Information Display Method, System, Device, and Storage Medium

By establishing a tree structure in the vehicle and displaying relevant information based on the hierarchical relationship of components, it solves the problem that users find it difficult to quickly query vehicle component information, and realizes the efficiency and convenience of information query.

CN117807284BActive Publication Date: 2025-08-01CONTEMPORARY AMPEREX INTELLIGENCE TECHNOLOGY (SHANGHAI) LTD +1
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Patent Information

Application Number
CN202310554032.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-16
Publication Date
2025-08-01
Estimated Expiration
2043-05-16

AI Technical Summary

Technical Problem

It is difficult for users to quickly query the relevant information of each component in the vehicle, and it needs to search from a large amount of data, which takes a long time.

Method used

A tree structure is established based on the hierarchical relationship of each component in the vehicle, and the relevant information is displayed by selecting the corresponding components, including high-voltage circuit diagram, low-voltage circuit diagram, communication view, and thermal management view.

Benefits of technology

It improves the efficiency of information query, so users do not need to search from massive information, and can easily and quickly obtain the required information.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses an information display method, system, device, and storage medium. The method includes: obtaining the hierarchical division relationship between various components in a vehicle, where at least some components have a parent component and / or a child component; based on the hierarchical division relationship between the components, establishing a tree structure of the vehicle, where each node in the tree structure is a respective component of the vehicle; and in response to a selection instruction for a component in the tree structure of the vehicle, displaying relevant information associated with the selected component. The above solution facilitates a user to understand the relevant information of the components in the vehicle.
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Description

Technical Field

[0001] This application relates to the field of automobiles, and particularly to an information display method, system, device, and storage medium. Background Art

[0002] Currently, it is very troublesome for users to understand the relevant information of each component in a vehicle. They can only carefully search for the relevant information of the component they need to understand from the vehicle information provided by the manufacturer. There is a large amount of data to view and it takes a long time, which is not very convenient. Summary of the Invention

[0003] This application provides at least an information display method, system, device, and storage medium.

[0004] This application provides an information display method, including: obtaining the hierarchical division relationship between each component in the vehicle, where at least some components have a parent component and / or a child component; based on the hierarchical division relationship between each component, establishing a tree structure of the vehicle, where each node in the tree structure is a component of the vehicle; in response to a selection instruction for a component in the tree structure of the vehicle, displaying the relevant information associated with the selected component.

[0005] In the above solution, by obtaining the hierarchical division relationship between each component in the vehicle and establishing a tree structure of the vehicle based on this hierarchical division relationship, each node in the tree structure corresponds to a component, so that when a user wants to query the relevant information of a component, they only need to select the corresponding component, and then the relevant information associated with the selected component can be displayed, without the user having to query from a large amount of information, which saves time.

[0006] In some embodiments, obtaining the hierarchical division relationship between each component in the vehicle includes: in response to an instruction to create a hierarchical relationship, creating the hierarchical relationship of each component based on the instruction; or, receiving vehicle information including the hierarchical division relationship between each component in the vehicle, analyzing the vehicle information, and determining the hierarchical relationship between each component.

[0007] In the above solution, the user can customize the hierarchical relationship of each component, which is more flexible than a single hierarchical relationship. In addition, by receiving the imported vehicle information and then analyzing the vehicle information, the hierarchical relationship between each component can be determined, which is convenient and fast.

[0008] In some embodiments, the relevant information associated with the selected component includes a target view composed of each child component under the selected component, and the target view is one or more of a high-voltage circuit diagram, a low-voltage circuit diagram, a communication view, and a thermal management view.

[0009] In the above solution, the target view may include a communication view and / or a thermal management system view, and the target circuit diagram may include a high-voltage system view and / or a low-voltage circuit diagram, facilitating the user to understand information at multiple levels of the component.

[0010] In some embodiments, before displaying relevant information associated with the selected component in response to a selection instruction for a component in the tree structure of the vehicle, the method further includes: determining a target view composed of sub-components under each component based on the vehicle's overall vehicle circuit diagram, overall vehicle thermal management view, and overall vehicle communication view; establishing an association between each component and the corresponding target view of the component.

[0011] In the above solution, by pre-establishing the association between each view and the component, it is convenient to directly display the corresponding view according to the selected component subsequently.

[0012] In some embodiments, the method further includes: displaying the identifiers of each component in the navigation bar of the vehicle health details interface in a tree structure; in response to a selection instruction for a component in the tree structure of the vehicle, displaying relevant information associated with the selected component, including: in response to a selection operation on the identifier of the component, displaying one or more of the high-voltage circuit diagram, low-voltage circuit diagram, communication view, and thermal management view associated with the selected component in the first display area of the vehicle health details interface.

[0013] In the above solution, by displaying the tree structure and the view corresponding to the selected component in different regions on the vehicle health details interface, it is convenient for the user to understand which component the currently displayed view belongs to.

[0014] In some embodiments, in response to a selection instruction for a component in the tree structure of the vehicle, displaying relevant information associated with the selected component includes: obtaining the target states of the sub-components under the selected component, where the target states include at least one of a working state, a health state, and a communication state; adjusting the line mode of the target view composed of the sub-components based on the target states of the sub-components; displaying the adjusted target view.

[0015] In the above solution, by obtaining the states of each component and updating each target view based on the working states of each component, after the user selects the corresponding component, the updated view corresponding to the selected component can be displayed.

[0016] In some embodiments, displaying the adjusted target view includes: differentially displaying sub-components in different working states, different health states, and different communication states.

[0017] In the above solution, by differentially displaying sub-components in each state, it is convenient for the user to understand the situation of the sub-components of the selected component.

[0018] In some embodiments, the method further includes: obtaining the operating state of the vehicle and historical fault information, where the operating state includes one or more of the endurance mileage, battery capacity, cumulative driving mileage, energy consumption per 100 kilometers, and vehicle speed, and the historical faults include fault records of at least some components at each moment; displaying the operating state and fault information in the second display area of the vehicle health details interface.

[0019] In the above solution, by displaying the operating state of the vehicle and historical fault information in the second display area, it is convenient for the user to understand the basic operating conditions of the vehicle.

[0020] In some embodiments, the method further includes: receiving the identification of the target vehicle input in the vehicle identification input box in the vehicle status view or obtaining the type, vehicle status, and vehicle location of the target vehicle in the vehicle filtering bar to determine the identification of the target vehicle; displaying the identifications of the components of the target vehicle according to the tree structure of the target vehicle.

[0021] In the above solution, by filtering the vehicle, it is convenient for the user to understand the relevant information of the specific vehicle they want to view.

[0022] The present application provides an information display system, including: a relationship acquisition module, a construction module, and a display module. The relationship acquisition module is used to obtain the hierarchical division relationship between the components in the vehicle, and at least some components have parent components and / or child components; the construction module is used to establish a tree structure of the vehicle based on the hierarchical division relationship between the components, and each node in the tree structure is a component of the vehicle; the display module is used to display the relevant information associated with the selected component in response to a selection instruction for the component in the tree structure of the vehicle.

[0023] The present application provides an electronic device, including a memory and a processor, and program instructions are stored on the memory. When the program instructions are executed by the processor, they are used to implement the above information display method.

[0024] The present application provides a computer-readable storage medium, on which program instructions are stored. When the program instructions are executed by a processor, the above method is implemented.

[0025] In the above solution, by obtaining the hierarchical division relationship between the components in the vehicle and establishing a tree structure of the vehicle based on this hierarchical division relationship, where each node in the tree structure corresponds to a component, when the user wants to query the relevant information of a certain component, they only need to select the corresponding component, and then the relevant information associated with the selected component can be displayed, without the user having to query from a vast amount of information, which saves time.

[0026] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and do not limit the present application. Brief Description of the Drawings

[0027] The drawings herein are incorporated into and constitute a part of this specification. These drawings illustrate embodiments consistent with the present application and, together with the specification, are used to explain the technical solutions of the present application.

[0028] Figure 1 is a schematic flowchart of an information display method provided by one or more embodiments;

[0029] Figure 2 is a schematic diagram of a navigation bar of a vehicle health details interface provided by one or more embodiments;

[0030] Figure 3 is a schematic diagram of one mode of a communication view;

[0031] Figure 4 is a schematic diagram of one mode of a high-voltage system view;

[0032] Figure 5 is a schematic diagram of one mode of a low-voltage view; [[ID=2(]]

[0033] Figure 6 is a schematic diagram of one mode of a thermal management system view;

[0034] Figure 7 is a schematic structural diagram of an information display system provided by one or more embodiments;

[0035] Figure 8 is a schematic structural diagram of an electronic device provided by one or more embodiments;

[0036] Figure 9 is a schematic structural diagram of a computer-readable storage medium provided by one or more embodiments. Detailed Embodiments

[0037] The following describes the solutions of the embodiments of the present application in detail with reference to the drawings in the specification.

[0038] In the following description, specific details such as specific subsystem structures, interfaces, and technologies are set forth for the purpose of illustration and not limitation in order to provide a thorough understanding of the present application.

[0039] As used herein, the term "and / or" is merely a description of the relationship between associated objects, indicating that there can be three relationships. For example, A and / or B can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone. Additionally, the character " / " in this text generally indicates that the associated objects before and after are in an "or" relationship. Furthermore, "plurality" in this text means two or more than two. Additionally, the term "at least one" in this text means any one of a plurality or any combination of at least two of a plurality. For example, including at least one of A, B, and C can mean including any one or more elements selected from the set composed of A, B, and C.

[0040] Currently, it is very troublesome for users to understand the relevant information of each component in a vehicle. They can only carefully search for the relevant information of the components they need to understand from the overall vehicle information provided by the manufacturer, which requires viewing a large amount of data and takes a long time, and is not very convenient. Therefore, to provide users with a better experience, in this solution, a tree structure is established based on the hierarchical relationship of each component in the vehicle, which facilitates users to select the components they want to understand from the tree structure and display the relevant information corresponding to the selected components, thereby improving the query efficiency.

[0041] Please refer to Figure 1 , the information display method provided by this application may include the content of the following steps S11 to S13. Step S11: Obtain the hierarchical division relationship between each component in the vehicle. At least some components have a parent component and / or a child component. Step S12: Based on the hierarchical division relationship between each component, establish a tree structure regarding the vehicle. Each node in the tree structure is respectively each component of the vehicle. Step S13: In response to a selection instruction for a component in the tree structure of the vehicle, display the relevant information associated with the selected component.

[0042] The method provided in this embodiment can be applied to an information display system. For example, the information display system can be an intelligent chassis cloud. The hierarchical relationship between each component can be the belonging relationship of each component. Exemplarily, some components in the vehicle can form a system. For example, the system can include a chassis, a cockpit, a driving system, etc. The chassis can be an intelligent chassis, the cockpit can be an intelligent cockpit, and the driving system can be an intelligent driving system. The intelligent chassis, intelligent cockpit, and intelligent driving system can perform operations such as communication with the vehicle's controller or control module. These systems can be considered as components at the first level, and there can be multiple sub-components under these first-level components. Of course, these sub-components can also be subsystems, such as Figure 2As described above, the sub-components under the intelligent chassis can be SICC components, BMU components, EPS components, BCU components, etc. These sub-components can be considered as the second level, and the components under the second level can include multiple sub-components, and so on. Among them, the criteria for the hierarchical division of the components in the vehicle and the number of levels of division can be determined according to requirements, and no specific regulations are made here. In this example, the parent component of the first level can be considered as the vehicle, the parent component of the second level can be the corresponding component of the first level, and the sub-components of the components under the first level can be considered as the corresponding components of the second level. The hierarchical division of the components in different vehicles can be different, and the hierarchical division of the components in the same vehicle can be the same. The tree structure can be understood as a set composed of several nodes. The root node in this tree structure can be the vehicle, and the sub-nodes of the root node are the components of the first level, and so on. In some application scenarios, the identifiers of the components can be displayed in the form of a tree structure in the navigation bar of the vehicle health details interface of the system. For the specific display of the identifiers of the components in the form of a tree, reference can be made to Figure 2 , such as Figure 2 shown, in the single vehicle view, it can include multiple first-level components. For example, the first-level components can be the intelligent chassis, intelligent cockpit, intelligent driving, and general icon components. Each first-level component can include multiple second-level components, and so on. Each second-level component can include multiple third-level components... The identifier of each component can be the name of each component or the number exclusive to each component, etc. It should be noted that this embodiment does not focus on the specific form of the division of each component, Figure 2 which is only an example and is not used to limit this solution. The relevant information associated with the selected component can be preset. For example, it can be the connection relationship between the sub-components of the selected component or the status of each sub-component (such as working status, health status, etc.). The specific relevant information associated with the selected component is not specifically limited here.

[0043] In the above solution, by obtaining the hierarchical division relationship between the components in the vehicle and based on this hierarchical division relationship, a tree structure about the vehicle is established. Each node in this tree structure corresponds to a component, so that when the user wants to query the relevant information of a certain component, they only need to select the corresponding component, and then the relevant information associated with the selected component can be displayed, without the user having to query from a vast amount of information, which saves time.

[0044] In some embodiments, there can be multiple ways to obtain the hierarchical division relationship between the components in the vehicle: One is to respond to the instruction to create a hierarchical relationship and create the hierarchical relationship of each component based on the instruction. The other is to receive the vehicle information containing the hierarchical division relationship of the components in the vehicle, analyze the vehicle information, and determine the hierarchical relationship between the components.

[0045] In response to an instruction to create a hierarchical relationship, the way to create the hierarchical relationship of each component based on the instruction can be to receive an instruction from the user to divide regions on the overall vehicle view, and use the regions divided by the user as a component. In response to an instruction from the user to divide a region within a component, use the region divided by the user within the component as a sub-component of that component. In response to an instruction to create a hierarchical relationship, the way to create the hierarchical relationship of each component based on the instruction can also be to receive an instruction from the user to create a tree structure, and receive an instruction from the user to input the identifier of a component at each node in the tree structure. In response to the identifier of the component being the same as the component identifier in the logical relationship of each component in the received vehicle, determine that the component identifier input at the node is valid. In the case where it is determined that the input component identifier is invalid, the user can be reminded to re-enter. The above method of receiving vehicle information including the hierarchical division relationship of each component in the vehicle, analyzing the vehicle information, and determining the hierarchical relationship between each component can be to directly extract data from the received vehicle information to obtain the identifiers of each component, and perform logical analysis on the vehicle information to obtain the hierarchical relationship between each component.

[0046] In the above solution, the user can customize the hierarchical relationship of each component, which is more flexible compared to a single hierarchical relationship. In addition, by receiving the imported vehicle information and then analyzing the vehicle information, the hierarchical relationship between each component can be determined, which is convenient and fast.

[0047] In some embodiments, the relevant information associated with the selected component includes a target view composed of each sub-component under the selected component, and the target view is one or more of a high-voltage circuit diagram, a low-voltage circuit diagram, a communication view, and a thermal management view.

[0048] The communication view can be used to display the communication situation between each sub-component in the selected component and other components or external devices, or can also be used to display the communication situation between each sub-component in the selected component; The high-voltage system view can be used to display the situation of each high-voltage sub-component in the selected component, such as the high-voltage line situation. The low-voltage circuit diagram can be used to display the situation of each low-voltage sub-component in the selected component, such as the low-voltage line situation. The thermal management system view can be used to display the situation of each component in the selected component in the thermal management loop.

[0049] In the above solution, the target view can include a communication view and / or a thermal management system view, and the target circuit diagram can include a high-voltage system view and / or a low-voltage circuit diagram, which is convenient for the user to understand information on multiple levels of the component.

[0050] In some embodiments, before displaying relevant information associated with a selected component in response to a selection instruction for a component in the tree structure of a vehicle, the method further includes: determining a target view composed of each sub-component under each component based on the vehicle's overall circuit diagram, overall thermal management view, and overall communication view. Establishing an association between each component and the target view corresponding to the component.

[0051] The overall circuit diagram of the vehicle can be a circuit diagram including all components in the vehicle. The overall thermal management view can be a view including a complete thermal management loop in the vehicle. The overall communication view can be a view including all communication lines in the vehicle. The manner of determining the target view composed of each sub-component under each component from each view can be determined based on the user's partitioning instruction from the overall circuit diagram, overall thermal management view, and overall communication view, or can be determined according to a pre-trained partitioning logic.

[0052] In the above solution, by pre-establishing the association between each view and the component, it is convenient to directly display the corresponding view according to the selected component subsequently.

[0053] In some embodiments, the method further includes: displaying the identifiers of each component in the navigation bar of the vehicle health details interface in a tree structure. The above manner of displaying relevant information associated with the selected component in response to a selection instruction for a component in the tree structure of the vehicle can be: in response to a selection operation on the identifier of the component, displaying one or more of the high-voltage circuit diagram, low-voltage circuit diagram, communication view, and thermal management view associated with the selected component in the first display area in the vehicle health details interface.

[0054] As Figure 3 shown, the navigation bar 100 can be set on the left side, the first display area 200 can be set in the middle area, and the second display area 300 can be set on the right side. In some application scenarios, selection keys for each target view are respectively set on the vehicle health details interface.

[0055] In the above solution, by displaying the tree structure and the view corresponding to the selected component in regions on the vehicle health details interface, it is convenient for the user to understand which component the currently displayed view belongs to.

[0056] In some embodiments, the method may further include: in response to receiving a selection operation on a target selection key, displaying the target view corresponding to the target selection key for the selected component in the first display area. As Figures 3 - 6 shown, four selection keys are set on the vehicle health details interface, including a communication view selection key, a high-voltage system view selection key, a low-voltage view selection key, and a thermal management system view selection key. Among them, there are a communication view selection key, a high-voltage system view selection key, a low-voltage view selection key, and a thermal management system view selection key. Figure 3After selecting the communication view selection key, the communication view is displayed in the first display area. Figure 4 After selecting the high-voltage system view selection key, the high-voltage system view is displayed in the first display area. Figure 5 After selecting the low-voltage view selection key, the low-voltage circuit diagram is displayed in the first display area. Figure 6 After selecting the thermal management system view selection key, the thermal management system view is displayed in the first display area. The information display method provided in this embodiment does not specifically limit the components included in the vehicle and the connection relationships between the components, etc. Therefore, Figures 3 - 6 Some components or routes (such as circuits, thermal management circuits, etc.) in it are blocked. Figures 3 - 6 It is only a schematic illustration of the content displayed on this interface for vehicle health details.

[0057] In the above solution, by the user selecting the selection keys corresponding to the respective target views and displaying the target view corresponding to the target selection key for the selected component in the first display area, compared with directly displaying all the target views in the first display area, displaying fewer circuit diagrams makes the display area of a single target view larger and the display of details in the view clearer.

[0058] In some embodiments, the above manner of displaying the relevant information associated with the selected component in response to the selection instruction for the component in the tree structure of the vehicle may be: obtaining the target states of the respective sub-components under the selected component, where the target states include at least one of the working state, the health state, and the communication state; based on the target states of the respective sub-components, adjusting the line mode of the target view composed of the respective sub-components; and displaying the adjusted target view.

[0059] The working state of each component can be a working state or a non - working state. The non - working state can specifically be a shutdown state. The communication state includes being in a communication state or a non - communication state. The health state can be a normal state or a fault state. Being in a communication state can specifically be establishing a communication connection with an external interface, and the non - communication state can be not establishing a communication connection with the external interface, or being in a communication state can be a state of communicating and interacting with the external interface, and the non - communication state can be a state of not communicating and interacting with the external interface. The working state can be a state where current flows through, and the non - working state can be a state where no current flows through, or the working state can be a state where a heat exchange medium flows through, and the non - working state can be a state where no heat exchange medium flows through. For example, if the heat management component is a valve and the valve is in a closed state, then theoretically no heat exchange medium flows through the valve, and the working state of the valve is in a non - working state. The heat exchange medium can be any medium capable of heat exchange, such as water, other solutions, etc. The mode of the target view can be the state of each line in the target view. If the line is a communication line, the state of the line can be whether it is in a communication state. If the line is an electric circuit, the state of the line can be whether current passes through. If the line is a heat management loop, the state of the line can be whether a heat exchange medium flows. The way to adjust the line mode of the target view composed of each sub - component can be to adjust the differential display of each line in the target view, specifically, different lines can be differentially displayed according to whether there is corresponding current, heat exchange medium, or communication information flowing.

[0060] In the above solution, by obtaining the states of each component and updating each target view based on the working states of each component, after the user selects the corresponding component, the updated view corresponding to the selected component can be displayed.

[0061] In some embodiments, displaying the adjusted target view includes: differentially displaying sub - components in different working states, different health states, and different communication states.

[0062] Exemplarily, the sub-components in the working state and the non-working state are displayed differently. The sub-components in the normal state and the fault state are displayed differently. The sub-components in the communication state and the non-communication state are displayed differently. The ways of differential display include but are not limited to different colors and different sizes. In some application scenarios, in response to the updated view being a communication view, the components in the communication state and the non-communication state in the updated communication view are differentially displayed, and the component is the component or the next level of the component. Or, in response to the updated view being a high-voltage system view, the lines with high-voltage current passing through in the updated circuit diagram are differentially displayed from the lines without high-voltage current passing through. Or, in response to the updated view being a low-voltage circuit diagram, the lines with low-voltage current passing through in the updated low-voltage circuit diagram are differentially displayed from the lines without low-voltage current passing through. Or, in response to the updated view being a thermal management system view, the lines in the thermal management loop in the updated circuit diagram are differentially displayed from the lines not in the thermal management loop. There are many ways of differential display. For example, it can be displayed using different colors, displayed using outer contours of different thicknesses, or additional differential marks can be added, etc. There are many ways of differential display, and no specific limitation is made here. The component being the component or the next level of the component specifically means that if the target view displayed in the first display area is the view of the whole vehicle, the component can be the selected component, and the selected component and other unselected components are differentially displayed in the target view. If the target view displayed in the first display area is the view of the selected component, the sub-components in different states under the selected component are differentially displayed. Different working states of each component are likely to result in different flows of current, signals, and heat exchange media. Therefore, by differentially displaying different lines, it is convenient for users to know the flow directions of current, signals, or heat exchange media in a timely manner. The lines in the thermal management loop specifically refer to the lines through which the heat exchange medium flows. Since there may be valves in the thermal management system, different switch states of the valves may result in different flow directions of the heat exchange medium, so the lines in the thermal management loop are also different. The ways of differentially displaying healthy components and faulty components can be in different colors or by displaying a fault icon or a fault mark around the faulty component, etc., and no specific limitation is made here. The fault log of the faulty component can be the historical fault-related information of the component, for example, it can include one or more of the occurrence time of the historical fault, the specific fault form, the fault cause, and the handling method.

[0063] In the above solution, when the updated view is a communication view, the communication states of the components in the line including the selected component can be displayed, which is convenient for users to understand the communication states of the components. In addition, when the updated view is a high-voltage system view, a low-voltage circuit diagram, or a thermal management system view, by differentially displaying different lines, it is convenient for users to understand the situation of the sub-components of the selected component.

[0064] In some embodiments, a fault icon corresponding to a faulty component in the current view may also be displayed. In response to a selection operation on the fault icon corresponding to the faulty component, the fault log of the faulty component is displayed.

[0065] In some embodiments, a details key may also be set in the first display area. The method further includes: in response to receiving a selection operation on the details key, displaying details information of the target view currently displayed in the first display area on the view interface. The details information includes the magnified target view and / or relevant information of at least some components in the target view.

[0066] After receiving the selection operation on the details key, switch from the vehicle health details interface to the view interface, and display the details information of the target view displayed in the first display area when the details key is received on the view interface. In some application scenarios, the details information includes the magnified target view. In some application scenarios, the details information includes relevant information of at least some components in the circuit diagram. In some application scenarios, the details information includes the magnified target view and relevant information of at least some components in the target view. The magnification factor of the target view can be determined according to the size of the display area of the view interface and the complexity of the target view. The relevant information of at least some components can be parameter change information, fault information, etc. during the working process of some components.

[0067] In the above solution, by receiving the selection operation on the details key, the details information of the target view currently displayed in the first display area can be displayed on the view interface, which is convenient for the user to better understand the circuit information including the component.

[0068] In some embodiments, the method further includes: obtaining the running state of the vehicle and historical fault information, where the running state includes one or more of the endurance mileage, battery capacity, cumulative mileage, energy consumption per 100 kilometers, and vehicle speed, and the historical faults include fault records of at least some components at each moment; displaying the running state and fault information in the second display area of the vehicle health details interface.

[0069] As Figures 3 to 6 shown, the second display area includes two selection keys, one is the running state selection key and the other is the historical fault selection key. In response to receiving the selection operation on the running state selection key, the running state of the vehicle is displayed in the second display area. In response to receiving the selection operation on the historical fault selection key, the historical fault information of the vehicle is displayed in the second display area. The historical fault information can be presented in the form of a timeline, that is, the relevant information of each historical fault is displayed in sequence according to the time order, such as the form of the historical fault, the cause of the historical fault, and / or the solution method, etc.

[0070] In the above solution, by displaying the running status and historical fault information of the vehicle in the second display area, it is convenient for users to understand the basic running conditions of the vehicle.

[0071] In the above solution, by displaying the running status and historical fault information of the vehicle in the second display area, it is convenient for users to understand the basic running conditions of the vehicle.

[0072] In some embodiments, the method further includes: receiving the identification of the target vehicle input in the vehicle identification input box in the vehicle status view or obtaining the type, vehicle status, and vehicle location of the target vehicle in the vehicle filtering bar to determine the identification of the target vehicle; and displaying the identifications of the components of the target vehicle according to the tree structure of the target vehicle.

[0073] After selecting the target vehicle in the vehicle status view, switch to the vehicle health details interface. The navigation bar can be set on one side of the first display area, such as the left side. The type of the target vehicle can be the brand, model, etc. of the vehicle, and the vehicle status can be the health status or driving status. The identification of the target vehicle can be the name, number, etc. of the vehicle.

[0074] In the above solution, by filtering the vehicle, it is convenient for users to understand the relevant information of the specific vehicle they want to view.

[0075] To better understand the above embodiments, please refer to the following specific application embodiments. It should be noted that the following application embodiments are only an optional embodiment and are not used to limit the above solution.

[0076] The information display method provided in this embodiment: Users can clearly know which level of component of the vehicle they are currently on, and the circuit view, communication view, or thermal management system view of each level of component can clearly show which line mode it is currently in. For example, the on / off state of the components in the circuit can be clearly distinguished, and the direction of the current in the circuit can be clearly identified, enabling users without professional knowledge to understand the running conditions of the vehicle and effectively improving the user service experience.

[0077] The tree structure in this embodiment can display all the components affiliated to the vehicle without limitation, and this method can be used for the interactive display of any multi-level components or groups. When the user selects a component in the component tree, the circuit diagram related to the component and the running data and historical fault information of the entire vehicle can be seen in the first display area and the second display area on the right.

[0078] Figure 2 If the user selects the intelligent chassis on the tree structure, the four views of the intelligent chassis and the running data of the entire vehicle are displayed on the right side of the page. Figure 3It is one of the communication view modes in the four views. The system will switch the line mode in real time according to the data returned by the vehicle. The components in the current mode in the line diagram are clearly distinguishable from other components. The faults of the components will be distinguished by colors in real time and displayed on the components with fault icons, allowing users to click to view the fault logs of the current components. Users can also view the vehicle operation data and the vehicle historical fault list.

[0079] When the user clicks Figure 3 to enter the high-voltage system view in Figure 4 , Figure 4 It is one of the high-voltage system view modes. The system will switch the line mode in real time according to the data returned by the vehicle. The lines in the current mode are clearly distinguishable from other lines. The current in the current mode will flow according to the actual direction of current in and out. Users can view the detailed data of the high-voltage system. Users can also view the vehicle operation data and the vehicle historical fault list. The lines in the current mode in the high-voltage system view can be considered as the lines where high-voltage current is flowing currently. The direction of current in and out, etc. can be determined according to the imported circuit schematic diagram or detected by the detection components in the line.

[0080] When the user clicks Figure 4 to enter the low-voltage view in Figure 5 , Figure 5 It is one of the low-voltage view modes. The system will switch the line mode in real time according to the data returned by the vehicle. The lines in the current mode are clearly distinguishable from other lines. Single components and component groups are clearly distinguishable. Users can view the detailed data of the low-voltage view. Users can also view the vehicle operation data and the vehicle historical fault list. The lines in the current mode in the low-voltage view can be considered as the lines where low-voltage current is flowing currently. The component group can be understood as a group composed of multiple components. Optionally, if a selection instruction for the component group is received, a pop-up interface will be displayed and the lines of the selected component group will be shown on the pop-up interface.

[0081] When the user clicks Figure 5 to enter the thermal management system view in Figure 6 , Figure 6 It is one of the thermal management system view modes. The system will switch the line mode in real time according to the data returned by the vehicle. The colors of the return lines in the current mode are clearly distinguishable. The valve connections in the return lines are clearly distinguishable. The current in each loop will flow according to the actual direction of current in and out. Users can view the detailed data of the thermal management system. Users can also view the vehicle operation data and the vehicle historical fault list.

[0082] In the above solution, by first obtaining the hierarchical relationship of each component under the vehicle, the identifiers of each component can be displayed in the navigation bar of the vehicle health details interface according to the hierarchical relationship between the components, which is convenient for the user to click on the corresponding identifier and then display the circuit diagram corresponding to the selected component in the first display area, enabling the user to conveniently understand the circuit diagrams corresponding to each component.

[0083] In addition, by hierarchically displaying the vehicle components in a tree structure, the data of each component can be expanded and viewed level by level. In addition, the modes of the vehicle communication view, high-voltage system view, low-voltage view, and thermal management system view are displayed in real time, and different modes are switched in real time according to the vehicle return data. The flow of light shows the operating directions of the vehicle's current, heat exchange medium, etc. in real time. In addition, the on / off states of the components in the circuit can be displayed in real time with obvious distinctions. In addition, real-time fault animations inform the vehicle's faults, and the user can view and download the logs related to the faults. In addition, the user can view the vehicle's operating data and historical faults under each level of components.

[0084] Please refer to Figure 7 , as Figure 7 shown, the information display system 40 provided in this embodiment may include: a relationship acquisition module 41, a construction module 42, and a display module 43. The relationship acquisition module 41 is configured to acquire the hierarchical division relationship between the components in the vehicle, and at least some components have a parent component and / or a child component; the construction module 42 is configured to establish a tree structure of the vehicle based on the hierarchical division relationship between the components, and each node in the tree structure is a component of the vehicle; the display module 43 is configured to display the relevant information associated with the selected component in response to a selection instruction for a component in the tree structure of the vehicle.

[0085] In the above solution, by obtaining the hierarchical division relationship between the components in the vehicle and establishing a tree structure of the vehicle based on this hierarchical division relationship, each node in the tree structure corresponds to a component, so that when the user wants to query the relevant information of a certain component, only the corresponding component needs to be selected, and then the relevant information associated with the selected component can be displayed, without the user having to query from a vast amount of information, which saves time.

[0086] Please refer to Figure 8 , the electronic device 50 provided in this embodiment includes a memory 51 and a processor 52. A program instruction is stored on the memory 51, and when the program instruction is executed by the processor 52, it is used to implement the above information display method.

[0087] In the above solution, by obtaining the hierarchical division relationship between various components in the vehicle and based on this hierarchical division relationship, a tree structure of the vehicle is established. Each node in this tree structure corresponds to a component, such that when the user wants to query the relevant information of a certain component, they only need to select the corresponding component, and then the relevant information associated with the selected component can be displayed. There is no need for the user to query from a vast amount of information, which saves time relatively.

[0088] Please refer to Figure 9 , the computer-readable storage medium 60 provided in this embodiment stores program instructions 61 that can be run by a processor. The program instructions 61 are used to implement the steps in any of the above-described information display method embodiments.

[0089] In the above solution, by obtaining the hierarchical division relationship between various components in the vehicle and based on this hierarchical division relationship, a tree structure of the vehicle is established. Each node in this tree structure corresponds to a component, such that when the user wants to query the relevant information of a certain component, they only need to select the corresponding component, and then the relevant information associated with the selected component can be displayed. There is no need for the user to query from a vast amount of information, which saves time relatively.

[0090] The descriptions of the above embodiments tend to emphasize the differences between the various embodiments. Their similarities or resemblances can be referred to each other. For the sake of brevity, they will not be elaborated herein.

[0091] In several embodiments provided in the present application, it should be understood that the disclosed methods and apparatuses can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative. For example, the division of modules or units is only a logical function division. In actual implementation, there may be other division methods. For example, units or components can be combined or integrated into another subsystem, or some features can be ignored or not executed. Another point is that the displayed or discussed couplings or direct couplings or communication connections to each other can be through some interfaces. The indirect couplings or communication connections of the apparatuses or units can be in electrical, mechanical or other forms.

[0092] In addition, each functional unit in various embodiments of the present application may be integrated into one processing unit, may exist separately as individual physical units, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of a software functional unit. If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to execute all or part of the steps of the methods in various embodiments of the present application. The aforementioned storage medium includes: various media such as USB flash drives, mobile hard disks, read-only memories (ROMs), random access memories (RAMs), magnetic disks, or optical discs that can store program codes.

Claims

1. An information display method, characterized in that, The information display method is applied to an information display system, and the information display method includes: Receiving an instruction from a user to divide a region on the overall vehicle view, and taking the region divided by the user as a component; in response to an instruction from the user to divide a region within the component, taking the region divided by the user within the component as a sub-component of the component to obtain a hierarchical division relationship among the components in the vehicle, and at least some components have a parent component and / or a sub-component; Based on the vehicle's overall circuit diagram, overall thermal management view, and overall communication view, determining a target view composed of the sub-components under each of the components, and establishing an association between each of the components and the target view corresponding to the component; Based on the hierarchical division relationship among the components, establishing a tree structure for the vehicle, where each node in the tree structure is a component of the vehicle; In response to a selection instruction for a component in the tree structure of the vehicle, obtaining the target states of the sub-components under the selected component, and the target states of the sub-components are received by the information display system from the vehicle; Based on the target states of the sub-components, adjusting the circuit mode of the target view composed of the sub-components; Displaying relevant information associated with the selected component, and the relevant information associated with the selected component includes the target view composed of the sub-components under the selected component and the target view is the target view after the circuit mode is adjusted.

2. The method according to claim 1, wherein The target view is one or more of a high-voltage circuit diagram, a low-voltage circuit diagram, a communication view, and a thermal management view.

3. The method according to claim 2, wherein The method further includes: Displaying the identifiers of the components in the navigation bar of the vehicle health details interface according to the tree structure; The step of, in response to a selection instruction for a component in the tree structure of the vehicle, displaying relevant information associated with the selected component includes: In response to a selection operation on the identifier of the component, displaying one or more of a high-voltage circuit diagram, a low-voltage circuit diagram, a communication view, and a thermal management view associated with the selected component in the first display area of the vehicle health details interface.

4. The method according to any one of claims 1 to 3, characterized in that The target state includes at least one of a working state, a health state, and a communication state, and the step of displaying the adjusted target view includes: Differentially displaying the sub-components in different working states, different health states, and different communication states.

5. The method according to any one of claims 1 to 3, characterized in that The method further includes: Obtaining the running state of the vehicle and historical fault information, where the running state includes one or more of a cruising range, a battery capacity, an accumulated mileage, an energy consumption per 100 kilometers, and a vehicle speed, and the historical faults include fault records of at least some components at each moment; Displaying the running state and the fault information in the second display area of the vehicle health details interface.

6. The method according to any one of claims 1 to 3, characterized in that, The method further includes: Receiving the identifier of the target vehicle input in the vehicle identifier input box in the vehicle status view or obtaining the type, status, and location of the target vehicle in the vehicle screening bar to determine the identifier of the target vehicle; Displaying the identifiers of the components of the target vehicle according to the tree structure of the target vehicle.

7. An information display system, characterized in that, including: A relationship acquisition module, configured to receive an instruction from a user to divide a region on an overall vehicle view, and use the region divided by the user as a component; In response to an instruction from the user to divide a region in the component, use the region divided by the user in the component as a sub-component of the component to obtain a hierarchical division relationship between components in the vehicle, and at least some components have a parent component and / or a sub-component; A construction module, configured to determine a target view composed of sub-components under each component based on the overall vehicle circuit diagram, the overall vehicle thermal management view, and the overall vehicle communication view of the vehicle, and establish an association between each component and the target view corresponding to the component; It is further configured to establish a tree structure regarding the vehicle based on the hierarchical division relationship between components, and each node in the tree structure is respectively each component of the vehicle; A display module, configured to, in response to a selection instruction for a component in the tree structure of the vehicle, obtain the target states of sub-components under the selected component, where the target states of the sub-components are received by the information display system from the vehicle; based on the target states of the sub-components, adjust the circuit mode of the target view composed of the sub-components; display relevant information associated with the selected component, and the relevant information associated with the selected component includes the target view composed of sub-components under the selected component and the target view is the target view after the circuit mode is adjusted.

8. An electronic device, characterized in that, It includes a memory and a processor, and program instructions are stored on the memory, and when the program instructions are executed by the processor, they are used to implement the method according to any one of claims 1 to 6 above.

9. A computer-readable storage medium having program instructions stored thereon, characterized in that, When the program instructions are executed by the processor, the method according to any one of claims 1 to 6 is implemented.

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