IP Library › Granted Patent US 12,109,852
Granted Patent B2
US 12,109,852 · App. 17/691,118 · Granted Oct 8, 2024

Tire pressure sensor communication method, device, electronic equipment and storage medium

Inventors: Huanjian Wu (Guangdong, CN); Xiangyu Jin (Guangdong, CN); Xianping Yang (Guangdong, CN); Kai Wu (Guangdong, CN)
Assignee: Shenzhen Yunjia Intelligent Technology Co., Ltd.
B60C23/0454B60C23/0474B60C23/0479B60C23/0488
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Quick Facts
Patent No.
US 12,109,852
App. No.
17/691,118
Granted
Oct 8, 2024
Kind
B2
Abstract

The application discloses a tire pressure sensor communication method, device, electronic equipment and storage medium. The method comprises the follow steps: acquiring a first tire state when a tire pressure sensor is awakened; collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition; acquiring a preset tire pressure data transmission control parameter corresponding to the second tire state; collecting second tire pressure data corresponding to the second tire state according to the tire pressure data transmission control parameter, and sending the second tire pressure data to a vehicle-mounted tire pressure monitoring module.

Claims (47)

1. A tire pressure sensor communication method, comprising:

acquiring a first tire state when a tire pressure sensor is awakened;

collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition;

acquiring a preset tire pressure data transmission control parameter corresponding to the second tire state;

collecting second tire pressure data corresponding to the second tire state according to the tire pressure data transmission control parameter, and sending the second tire pressure data to a vehicle-mounted tire pressure monitoring module; and

the first tire state, the second tire state, the state switching condition and the tire pressure data transmission control parameter corresponding to the second tire state are all obtained by analyzing a communication protocol between an original tire pressure sensor and an original vehicle-mounted tire pressure monitoring module.

2. The tire pressure sensor communication method of claim 1 , wherein acquiring a first tire state when a tire pressure sensor is awakened comprises:

waking up the tire pressure sensor when a periodic wake-up signal is detected, so as to collect initial tire pressure data of a tire by the tire pressure sensor;

determining the first tire state of the tire pressure sensor according to the initial tire pressure data.

3. The tire pressure sensor communication method of claim 1 , wherein the first tire pressure data comprises a vehicle speed and/or a tire pressure change value within a preset time period.

4. The tire pressure sensor communication method of claim 3 , wherein each of the first tire state and the second tire state is any one of a parking deflated state, a stop state, a driving state, a driving deflated state, a pause state, and a pause deflated state.

5. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a parking deflated state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a first tire pressure change value of the tire, and determining whether the first tire pressure change value is less than a preset pressure value;

switching the parking deflated state to a stop state, if the first tire pressure change value is less than the preset pressure value.

6. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a stop state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a second tire pressure change value of the tire, and determining whether the second tire pressure change value is greater than a preset pressure value; switching the stop state to a parking deflated state if the second tire pressure change value is greater than the preset pressure value; collecting a first vehicle speed of the tire and determining whether the first vehicle speed is greater than a preset vehicle speed, if the second tire pressure change value is less than or equal to the preset pressure value; controlling the stop state to switch to a driving state, if the first vehicle speed is greater than the preset vehicle speed.

7. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a pause state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a third tire pressure change value of the tire, and determining whether the third tire pressure change value is greater than a preset pressure value; switching the pause state to a pause deflated state if the third tire pressure change value is greater than the preset pressure value; collecting a second vehicle speed of the tire and determining whether the second vehicle speed is greater than a preset vehicle speed, if the third tire pressure change value is less than or equal to the preset pressure value;

controlling the pause state to switch to a driving state, if the second vehicle speed is greater than the preset vehicle speed, and controlling the pause state to switch to a stop state, if the second vehicle speed is less than or equal to the preset vehicle speed with a duration greater than a preset time.

8. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a driving state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a fourth tire pressure change value of the tire, and determining whether the fourth tire pressure change value is greater than a preset pressure value; switching the driving state to a driving deflated state if the fourth tire pressure change value is greater than the preset pressure value; collecting a third vehicle speed of the tire and determining whether the third vehicle speed is less than a preset vehicle speed, if the fourth tire pressure change value is less than or equal to the preset pressure value;

controlling the driving state to switch to a pause state, if the third vehicle speed is less than the preset vehicle speed.

9. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a pause deflated state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a fifth tire pressure change value of the tire, and determining whether the fifth tire pressure change value is less than a preset pressure value; switching the pause deflated state to a pause state if the fifth tire pressure change value is less than the preset pressure value; collecting a fourth vehicle speed of the tire and determining whether the fourth vehicle speed is greater than a preset vehicle speed, if the fifth tire pressure change value is greater than or equal to the preset pressure value;

controlling the pause deflated state to switch to a driving deflated state, if the fourth vehicle speed is greater than the preset vehicle speed.

10. The tire pressure sensor communication method of claim 4 , wherein when the first tire state is a driving deflated state, the step of collecting first tire pressure data corresponding to the first tire state, and determining whether the first tire state meets a preset state switching condition according to the first tire pressure data; controlling the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition comprises:

collecting a sixth tire pressure change value of the tire, and determining whether the sixth tire pressure change value is less than a preset pressure value; switching the driving deflated state to a driving state if the sixth tire pressure change value is less than the preset pressure value;

collecting a fifth vehicle speed of the tire and determining whether the fifth vehicle speed is less than a preset vehicle speed, if the sixth tire pressure change value is greater than or equal to the preset pressure value;

controlling the driving deflated state to switch to a pause deflated state, if the fifth vehicle speed is less than the preset vehicle speed.

11. The tire pressure sensor communication method of claim 1 , wherein the tire pressure data transmission control parameter comprises a wake-up period of the tire pressure sensor and a frequency of sending a data frame to a vehicle-mounted tire pressure monitoring module;

the step of collecting second tire pressure data corresponding to the second tire state according to the tire pressure data transmission control parameter, and sending the second tire pressure data to a vehicle-mounted tire pressure monitoring module, comprises:

waking up the tire pressure sensor according to the wake-up period, and collecting second tire pressure data corresponding to the second tire state when the tire pressure sensor is awakened; and

sending the second tire pressure data to a vehicle-mounted tire pressure monitoring module according to the frequency.

12. The tire pressure sensor communication method of claim 1 , wherein the first tire state, the second tire state, the state switching condition and the tire pressure data transmission control parameter corresponding to the second tire state are preset according to a communication protocol between the tire pressure sensor and the vehicle-mounted tire pressure monitoring module.

13. A tire pressure sensor communication device, comprising:

a first acquisition unit, configured to acquire a first tire state when a tire pressure sensor is awakened;

a state processing unit, configured to collect first tire pressure data corresponding to the first tire state, and determine whether the first tire state meets a preset state switching condition according to the first tire pressure data; control the first tire state to switch to a corresponding second tire state if the first tire state meets the state switching condition;

a second acquisition unit, configured to acquire a preset tire pressure data transmission control parameter corresponding to the second tire state;

a sending unit, configured to collect second tire pressure data corresponding to the second tire state according to the tire pressure data transmission control parameter, and send the second tire pressure data to a vehicle-mounted tire pressure monitoring module; and

the first tire state, the second tire state, the state switching condition and the tire pressure data transmission control parameter corresponding to the second tire state are all obtained by analyzing a communication protocol between an original tire pressure sensor and an original vehicle-mounted tire pressure monitoring module.

14. An electronic equipment, comprising a memory, a processor and a computer program stored in the memory and running on the processor, wherein the processor implements the tire pressure sensor communication method of claim 1 when executing the computer program.

15. A computer storage medium on which a computer program is stored, wherein the program, when executed by a processor, realizes the tire pressure sensor communication method of claim 1 .

16. The tire pressure sensor communication method of claim 2 , wherein the first tire pressure data comprises a vehicle speed and/or a tire pressure change value within a preset time period.

17. An electronic equipment, comprising a memory, a processor and a computer program stored in the memory and running on the processor, wherein the processor implements the tire pressure sensor communication method of claim 2 when executing the computer program.

18. An electronic equipment, comprising a memory, a processor and a computer program stored in the memory and running on the processor, wherein the processor implements the tire pressure sensor communication method of claim 3 when executing the computer program.

19. A computer storage medium on which a computer program is stored, wherein the program, when executed by a processor, realizes the tire pressure sensor communication method of claim 2 .

20. A computer storage medium on which a computer program is stored, wherein the program, when executed by a processor, realizes the tire pressure sensor communication method of claim 3 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2022
From: WU, HUANJIAN; JIN, XIANGYU; YANG, XIANPING; WU, KAI
To: SHENZHEN YUNJIA INTELLIGENT TECHNOLOGY CO., LTD.
Reel/Frame 059216/0581 →
Priority Claims (1)
CN 202110374215.X · Apr 7, 2021 · national
Continuity (1)
Related Publication 20220324273A1 · Oct 13, 2022