Patent Description:
As it is known, land vehicles require a frequent maintenance to be carried out in dedicated workshops, in order to diagnose and/or solve possible mechanical problems due to the wear of given components of the land vehicle.

The procedure for the diagnosis of the degree of wear of the mechanical components of a land vehicle currently involves having a skilled technician visually inspect said components.

In particular, the inspection of the components of the land vehicle located in the lower part of the vehicle, which are not visible when the land vehicle rests on the ground, requires the land vehicle to be lifted by means of a lift.

By way of example, the mechanical components that require the lifting of the vehicle for the inspection of their degree of wear comprise the suspensions of the wheels and the underbody of the land vehicle.

Documents <CIT>, <CIT> and <CIT> disclose systems for the inspection of components located in the lower part of a land vehicle.

Furthermore, in given circumstances, diagnosis procedures involve the application of lateral forces to given components of the land vehicle, in particular to the wheels of the vehicle, in order to check for the existence of so-called "backlashes", namely the movement of said components along directional axes other than the axes provided for during the designing phase.

A drawback of known diagnosis procedures lies in the fact that the diagnosis of the condition of wear of mechanical components is subjected to errors, since said diagnosis depends on the experience and on the skills of the technician carrying it out.

Furthermore, the need to lift the land vehicle significantly affects the times and costs associated with the diagnosis operations and requires the availability of a dedicated space, since the land vehicle lifting equipment is expensive and bulky.

Therefore, the object of the invention is to provide a diagnosis system for the automatic diagnosis of the condition of components of a land vehicle, which at least partly overcomes the drawbacks of the prior art discussed above.

In particular, it is an object of the invention to provide a diagnosis system that reduces errors, the amount of time needed for the inspection and the costs arising from the inspection and, at the same time, allows a non-particularly skilled operator to carry out the inspection.

According to the invention, there is provided a diagnosis system for the automatic diagnosis of the condition of wear of predetermined components of a land vehicle; the system comprising:.

each first image acquisition device being fixed to the support base in the space comprised between the two movable plates.

Thanks to the invention, the diagnosis of the condition of the mechanical components can be carried out in an automatic manner, significantly limiting errors and reducing the times and the costs associated with the diagnosis operations.

Furthermore, the components of the land vehicle located in the lower part of the land vehicle can be subjected the inspection without having to lift the land vehicle.

A further object of the invention is to provide a diagnosis method for the automatic diagnosis of the condition of components of a land vehicle, which at least partly overcomes the drawbacks of the prior art discussed above.

According to the invention, there is provided a diagnosis method for the automatic diagnosis of the condition of wear of predetermined components of a land vehicle; the method comprising the steps of:.

In this way, the diagnosis of the condition of the mechanical components can be performed in a reliable and repeatable manner, limiting both the times and the costs associated with said diagnosis.

Further features and advantages of the invention are defined in the appended dependent claims and will be best understood upon perusal of the following description of a non-limiting embodiment, with reference to the accompanying Figures, wherein:.

With reference to <FIG>, reference number <NUM> indicates, as a whole, a diagnosis system for the automatic diagnosis of the condition of predetermined components of a land vehicle VT, in particular of the condition of wear of said components.

According to an embodiment, the diagnosis system <NUM> be used in mechanical workshops dedicated to the maintenance and/or repair of land vehicles, without for this reasons limiting the wide range of possible applications of the invention.

In the case described and shown herein, the diagnosis system <NUM> comprises a diagnosis station <NUM>, which comprises an image acquisition assembly <NUM> configured to acquire images of predetermined components of the land vehicle VT; and a control unit <NUM> configured to determine the condition, preferably the condition of wear, of said predetermined components as a function of the acquired images.

In particular, the diagnosis station <NUM> comprises a support base <NUM>, which is fixed to the ground and is configured to support, approximately at ground level, at least two wheels R of the land vehicle VT.

In the case described and shown herein, the support base <NUM> is configured to support the left wheel R and the right wheel R of one of the two axles of the land vehicle VT, which are not shown in the accompanying Figures.

The image acquisition assembly <NUM> is coupled to the support base <NUM> so as to be at least partly located under the land vehicle VT in order to acquire images, from below, of the predetermined components of the land vehicle VT.

With reference to <FIG>, the image acquisition assembly <NUM> comprises an image acquisition device <NUM> and an image acquisition device <NUM>, each coupled to the support base <NUM> and configured to acquire images of components of a suspension S of the land vehicle VT, in particular of bushings of the suspension S.

More in detail, each image acquisition device <NUM>, <NUM> is arranged on the support base <NUM> at a support zone of a respective wheel R of the land vehicle VT and is configured to acquire images, from below, of the components of the suspension S of the land vehicle VT in proximity to said respective wheel R. In other words, each image acquisition device <NUM>, <NUM> is fixed to the support base <NUM> and faces said components of the suspension S of the land vehicle VT when the land vehicle VT is standing on the support base <NUM>.

According to an embodiment, the image acquisition devices <NUM> and <NUM> are configured to simultaneously acquire the images, from below, of the suspension S of the land vehicle VT.

The control unit <NUM> is configured to determine the condition of said components of the suspension S as a function of the images acquired by each image acquisition device <NUM>, <NUM>.

Furthermore, the image acquisition assembly <NUM> comprises an image acquisition device <NUM>, which is coupled to the support base <NUM> and is configured to acquire images, from below, of component of a frame T of the land vehicle VT, in particular of the underbody of the land vehicle VT.

The control unit <NUM> is configured to determine the condition of said components of the frame T as a function of the images acquired by the image acquisition device <NUM>.

In this way, it is possible to determine the condition of components located in the lower part of the land vehicle VT, in particular of components of the suspension S and of the frame T, which are not visible when the land vehicle VT rests on the ground, without having to lift the land vehicle VT.

With reference to <FIG>, the image acquisition assembly <NUM> comprises an image acquisition device <NUM> and an image acquisition device <NUM>, which are coupled to the support base <NUM> and are configured to acquire images of a front portion and of a rear portion of the land vehicle VT, respectively, in particular of a front portion and of a rear portion of the body C of the land vehicle VT.

The control unit <NUM> is configured to determine the condition of the front portion and of the rear portion of the land vehicle VT as a function of the images acquired by the image acquisition device <NUM> and by the image acquisition device <NUM>.

Each image acquisition device <NUM>, <NUM>, <NUM>, <NUM>, <NUM> is connected to the control unit <NUM> so as to exchange data with the control unit <NUM>. In particular, each image acquisition device <NUM>, <NUM>, <NUM>, <NUM>, <NUM> is connected to the control unit <NUM> by means of a respective cable, which is not shown in the accompanying Figures, or in wireless mode or in any other way enabling the exchange of data.

According to an embodiment, each image acquisition device <NUM>, <NUM>, <NUM>, <NUM>, <NUM> comprises a camera or a video camera or any other optical device designed to acquire images.

The control unit <NUM> is configured to process the images acquired by each image acquisition device <NUM>, <NUM>, <NUM>, <NUM>, <NUM> so as to determine parameters indicative of the condition of said predetermined components and to compare said parameters with reference values of the predetermined components. In this way, the control unit <NUM> provides an indication of the condition of wear of said components.

With reference to <FIG>, the support base <NUM> comprises two movable plates <NUM> and <NUM>, each configured to support a respective wheel R of the land vehicle VT and to move the respective wheel R in a direction D1, D2 substantially parallel to the ground. In particular, the directions D1 and D2 are substantially parallel to the rotation axis of each wheel R, which is not shown in the accompanying Figures.

Each image acquisition device <NUM>, <NUM> is fixed to the support base <NUM> in the space comprised between the two movable plates <NUM> and <NUM>.

The movement of each movable plate <NUM>, <NUM> is operated by a moving system, which is not shown in the accompanying Figures and comprises at least one electric or hydraulic or pneumatic actuator or of any other type.

The control unit <NUM> is configured to control the movement of each movable plate <NUM><NUM> and to control the image acquisition assembly <NUM> so as to acquire images of said predetermined components of the land vehicle VT when a wheel R of the land vehicle VT is moved.

In these circumstances, the control unit <NUM> is configured to determine at least one value of a backlash of a predetermined component as a function of the images acquired when a wheel R of the land vehicle VT is moved by the respective movable plate <NUM>, <NUM>.

Furthermore, each image acquisition device <NUM>, <NUM> is configured to detect the position of the respective wheel R of the land vehicle VT and/or to check for the correct alignment of the respective wheel R of the land vehicle VT on the respective movable plate <NUM>, <NUM>.

Basically, each image acquisition device <NUM>, <NUM> is configured both to acquire images of components of a suspension S of the land vehicle VT and to detect the position of the respective wheel R and/or to check for the correct alignment of the respective wheel R on the respective movable plate <NUM>, <NUM>, simplifying the architecture of the diagnosis station <NUM>.

In use, before placing the wheels R of the land vehicle VT onto the support base <NUM>, the front portion of the land vehicle VT is arranged so as to face the image acquisition device <NUM> in order to allow the image acquisition device <NUM> to acquire images of the front portion of the body C of the land vehicle VT.

In this configuration, the image acquisition device <NUM> acquires the images of the front portion of the body C of the land vehicle VT and transmits said images to the control unit <NUM>, which processes said images and determines the condition of the front portion of the body C of the land vehicle VT.

Subsequently, with reference to <FIG>, the land vehicle VT is placed onto the support base <NUM>, so that the front wheels R are supported by the respective movable plates <NUM>, <NUM>.

In this configuration, the image acquisition devices <NUM>, <NUM> and <NUM> acquire images, from below, of the respective components of the land vehicle VT, in particular of components of the suspension S and of components of the frame T, and transmit said images to the control unit <NUM>, which processes the received images and determines the condition of said components of the land vehicle VT in an automatic manner.

According to an embodiment, the control unit <NUM> controls the movement of the movable plates <NUM> and <NUM> so as to determine the movement of the wheels R in the directions D1 and D2.

Simultaneously, the control unit <NUM> controls the image acquisition assembly <NUM>, in particular the image acquisition devices <NUM> and <NUM>, so as to acquire images of predetermined components of the land vehicle VT, in particular of the bushings of the suspension S of the land vehicle VT, when the respective wheel R of the land vehicle VT is moved.

In this way, it is possible to determine at least one value of a backlash of a predetermined component of the land vehicle VT, in particular of the bushings of the suspension S of the land vehicle VT, as a function of the acquired images and to determine the state thereof in an automatic manner.

According to an embodiment of the invention, the rear wheels R of the land vehicle VT are placed onto the support base <NUM> and these operations are repeated.

Subsequently, the land vehicle VT is moved so as to that the rear portion of the land vehicle VT faces the image acquisition device <NUM> in order to allow the image acquisition device <NUM> to acquire images of the rear portion of the body C of the land vehicle VT.

The images acquired by the image acquisition device <NUM> are transmitted to the control unit <NUM>, which processes said images and determines the condition of the rear portion of the body C of the land vehicle VT.

Claim 1:
A diagnosis system for the automatic diagnosis of the condition of wear of predetermined components of a land vehicle; the system (<NUM>) comprising:
- a diagnosis station (<NUM>) comprising a support base (<NUM>), which is fixed to the ground and is configured to support approximately at ground level at least two wheels (R) of the land vehicle (VT); and an image acquisition assembly (<NUM>), which is coupled to said support base (<NUM>) in such a way to be positioned, in use, at least partially below the land vehicle (VT) and is configured to acquire images from below of the predetermined components of the land vehicle (VT); the image acquisition assembly (<NUM>) comprising two first image acquisition devices (<NUM>, <NUM>), each of which is arranged on the support base (<NUM>) at a support zone of a respective wheel (R) of the land vehicle (VT) and is configured to acquire first images of components of a suspension (S) of the land vehicle (VT) in proximity to said respective wheel (R); the support base (<NUM>) comprising two movable plates (<NUM>, <NUM>), each of which is configured to support a respective wheel (R) of the land vehicle (VT) and to move the respective wheel (R) in a direction (D1; D2) substantially parallel to the ground and substantially parallel to the rotation axis of each wheel (R) ; and
- a control unit (<NUM>) configured to control the movement of each movable plate (<NUM>; <NUM>), to control the image acquisition assembly (<NUM>) so as to acquire the first images of the predetermined components of the land vehicle (VT) when a wheel (R) of the land vehicle (VT) is moved by means of the respective movable plate (<NUM>, <NUM>) in a direction substantially parallel to the rotation axis of each wheel (R), and to determine the condition of wear of said components of the suspension (S) as a function of the first acquired images;
each first image acquisition device (<NUM>, <NUM>) being fixed to the support base (<NUM>) in the space comprised between the two movable plates (<NUM>, <NUM>).