Patent Description:
In general, an energy storage system (ESS) is a system for improving energy use efficiency, improving the quality of renewable energy, and stabilizing a power supply system by storing power and using it when needed.

This energy storage system is a system that stabilizes the irregular power of new and renewable energy, and improves energy efficiency and improves the stable operation of the power system by storing power when the demand for power is low and using the stored power during times of high consumption, to minimize the restrictions on power transmission to increase the utilization of new and renewable energy.

Types of energy storage systems include for peak reduction, for emergency power, for solar-connected use, and for frequency adjustment.

An energy storage system may include an energy management system (EMS) for receiving information from peripheral devices and monitoring in real time as a system that manages power, including functions capable of monitoring and regulating energy consumption in the energy storage system, and predicting power use and making necessary adjustments.

Meanwhile, when installing the energy storage system, the installer should perform initial setup of the energy storage system according to each installation environment. To this end, the installer connects a user terminal to the energy management system and performs initial setup.

The conventional methods for initial setup of the energy storage system include a method of performing initial setup by connecting the user terminal and the energy management system by wire through an Ethernet cable, and a method of performing initial setup by wirelessly connecting the user terminal and the energy management system through Wi-Fi and Bluetooth (BT) communication.

As such, in the first method of the conventional methods for initial setup of the energy storage system, it is cumbersome for the installer to manually align the IP address range of the user terminal with the IP address range of the energy management system, and a specific application for performing initial setup should be installed in the user terminal.

In addition, in the second method of the conventional methods for initial setup of the energy storage system, since it is a wireless communication method, the connection may be unstable depending on the distance, there is a problem of weak security, and, like the first method, a specific application for performing initial setup should be installed in the user terminal.

The above information disclosed in this Background section is only for enhancement of understanding of the background of the invention and it may therefore contain information that does not form the prior art that is already known to a person of ordinary skill in the art.

The article "SEGGER: IP-over-USB" XP055919268 is acknowledged. The Patent "<CIT>" is acknowledged.

Dependent claims define preferred embodiments.

The present invention is directed to providing a system and method in which there is no need to install a separate initial setup application in a user terminal at the time of initial setup, as well as the hassle of manually matching the IP address range of the user terminal with the IP address range of an energy management system for initial setup can be eliminated.

In addition, the present invention is directed to providing a system and method capable of performing initial setup using user terminals having various operating systems.

The technical problems to be achieved in the present invention are not limited to the technical problems mentioned above, and other technical problems not mentioned will be clearly understood by those of ordinary skill in the art from the following description.

According to the present invention there is provided a method for initial setup of an energy storage system suitable for an installation environment when installing the energy storage system, the method comprising: connecting an energy management system and a user terminal with a USB cable; activating, by the user terminal, a USB network through USB tethering for initial setup; allocating, by the energy management system, a preset static IP to the USB network; accessing, by the user terminal, a setting server of the energy management system using the static IP; and performing, by the user terminal, initial setup of the energy storage system in the setting server, further comprising setting, by the energy management system, the static IP differently according to an operating system of the user terminal, wherein the allocating the static IP is a step of selectively allocating, by the energy management system, the different static IPs to the different USB networks.

Here, the accessing the setting server is a step of accessing the setting server by inputting the static IP to an address bar of a web browser of the user terminal.

In addition, the method for initial setup of an energy storage system according to an exemplary embodiment of the present invention further include, before performing the initial setup, a step of providing, by the setting server, an interface for performing the initial setup to the user terminal.

In addition, the accessing the setting server is a step of accessing, by the user terminal, the setting server with the static IP suitable for the operating system of the user terminal.

According to a second aspect of the present invention there is provided a system a system for initial setup of an energy storage system, comprising: an energy management system comprising a setting server for performing initial setup suitable for an installation environment when installing the energy storage system, and a Controller for allocating a preset static IP to a USB network for initial setup; and a user terminal connected to the energy management system through a USB cable and for activating the USB network through USB tethering; wherein the user terminal accesses the setting server of the energy management system with the static IP and performs initial setup of the energy storage system in the setting server, wherein the Controller sets the static IP differently according to an operating system of the user terminal, wherein the Controller selectively allocates the different static IPs to different USB networks according to the operating system of the user terminal.

Here, when the static IP is input to an address bar of a web browser of the user terminal, the user terminal accesses the setting server.

In addition, the user terminal accesses the setting server with the static IP suitable for the operating system of the user terminal.

According to the present invention, there is no need to install a separate initial setup application in a user terminal at the time of initial setup, as well as the hassle of manually matching the IP address range of the user terminal with the IP address range of an energy management system for initial setup can be eliminated.

In addition, according to the present invention, it is possible to perform initial setup by using the user terminal having various operating systems.

The effects of the present invention are not limited to those mentioned above, and other effects not mentioned will be clearly understood by those of ordinary skill in the art from the following description.

The above and other aspects, features, and advantages of the present invention will become more apparent to those of ordinary skill in the art by describing embodiments thereof in detail with reference to the accompanying drawings, in which:.

Hereinafter, in order to fully understand the configuration and effects of the present invention, preferred embodiments of the present invention will be described with reference to the accompanying drawings. However, the present invention is not limited to the embodiments disclosed below, and may be embodied in various forms and various modifications may be made, as long as encompassed within the scope of the invention as defined by the appended claims. Rather, the description of the present invention is provided so that this disclosure will be thorough and complete and will fully convey the concept of the invention to those of ordinary skill in the art. In the accompanying drawings, the size of the elements is enlarged compared to actual ones for the convenience of description, and the ratio of each element may be exaggerated or reduced.

Terms such as 'first' and 'second' may be used to describe various elements, but, the above elements should not be limited by the terms above. The above terms may be used only for the purpose of distinguishing one element from another. For example, without departing from the scope of the present invention, a `first element' may be named a 'second element' and similarly, a 'second element' may also be named a `first element. ' In addition, expressions in the singular include plural expressions unless explicitly expressed otherwise in the context. Unless otherwise defined, terms used in the embodiments of the present invention may be interpreted as meanings commonly known to those of ordinary skill in the art.

<FIG> is a schematic block diagram of a system for initial setup of an energy storage system according to an exemplary embodiment of the present invention, <FIG> is an operation configuration diagram of a system for initial setup of an energy storage system according to a first embodiment of the present invention, and <FIG> is an operation configuration diagram of a system for initial setup of an energy storage system according to a second embodiment of the present invention.

As shown in <FIG>, the system for initial setup of an energy storage system according to an exemplary embodiment of the present invention may include an energy management system <NUM> and a user terminal <NUM>.

An energy storage system (ESS) is a system that increases energy efficiency by storing generated electricity in a storage device (battery, etc.) and supplying it when power is needed.

The energy management system (EMS) <NUM> is a system that provides data on the operation status and power consumption of the energy storage system to the manager, so that the manager can monitor the energy storage system.

As such, the energy management system <NUM> may be provided in the energy storage system, but is not limited thereto.

Meanwhile, when installing the energy storage system, the installer should perform initial setup of the energy storage system according to each installation environment. To this end, the installer connects the user terminal <NUM> to the energy management system <NUM> and performs initial setup.

The energy management system <NUM> may include a setting server <NUM> for performing initial setup suitable for an installation environment when installing the energy storage system, and a Controller <NUM> for allocating a preset static IP to a USB network. Here, the setting server <NUM> is a type of web server and provides an interface for performing initial setup.

A web browser <NUM> for accessing the setting server <NUM> of the energy management system <NUM> may be installed in the user terminal <NUM>. Here, the user terminal <NUM> may be a mobile terminal such as a mobile phone or a notebook computer, but is not limited thereto, and any mobile terminal capable of performing a tethering function is sufficient.

Hereinafter, an operation process of the system for initial setup of an energy storage system according to a first embodiment of the present invention will be described with reference to <FIG>.

The user terminal <NUM> is connected to the energy management system <NUM> through a USB cable. Here, the energy management system <NUM> and the user terminal <NUM> have a USB port for connecting a USB cable.

When the user terminal <NUM> is connected to the energy management system <NUM>, the user terminal <NUM> may activate the USB network through USB tethering. To this end, tethering software is installed in the user terminal <NUM> to enable Internet access through a USB cable.

Here, tethering refers to an Internet sharing method that enables an external device to use the Internet by connecting a device capable of using the Internet with another external device.

The user terminal <NUM> accesses the setting server <NUM> of the energy management system <NUM> with a static IP. Specifically, the installer may access the setting server <NUM> by inputting a static IP known or designated by the user to the address bar of the web browser of the user terminal <NUM>.

As such, in the system for initial setup of an energy storage system according to the first embodiment of the present invention, there is no need to install a separate initial setup application in the user terminal <NUM> at the time of initial setup, as well as the hassle of manually matching the IP address range of the user terminal <NUM> with the IP address range of the energy management system <NUM> for initial setup can be eliminated.

The user terminal <NUM> may perform initial setup of the energy storage system using an interface for initial setup provided by the setting server <NUM>. That is, the user terminal <NUM> displays an interface for initial setup provided by the setting server <NUM> on the display screen of the user terminal <NUM> so that the installer can perform initial setup.

As such, in the system for initial setup of an energy storage system according to the first embodiment of the present invention, the user terminal <NUM> directly performs the initial setup by accessing the setting server <NUM>, rather than as in the conventional method transmitting the initial setup data to the setting server <NUM> and the setting server <NUM> performing the initial setup based on the initial setup data.

Hereinafter, an operation process of the system for initial setup of an energy storage system according to a second embodiment of the present invention will be described with reference to <FIG>.

The system for initial setup of an energy storage system according to the second embodiment of the present invention differs only in the configuration for setting and allocating the static IP, and the rest of the configuration is the same.

The user terminal <NUM> may use a different operating system (e.g., Android, iOS, etc.) for each type. Also, in the case of USB tethering, the IP address range is different depending on the type of operating system.

Accordingly, the system for initial setup of an energy storage system according to the second embodiment of the present invention presents a method for performing the initial setup by changing the static IP according to the operating system of the user terminal <NUM>.

Specifically, the Controller <NUM> sets the static IP differently according to the operating system of the user terminal <NUM> by using the IP alias. Here, IP alias is a method of setting a plurality of IPs in one physical network interface card.

For example, the Controller <NUM> may set the static IP to <NUM>. xx when the operating system of the user terminal <NUM> is Android, and may set the static IP to <NUM>. xx when the operating system of the user terminal <NUM> is iOS.

The Controller <NUM> may selectively allocate different static IPs to different USB networks according to the operating system of the user terminal <NUM> connected to the energy management system <NUM>.

For example, as shown in <FIG>, when the user terminal <NUM> having an Android operating system is connected to the energy management system <NUM>, the Controller <NUM> may allocate <NUM>. xx to the USB network. And, as shown in <FIG>, when the user terminal <NUM> having an iOS operating system is connected to the energy management system <NUM>, the Controller <NUM> may allocate <NUM>. xx to the USB network.

The user terminal <NUM> may access the setting server <NUM> with a static IP suitable for the operating system of the user terminal <NUM>.

For example, as shown in <FIG>, the user terminal <NUM> of which the operating system is Android may access the setting server <NUM> at <NUM>. And, as shown in <FIG>, the user terminal <NUM> of which the operating system is iOS may access the setting server <NUM> at <NUM>.

The user terminal <NUM> accesses the setting server <NUM> of the energy management system <NUM> with a fixed IP suitable for the operating system. Specifically, the installer may access the setting server <NUM> by inputting a static IP known or designated by the user to the address bar of the web browser of the user terminal <NUM>.

As such, the system for initial setup of an energy storage system according to the second embodiment of the present invention may perform initial setup by using the user terminal <NUM> having various operating systems.

<FIG> is a flowchart of a method for initial setup of an energy storage system according to an exemplary embodiment of the present invention.

Hereinafter, a method for initial setup of an energy storage system according to an exemplary embodiment of the present invention will be described with reference to <FIG>.

First, the energy management system <NUM> and the user terminal <NUM> are connected with a USB cable at step S10, and the user terminal <NUM> activates the USB network <NUM> through USB tethering at step S20.

Next, the energy management system <NUM> allocates a preset static IP to the USB network <NUM> at step S30.

Next, the user terminal <NUM> accesses the setting server <NUM> of the energy management system <NUM> with a static IP at step S40.

Next, the user terminal <NUM> performs the initial setup of the energy storage system in the setting server <NUM> at step S50.

And, the step S50 of accessing the setting server <NUM> by the user terminal <NUM> may be a step of accessing the setting server <NUM> by inputting a static IP known or designated by the user to the address bar of the web browser <NUM> of the user terminal <NUM>.

The method for initial setup of an energy storage system according to an exemplary embodiment of the present invention may include, before the step S50 of performing the initial setup by the user terminal <NUM>, a step of providing, by the setting server, an interface for performing the initial setup to the user terminal <NUM>.

The method for initial setup of an energy storage system according to an exemplary embodiment of the present invention may include a step of setting, by the energy management system <NUM>, the static IP differently according to the operating system of the user terminal <NUM>.

Here, the step S30 of allocating the static IP by the energy management system <NUM> may be a step of selectively allocating, by the energy management system <NUM>, different static IPs to different USB networks <NUM>.

And, the step S40 of accessing the setting server <NUM> by the user terminal <NUM> may be a step of accessing, by the user terminal <NUM>, the setting server <NUM> with a static IP suitable for the operating system of the user terminal <NUM>.

As such, in the method for initial setup of an energy storage system according to an exemplary embodiment of the present invention, there is no need to install a separate initial setup application in the user terminal <NUM> at the time of initial setup, as well as the hassle of manually matching the IP address range of the user terminal <NUM> with the IP address range of the energy management system <NUM> for initial setup can be eliminated.

In addition, the method for initial setup of an energy storage system according to an exemplary embodiment of the present invention may perform initial setup by using the user terminal <NUM> having various operating systems.

Claim 1:
A method for initial setup of an energy storage system suitable for an installation environment when installing the energy storage system, the method comprising:
connecting an energy management system (<NUM>) and a user terminal (<NUM>) with a USB cable;
activating, by the user terminal (<NUM>), a USB network through USB tethering for initial setup;
allocating, by the energy management system (<NUM>), a preset static IP to the USB network;
accessing, by the user terminal (<NUM>), a setting server (<NUM>) of the energy management system (<NUM>) using the static IP, wherein the accessing the setting server (<NUM>) is a step of accessing the setting server (<NUM>) by inputting the static IP to an address bar of a web browser of the user terminal (<NUM>); and
performing, by the user terminal (<NUM>), initial setup of the energy storage system in the setting server (<NUM>),
further comprising setting, by the energy management system (<NUM>), the static IP differently according to an operating system of the user terminal (<NUM>),
wherein the allocating the static IP is a step of selectively allocating, by the energy management system (<NUM>), the different static IPs to the different USB networks.