IP Library Granted Patent US 12,354,475
Granted Patent B2
US 12,354,475 · App. 17/827,376 · Granted Jul 8, 2025

Internet of vehicles based dynamic information sending method and device

Inventor: Jianqin Liu (Shenzhen, CN)
Assignee: Shenzhen Yinwang Intelligent Technologies Co., Ltd.
G08G1/096766H04W4/44
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Quick Facts
Patent No.
US 12,354,475
App. No.
17/827,376
Granted
Jul 8, 2025
Kind
B2
Abstract

This application relates to the field of communications technologies, and discloses an internet of vehicles-based dynamic information sending method and device, to constrain a range of sent dynamic information in a high definition map, so as to reduce a transmission amount of the dynamic information in the high definition map and improve transmission efficiency of the dynamic information. The method includes: A first device determines an indication range of dynamic information in a high definition map based on path information of a navigation map. The first device sends first indication information to a second device. The first indication information is used to indicate the dynamic information in the indication range in the high definition map.

Claims (124)

1. A dynamic information sending method carried out by an internet of vehicles (IOV) server, the method comprising:

obtaining a path information of an IOV terminal planned by a navigation map;

determining an indication range in a high definition map based on the path information; and

sending first indication information indicating the dynamic information in the high definition map to the IOV terminal in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in the indication range corresponding to the path information such that the first indication information is:

sent, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format.

2. The method according to claim 1 , wherein the first indication information in the unicast format comprises at least one type of information taken from the group consisting of:

road identification information and road-level dynamic information corresponding to the road identification information; and

lane identification information and lane-level dynamic information corresponding to the lane identification information, and the lane identification information includes road information and lane information.

3. The method according to claim 1 , wherein the first indication information in the broadcast format comprises global-level dynamic information and information indicating a type of the global-level dynamic information.

4. The dynamic information sending method according to claim 1 , wherein the method comprises:

sending, to the IOV terminal in accordance with the dynamic information being associated with the path information, second indication information used to indicate that the dynamic information is associated with the path information.

5. The dynamic information sending method according to claim 1 , wherein the sending indication information to the IOV terminal comprises:

sending, in accordance with the dynamic information being low-timeliness dynamic information, the first indication information to the IOV terminal based on a first periodicity; or

sending, in accordance with the dynamic information being high-timeliness dynamic information and a triggering of an event corresponding to the dynamic information, the first indication information to the IOV terminal.

6. The dynamic information sending method according to claim 1 , wherein the dynamic information comprises at least one type of information taken from the group consisting of:

traffic congestion information,

traffic accident information,

road condition information,

passable state information,

pedestrian road crossing information,

bicycle road crossing information,

pedestrian road occupation information, and

motor vehicle road occupation information.

7. The dynamic information sending method according to claim 1 , wherein the first indication information indicates at least two pieces of associated information content that are jointly coded, accordance with the dynamic information comprising the at least two pieces of associated information content.

8. The dynamic information sending method according to claim 1 , wherein dynamic information in different maps corresponds to different scrambling codes or different initialization values.

9. A dynamic information handling method carried out by an internet of vehicles (IOV) terminal, the method comprising:

receiving, from a first device, first indication information indicating dynamic information in a high definition map, wherein the first indication information is sent by the first device in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in an indication range in a high definition map based on a path information of the IOV terminal planned by a navigation map such that the first indication information is:

sent by the first device, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent by the first device, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format;

and

updating the map based on the dynamic information and whether the dynamic information is associated with the path information.

10. The dynamic information handling method according to claim 9 , wherein updating the map based on the dynamic information and whether the dynamic information is associated with the path information comprises:

updating road-level dynamic information or lane-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is associated with the path information; or

updating global-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is not associated with the path information.

11. The dynamic information handling method according to claim 9 , wherein the first indication information indicates the path information in accordance with the dynamic information being associated with the path information.

12. The dynamic information handling method according to claim 9 , wherein the method comprises:

receiving second indication information from the first device in accordance with the dynamic information being associated with the path information,

wherein the second indication information indicates that the dynamic information is associated with the path information.

13. The dynamic information handling method according to claim 9 , wherein the receiving the first indication information comprises:

receiving, in accordance with the dynamic information being low-timeliness dynamic information, the first indication information from the first device based on a first periodicity; or

receiving, in accordance with the dynamic information being high-timeliness dynamic information and a triggering of an event corresponding to the dynamic information, the first indication information from the first device.

14. The dynamic information handling method according to claim 9 , wherein the dynamic information comprises at least one type of information taken from the group consisting of:

traffic congestion information,

traffic accident information,

road condition information,

passable state information,

pedestrian road crossing information,

bicycle road crossing information,

pedestrian road occupation information, and

motor vehicle road occupation information.

15. The dynamic information handling method according to claim 9 , wherein the first indication information indicates at least two pieces of associated information content that are jointly coded, in accordance with the dynamic information comprising the at least two pieces of associated information content.

16. The dynamic information handling method according to claim 9 , wherein dynamic information in different maps corresponds to different scrambling codes or different initialization values.

17. An internet of vehicles (IOV) server comprising:

at least one processor; and

one or more non-transitory memories coupled to the at least one processor and storing program instructions for execution by the at least one processor to carry out a dynamic information sending method comprising:

obtaining a path information of an IOV terminal planned by a navigation map;

determining an indication range in a high definition map based on the path information; and

sending first indication information indicating the dynamic information in the high definition map to the IOV terminal in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in the indication range corresponding to the path information such that the first indication information is:

sent, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format.

18. The IOV server according to claim 17 , wherein the first indication information in the unicast format comprises at least one type of information taken from the group consisting of:

road identification information and road-level dynamic information corresponding to the road identification information; and

lane identification information and lane-level dynamic information corresponding to the lane identification information, and the lane identification information includes road information and lane information.

19. The IOV server according to claim 17 , wherein the first indication information in the broadcast format comprises global-level dynamic information and information indicating a type of the global-level dynamic information.

20. The IOV server according to claim 17 , wherein the method comprises:

sending, to the IOV terminal in accordance with the dynamic information being associated with the path information, second indication information used to indicate that the dynamic information is associated with the path information.

21. The IOV server according to claim 17 , wherein the sending indication information to the IOV terminal comprises:

sending, in accordance with the dynamic information being low-timeliness dynamic information, the first indication information to the IOV terminal based on a first periodicity; or

sending, in accordance with the dynamic information being high-timeliness dynamic information and a triggering of an event corresponding to the dynamic information, the first indication information to the IOV terminal.

22. The IOV server according to claim 17 , wherein the dynamic information comprises at least one type of information taken from the group consisting of:

traffic congestion information,

traffic accident information,

road condition information,

passable state information,

pedestrian road crossing information,

bicycle road crossing information,

pedestrian road occupation information, and

motor vehicle road occupation information.

23. The IOV server according to claim 17 , wherein the first indication information indicates at least two pieces of associated information content that are jointly coded, in accordance with the dynamic information comprising the at least two pieces of associated information content.

24. The IOV server according to claim 17 , wherein dynamic information in different maps corresponds to different scrambling codes or different initialization values.

25. An internet of vehicles (IOV) terminal comprising:

at least one processor; and

one or more non-transitory memories coupled to the at least one processor and storing program instructions for execution by the at least one processor to carry out a method comprising:

receiving, from a first device, first indication information indicating the dynamic information in a high definition map, wherein the first indication information is sent by the first device in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in an indication range in a high definition map based on a path information of the IOV terminal planned by a navigation map such that the first indication information is:

sent by the first device, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent by the first device, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format;

and

updating the map based on the dynamic information and whether the dynamic information is associated with the path information.

26. The IOV terminal according to claim 25 , wherein the updating the map comprises:

updating road-level dynamic information or lane-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is associated with the path information; or

updating global-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is not associated with the path information.

27. The IOV terminal according to claim 25 , wherein the first indication information indicates the path information in accordance with the dynamic information being associated with the path information.

28. The IOV terminal according to claim 25 , wherein the method comprises:

receiving second indication information from the first device in accordance with the dynamic information being associated with the path information, second indication information indicates that the dynamic information is associated with the path information.

29. The IOV terminal according to claim 25 , wherein the receiving the first indication information comprises:

receiving, in accordance with the dynamic information being low-timeliness dynamic information, the first indication information from the first device based on a first periodicity; or

receiving, in accordance with the dynamic information being high-timeliness dynamic information and a triggering of an event corresponding to the dynamic information, the first indication information from the first device.

30. The IOV terminal according to claim 25 , wherein the dynamic information comprises at least one type of information taken from the group consisting of:

traffic congestion information,

traffic accident information,

road condition information,

passable state information,

pedestrian road crossing information,

bicycle road crossing information,

pedestrian road occupation information, and

motor vehicle road occupation information.

31. The IOV terminal according to claim 25 , wherein the first indication information indicates at least two pieces of associated information content that are jointly coded, in accordance with the dynamic information comprising the at least two pieces of associated information content.

32. The IOV terminal according to claim 25 , wherein dynamic information in different maps corresponds to different scrambling codes or different initialization values.

33. A non-transitory computer-readable storage medium, comprising a program, wherein when being executed by at least one processor, the program causes a first device to perform a dynamic information sending method comprising:

obtaining a path information of an IOV terminal planned by a navigation map;

determining an indication range in a high definition map based on the path information; and

sending first indication information indicating the dynamic information in the high definition map to the IOV terminal in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in the indication range corresponding to the path information such that the first indication information is:

sent, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format.

34. A non-transitory computer-readable storage medium, comprising a program, wherein when being executed by at least one processor, the program causes a IOV terminal to perform a method comprising:

receiving, from a first device, first indication information indicating dynamic information in a high definition map, wherein the first indication information is sent by the first device in accordance with whether the dynamic information is global dynamic information and whether the dynamic information is in an indication range in a high definition map based on a path information of the IOV terminal planned by a navigation map such that the first indication information is:

sent by the first device, in accordance with the dynamic information being global dynamic information, in a broadcasting manner in a broadcast format; and

otherwise sent by the first device, in accordance with the dynamic information not being global dynamic information and being in the indication range based on the path information of the IOV terminal, in a unicast manner in a unicast format;

and

updating the map based on the dynamic information and whether the dynamic information is associated with the path information.

35. The non-transitory computer-readable storage medium according to claim 34 , wherein the updating the map comprises:

updating road-level dynamic information or lane-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is associated with the path information; or

updating, global-level dynamic information in the map based on the dynamic information in accordance with the dynamic information is not associated with the path information.

Assignments (3)
CHANGE OF NAME Recorded May 1, 2026
From: SHENZHEN YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
To: YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
Reel/Frame 075316/0074 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2024
From: HUAWEI TECHNOLOGIES CO., LTD.
To: SHENZHEN YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
Reel/Frame 069335/0922 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2022
From: LIU, JIANQIN
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 061535/0604 →