, wherein the computer includes a storage device capable of storing data and a communication device capable of wireless communication with the outside. A program that functions as a time transmission unit, the area information storage unit, the stop detection unit, the first transmission unit, and the process execution unit.
The server apparatus which comprises the alerting | reporting system of any one of Claims 1-5 .
A server device (2) configured to be able to wirelessly communicate with an information processing system (5) existing in a vehicle,
A signal transmitted from the information processing system when a vehicle in which the information processing system is present enters a specific range, and information relating to travel region information, which is information relating to a region in which the vehicle travels, and the information processing system are specified A vehicle information storage unit (61) that stores the traveling area information and the specific information included in the approach signal when the approach signal is a signal including the specific information that is possible information; ,
A signal transmitted from the information processing system when the vehicle in which the information processing system exists stops traveling or when normal traveling becomes difficult, and is a signal including the traveling region information. A signal generator (63) for generating a second stop signal, which is a signal including information related to the stop position of the vehicle , based on one stop signal;
When the first stop signal is received, the information processing system existing in a range determined based on the travel region information included in the first stop signal is stored in the vehicle information storage unit. A destination identification unit (64a) that identifies based on the information and the identification information;
The transmission destination specifying unit specifies the information processing system based on the specifying information associated with the one area determined based on the traveling area information included in the first stop signal. A server device.
JP2014163892A 2014-08-11 2014-08-11 Report system, information processing system, server device, terminal device, and program Active JP6375772B2 (en)
JP2014163892A JP6375772B2 (en) 2014-08-11 2014-08-11 Report system, information processing system, server device, terminal device, and program
DE112015003712.8T DE112015003712T5 (en) 2014-08-11 2015-07-28 Notification system, information processing system, server device, terminal and program
CN201580032571.6A CN106471555B (en) 2014-08-11 2015-07-28 Reporting chain, information processing system, server unit, terminal installation
PCT/JP2015/003787 WO2016024386A1 (en) 2014-08-11 2015-07-28 Reporting system, information-processing system, server device, terminal device, and program
US15/325,535 US10388165B2 (en) 2014-08-11 2015-07-28 Reporting system, information-processing system, server device, terminal device, and non-transitory storage medium
JP2016038880A JP2016038880A (en) 2016-03-22
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JP2014163892A Active JP6375772B2 (en) 2014-08-11 2014-08-11 Report system, information processing system, server device, terminal device, and program
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JP (1) JP6375772B2 (en)
CN (1) CN106471555B (en)
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WO (1) WO2016024386A1 (en)
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