IP Library › Granted Patent US 11,550,529
Granted Patent B2
US 11,550,529 · App. 17/499,098 · Granted Jan 10, 2023

Vehicle dual-system compatible control method and system, storage medium and vehicle-mounted terminal

Inventors: Baosheng Cui (Foshan, CN); Chao Luo (Foshan, CN); Zhichu Yang (Foshan, CN); Weijian Xuan (Foshan, CN); Liang Liu (Foshan, CN); Longjun He (Foshan, CN)
Assignee: FAURECIA CLARION ELECTRONICS (FOSHAN) LIMITED COMPANY
G06F3/14G06F3/0488G06F3/162G06F3/165
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Quick Facts
Patent No.
US 11,550,529
App. No.
17/499,098
Granted
Jan 10, 2023
Kind
B2
Abstract

A vehicle dual-system compatible control method includes: building a first system and a second system respectively on two independent processors, the first system communicating with a display screen, an audio output unit and a touch screen; obtaining, by the first system, touch coordinates on the touch screen, and determining a type of an application currently being executed; sending, by the first system, a video signal to the display screen, and outputting an audio output signal to the audio output unit when an application in the first system is executed; sending, by the second system, a video signal to the display screen, outputting an audio output signal to the audio output unit through data interfaces of the first system, and obtaining touch coordinates of an application in the second system when the application in the second system is executed.

Claims (29)

1. A vehicle dual-system compatible control method, comprising:

building a first system and a second system respectively on two independent processors, the first system communicating with a display screen, an audio output unit and a touch screen; wherein the first system and the second system are both built in a vehicle; wherein the display screen displays a system interface of the first system, and the system interface of the first system includes icons for application programs in the first system and icons for application programs in the second system;

obtaining, by the first system, touch coordinates on the touch screen, and determining, by the first system, a type of an application currently being executed;

sending, by the first system, a video signal to the display screen, and outputting, by the first system, an audio output signal to the audio output unit, when an application in the first system is executed; and

sending, by the second system, a video signal to the display screen through data ports of the first system, and outputting, by the second system, an audio output signal to the audio output unit through the data ports of the first system, and obtaining, by the second system, touch coordinates of an application in the second system, when an application in the second system is executed.

2. The vehicle dual-system compatible control method according to claim 1 , further comprising:

sending, by the second system, the video signal and/or the audio output signal to the first system through the data ports of the first system;

processing, by the first system, the video signal and/or the audio output signal of the second system by invoking a signal conversion function; and

sending, by the first system, the processed video signal to the display screen and/or sending, by the first system, the processed audio output signal to the audio output unit.

3. The vehicle dual-system compatible control method according to claim 1 , further comprising:

loading a virtual screen program to communicate with the first system and the second system; and

obtaining, by the second system, the touch coordinates generated by operating the application in the second system through the virtual screen program when the application in the second system is executed.

4. The vehicle dual-system compatible control method according to claim 1 , wherein the first system and the second system obtain audio input signals from an audio input unit.

5. A vehicle dual-system compatible control system, comprising:

a display screen, an audio output unit and a touch screen; wherein the display screen is configured to display a system interface of a first system, and the system interface of the first system includes icons for application programs in the first system and icons for application programs in a second system;

the first system built on an independent processor, and configured to communicate with the display screen, the audio output unit and the touch screen, obtain touch coordinates on the touch screen and determine a type of a current application, and send a video signal to the display screen and output an audio output signal to the audio output unit when an application in the first system is executed; and

the second system built on another independent processor, and configured to send a video signal to the display screen and output an audio output signal to the audio output unit through data ports of the first system, and obtain touch coordinates of an application in the second system when the application in the second system is executed;

wherein the first system and the second system are both built in a vehicle.

6. The vehicle dual-system compatible control system according to claim 5 , wherein the second system is further configured to be connected to the first system through the data ports of the first system, so as to send the video signal and/or the audio output signal to the first system; and

the first system is further configured to process the video signal and/or the audio output signal of the second system by invoking a signal conversion function, and send the processed video signal to the display screen and/or send the processed audio output signal to the audio output unit.

7. The vehicle dual-system compatible control system according to claim 5 , further comprising a conversion module, wherein

the conversion module is configured to load a virtual screen program to communicate with the first system and the second system, and send the touch coordinates generated by operating the application in the second system to the second system when the application in the second system is executed.

8. The vehicle dual-system compatible control system according to claim 5 , further comprising an audio input unit, wherein

the audio input unit is configured to obtain audio input signals, and send the audio input signals to the first system and the second system.

9. A non-transitory computer-readable storage medium storing a computer program that, when executed by a processor, performs the vehicle dual-system compatible control method according to claim 1 .

10. A vehicle-mounted terminal, comprising a first processor, a second processor, and a memory, wherein

the memory is configured to store a computer program; and

the first processor is configured to build a first system; the second processor is configured to build a second system; and the first processor and the second processor are further configured to execute a computer program, so that the vehicle-mounted terminal performs the vehicle dual-system compatible control method according to claim 1 .

11. A computer program product comprising computer instructions that are stored on a non-transitory computer-readable storage medium, and that, when executed on a computer, cause a computer to perform the vehicle dual-system compatible control method according to claim 1 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2024
From: FAURECIA CLARION ELECTRONICS (FOSHAN) LIMITED COMPANY
To: FAURECIA CLARION ELECTRONICS (FENGCHENG) COMPANY LIMITED
Reel/Frame 067976/0297 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2021
From: CUI, BAOSHENG; LUO, CHAO; YANG, ZHICHU; XUAN, WEIJIAN; LIU, LIANG; HE, LONGJUN
To: FAURECIA CLARION ELECTRONICS (FOSHAN) LIMITED COMPANY
Reel/Frame 057765/0502 →
Priority Claims (1)
CN 202011098836.1 · Oct 14, 2020 · national
Continuity (1)
Related Publication 20220113923A1 · Apr 14, 2022