IP Library Granted Patent US 12689540
Granted Patent B2
US 12689540 · App. 18/274,216 · Granted Jul 21, 2026

Vehicle bus topological graph display method and apparatus, and device

Inventors: Weilin Wang (Shenzhen, CN); Hong Li (Shenzhen, CN)
Assignee: AUTEL INTELLIGENT TECHNOLOGY CORP., LTD.
H04L12/40006H04L2012/40273
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Quick Facts
Patent No.
US 12689540
App. No.
18/274,216
Granted
Jul 21, 2026
Kind
B2
Abstract

The embodiments of the present invention relate to the technical field of vehicle maintenance and repair, and in particular to a vehicle bus topological graph display method and apparatus, and a device. In the method, display priorities are set for vehicle buses of various types, display weights of different display areas of a display interface are acquired, and the buses with different display priorities are displayed in different display areas, such that a user can conveniently view the buses, and the ease of use by the user is improved.

Claims (75)

1 . A vehicle bus topological graph display method, comprising:

acquiring vehicle configuration information of a vehicle for which a topological graph is to be generated, wherein the vehicle configuration information comprises a vehicle model and vehicle model configuration information;

according to the vehicle model and from a pre-set vehicle topological graph template database, acquiring a vehicle topological graph template corresponding to the vehicle model;

according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model;

acquiring display priority information of buses comprised in the bus topological graph;

acquiring display interface information, wherein the display interface information comprises display weights of different areas in a display interface; and

displaying the bus topological graph according to the display priority information of the buses in the bus topological graph and the display weights of different areas in the display interface.

2 . The vehicle bus topological graph display method according to claim 1 , wherein the display weights of different areas in the display interface are area attention degrees pre-configured according to human visual characteristics.

3 . The vehicle bus topological graph display method according to claim 1 , wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model comprises:

acquiring a bus type in the vehicle model configuration information;

and determining display priority information corresponding to the bus type according to the bus type.

4 . The vehicle bus topological graph display method according to claim 2 , wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to the vehicle model further comprises:

dividing the buses into a root node bus and a sub-node bus according to the bus type;

determining display level number according to a display range of the bus topological graph and the display interface information; and

determining the root node bus and the sub-node bus to be displayed according to the display level number.

5 . The vehicle bus topological graph display method according to claim 4 , wherein after determining the root node bus and the sub-node bus to be displayed according to the display level number, the method further comprises:

displaying a bus mark for indicating sub-node bus information that is not displayed.

6 . The vehicle bus topological graph display method according to claim 5 , wherein the method further comprises:

receiving a bus mark selection instruction;

acquiring information about a selected undisplayed sub-node bus according to the bus mark selection instruction; and

displaying the selected sub-node bus on the display interface.

7 . The vehicle bus topological graph display method according to claim 4 , wherein the method further comprises:

receiving a bus selection instruction;

acquiring selected bus information and sub-node bus information associated with the selected bus according to the bus selection instruction; and

highlighting displaying the selected bus and a sub-node bus associated with the selected bus on the display interface.

8 . A non-transitory computer-readable storage medium, wherein at least one executable instruction is stored in the storage medium, and when the executable instruction runs on a vehicle bus topological graph display apparatus, the executable instruction causes the vehicle bus topological graph display apparatus to perform following method:

acquiring vehicle configuration information of a vehicle for which a topological graph is to be generated, wherein the vehicle configuration information comprises a vehicle model and vehicle model configuration information;

according to the vehicle model and from a pre-set vehicle topological graph template database, acquiring a vehicle topological graph template corresponding to the vehicle model;

according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model;

acquiring display priority information of buses comprised in the bus topological graph;

acquiring display interface information, wherein the display interface information comprises display weights of different areas in a display interface; and

displaying the bus topological graph according to the display priority information of the buses in the bus topological graph and the display weights of different areas in the display interface.

9 . The non-transitory computer-readable storage medium according to claim 8 wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model comprises:

acquiring a bus type in the vehicle model configuration information;

and determining display priority information corresponding to the bus type according to the bus type.

10 . The non-transitory computer-readable storage medium according to claim 9 , wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to the vehicle model further comprises:

dividing the buses into a root node bus and a sub-node bus according to the bus type;

determining display level number according to a display range of the bus topological graph and the display interface information; and

determining the root node bus and the sub-node bus to be displayed according to the display level number.

11 . The non-transitory computer-readable storage medium according to claim 10 , wherein after determining the root node bus and the sub-node bus to be displayed according to the display level number, the vehicle bus topological graph display apparatus further:

displays a bus mark for indicating sub-node bus information that is not displayed.

12 . The non-transitory computer-readable storage medium according to claim 11 , the vehicle bus topological graph display apparatus further:

receives a bus mark selection instruction;

acquires information about a selected undisplayed sub-node bus according to the bus mark selection instruction; and

displays the selected sub-node bus on the display interface.

13 . The non-transitory computer-readable storage medium according to claim 10 , the vehicle bus topological graph display apparatus further:

receives a bus selection instruction;

acquires selected bus information and sub-node bus information associated with the selected bus according to the bus selection instruction; and

highlighting displays the selected bus and a sub-node bus associated with the selected bus on the display interface.

14 . A vehicle detection device, comprising: a processor, a memory, a communication interface, and a communication bus, wherein the processor, the memory, and the communication interface complete mutual communication through the communication bus;

the memory is used for storing at least one executable instruction that causes the processor to perform the following method:

acquiring vehicle configuration information of a vehicle for which a topological graph is to be generated, wherein the vehicle configuration information comprises a vehicle model and vehicle model configuration information;

according to the vehicle model and from a pre-set vehicle topological graph template database, acquiring a vehicle topological graph template corresponding to the vehicle model;

according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model;

acquiring display priority information of buses comprised in the bus topological graph;

acquiring display interface information, wherein the display interface information comprises display weights of different areas in a display interface; and

displaying the bus topological graph according to the display priority information of the buses in the bus topological graph and the display weights of different areas in the display interface.

15 . The vehicle detection device according to claim 14 , wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to a vehicle model comprises:

acquiring a bus type in the vehicle model configuration information;

and determining display priority information corresponding to the bus type according to the bus type.

16 . The vehicle detection device according to claim 14 , wherein the display weights of different areas in the display interface are area attention degrees pre-configured according to human visual characteristics.

17 . The vehicle detection device according to claim 16 , wherein the according to the vehicle topological graph template and the vehicle model configuration information, generating a bus topological graph corresponding to the vehicle model further comprises:

dividing the buses into a root node bus and a sub-node bus according to the bus type;

determining display level number according to a display range of the bus topological graph and the display interface information; and

determining the root node bus and the sub-node bus to be displayed according to the display level number.

18 . The vehicle detection device according to claim 17 , wherein the processor further:

receives a bus selection instruction;

acquires selected bus information and sub-node bus information associated with the selected bus according to the bus selection instruction; and

highlighting displays the selected bus and a sub-node bus associated with the selected bus on the display interface.

19 . The vehicle detection device according to claim 17 , wherein after determining the root node bus and the sub-node bus to be displayed according to the display level number, the processor further:

displays a bus mark for indicating sub-node bus information that is not displayed.

20 . The vehicle detection device according to claim 19 , wherein the processor further:

receives a bus mark selection instruction;

acquires information about a selected undisplayed sub-node bus according to the bus mark selection instruction; and

displays the selected sub-node bus on the display interface.