Display control method and apparatus, and terminal device

The display control method switches to a backup mode using a backlight unit to ensure critical information is displayed even when the panel fails, enhancing safety and conserving power.

JP7741313B2Active Publication Date: 2025-09-17YINWANG INTELLIGENT TECHNOLOGIES CO LTD
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Patent Information

Application Number
JP2024519695
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-09-30
Publication Date
2025-09-17
Estimated Expiration
2041-09-30

AI Technical Summary

Technical Problem

In-vehicle displays rely on the functional health of the display for safety, and if faulty, they cannot guarantee the driver's access to critical driving information, compromising safety.

Method used

Implementing a display control method that switches to a backup mode using a backlight unit when the panel fails, ensuring critical information is displayed, and conserving power when battery levels are low.

Benefits of technology

Ensures driving safety by providing backup display and reduces power consumption, thereby improving user experience and extending vehicle mileage.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Abstract

The present application provides a display method and apparatus, and a terminal device. The method may be applied to a display. The display includes a backlight unit, a panel, and a first control unit. The display has a first display mode and a second display mode. The first display mode is to display image information using the backlight unit, and the second display mode is to display image information using the backlight unit and the panel, and the method includes: a first control unit receiving a first status message, where the first status message indicates that the panel is not working; receiving a first image signal, where the first image signal is used to display the first image information; and displaying the first image information in the first display mode based on the first status message. The embodiment of the present application may be applied to an intelligent vehicle or a new energy vehicle, which can help improve the security performance of the device, and thereby help improve the user experience.
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Description

[Technical Field]

[0001] The present application relates to the field of intelligent driving, and more particularly to a display control method and apparatus, and a terminal device. [Background technology]

[0002] With the development of liquid crystal displays (LCDs), in-vehicle displays are becoming more widely used. As an interactive window for driving information, in-vehicle displays need to provide timely feedback to the driver so that the driver can understand the vehicle's status in real time. Currently, the functional safety of in-vehicle displays is implemented using the driver board through verification and backup displays, and this solution relies on the functional health of the display. If the display is faulty, the functional safety from the driver board to the display cannot be guaranteed, and as a result, the driver cannot see the driving information through the display, which affects driving safety. Summary of the Invention

[0003] The present application provides a display control method and apparatus, and a terminal device, which are useful for improving the security performance of the device, and thereby for improving the user experience.

[0004] According to a first aspect, a display control method is provided. The method may be applied to a display. The display includes a backlight unit, a panel, and a first control unit. The display has a first display mode and a second display mode. The first display mode is for displaying image information using the backlight unit, and the second display mode is for displaying image information using the backlight unit and the panel. The method includes the steps of: receiving a first status message by the first control unit, where the first status message indicates that the panel is not operating; receiving a first image signal, where the first image signal is used to display the first image information; and displaying the first image information in the first display mode based on the first status message.

[0005] In some embodiments of the present application, the display may implement multiple display modes (e.g., a first display mode and a second display mode). In this way, when the panel is not operating, the backlight unit may be used to display image information to implement a backup display in case of an emergency. This helps to improve the security performance of the device and helps to improve the user experience.

[0006] In some possible implementations, the display control method may be applied to a vehicle. As used herein, a "vehicle" may include one or more different types of transportation tools or movable objects operating or moving on land (e.g., highways, roads, or railroads), on water (e.g., waterways, rivers, or oceans), or in space. For example, a vehicle may include an automobile, a bicycle, a motorcycle, a train, a subway, an airplane, a boat, an aircraft, a robot, or another type of transportation tool or movable object, or the like.

[0007] In some possible implementations, the first control unit may be a logic board (timing controller, TCON).

[0008] In some possible implementations, the backlight unit may be a matrix light-emitting diode (LED) backlight unit.

[0009] Referring to the first aspect, in some implementations of the first aspect, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0010] In one embodiment of the present application, if a display failure occurs, the first image information is displayed using a backlight unit, which helps ensure driving safety. If the battery level of the device is lower than or equal to a default value, the first image information is displayed using the backlight unit, which can reduce the power consumption of the device. For example, the device is a vehicle. The driving mileage of the vehicle can be increased. When a user command is received, the backlight unit is used to display the first image information and switch to a display mode desired by the user to display the image information. This helps improve the user experience.

[0011] In some possible implementations, the first image information includes information such as vehicle speed information, steering light information, and gear information.

[0012] Referring to the first aspect, in some implementations of the first aspect, before the step of receiving the first image signal, the method further includes the first control unit sending a first status message to the second control unit, and the step of receiving the first image signal includes receiving the first image signal generated by the second control unit based on the first status message.

[0013] In some embodiments of the present application, the first control unit may obtain the first image signal generated by the second control unit based on the first status message. For example, if a display failure occurs, the second control unit may generate the first image signal based on a controller area network (CAN) signal, so that some necessary driving information can be displayed reliably even if the display failure occurs. This helps ensure driving safety.

[0014] In some possible implementations, the second control unit may include a microcontroller unit (MCU), or the second control unit may include an MCU and an on-screen display (OSD) chip.

[0015] Referring to the first aspect, in some implementations of the first aspect, the method further includes the steps of: a first control unit receiving a second status message, where the second status message indicates that the panel is operating; a second image signal, where the second image signal is used to display second image information; and Status message The method includes switching from the first display mode to the second display mode based on the first display mode and displaying the second image information in the second display mode.

[0016] In an embodiment of the present application, when the panel is operating, the display may switch from the first display mode to the second display mode, so that the second image information is displayed using the backlight unit and the panel, which helps to improve the user's visual impression when the user views the picture, and helps to improve the user experience.

[0017] For example, if the display recovers from a failure, or if the device's battery level is greater than a predetermined value, or if a user command is received, the first control unit may display the second image information using the backlight unit and the panel. Thus, the display may switch from displaying the image information using the backlight unit to displaying the image information using the backlight unit and the normally operating panel. This helps to improve the user's visual impression when the user views the image, and helps to improve the user experience.

[0018] Referring to the first aspect, in some implementations of the first aspect, displaying the first image information in the first display mode includes displaying the first image information using a backlight unit and a panel in a normally white mode.

[0019] In some possible implementations, displaying the first image information using the backlight unit includes obtaining a first region within the first image information, where the first region is a display region of a colored picture within the first image information, or the first region is a display region of a colorless picture within the first image information; and controlling the backlight unit to display the first image information based on the first region.

[0020] In some possible implementations, the first control unit may control the backlight unit corresponding to the first region to be turned on and the backlight unit corresponding to the second region to be turned off, where the second region is a region other than the first region in the first image information; or the first control unit may control the backlight unit corresponding to the first region to be turned off and the backlight unit corresponding to the second region to be turned on.

[0021] In an embodiment of the present application, the backlight unit cooperates with a panel in a normally white mode to display the first image information, thereby ensuring that image information can be displayed in an emergency. This improves the security performance of the device (e.g., if the device is a vehicle, the safety of driving the vehicle can be improved). This also ensures that an energy-saving display can be performed when the battery level is low, thereby helping to reduce the power consumption of the device (e.g., if the device is a vehicle, the driving distance of the vehicle can be extended).

[0022] Referring to the first aspect, in some implementations of the first aspect, the first status message includes one or more pieces of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating that the battery level is lower than or equal to a predetermined power level.

[0023] Referring to the first aspect, in some implementations of the first aspect, the first status message includes a first user command, and the first user command instructs switching to the first display mode.

[0024] According to a second aspect, there is provided a display control method, the method including: a second control unit receiving a first status message, where the first status message indicates that the panel is not operating; and the second control unit transmitting a first image signal and first instruction information to a display based on the first status message. The first image signal is used to display first image information, and the first instruction information instructs the display to display the first image information in a first display mode, where the first display mode is to perform the display using a backlight unit.

[0025] In some embodiments of the present application, when the second control unit receives the first status message, the second control unit may send a first image signal and first instruction information to the display. In this way, when the panel is not working, the display may use the backlight unit to display the first image information to implement a backup display in case of an emergency. This helps to improve the security performance of the device and improve the user experience.

[0026] For example, if a display failure occurs, the first image information is displayed using the backlight unit, which helps ensure driving safety. If the battery level of the device is lower than or equal to a default value, the first image information is displayed using the backlight unit, which can reduce the power consumption of the device. For example, the device is a vehicle. The driving mileage of the vehicle can be increased. If a user command is received, the backlight unit is used to display the first image information and switch to a display mode desired by the user to display the image information. This helps improve the user experience.

[0027] Referring to the second aspect, in some implementations of the second aspect, before transmitting the first image signal to the display, the method further includes generating the first image signal based on the first status message.

[0028] In some embodiments of the present application, the second control unit may generate the first image signal based on the first status message. For example, if a display failure occurs, the second control unit may generate the first image signal based on the CAN signal, so that some necessary driving information can be displayed reliably even if the display failure occurs, which helps ensure driving safety.

[0029] Referring to the second aspect, in some implementations of the second aspect, the method further includes receiving a second status message, where the second status message indicates that the panel is operating; and transmitting a second image signal and second instruction information to the display based on the second status message. The second instruction information instructs the display to switch from the first display mode to a second display mode, where the second display mode is to display image information using the backlight unit and the panel.

[0030] In an embodiment of the present application, when the panel is operating, the second control unit may instruct the display to switch from the first display mode to the second display mode, so that the second image information is displayed using the backlight unit and the panel, which helps to improve the user's visual impression when the user views the picture, and helps to improve the user experience.

[0031] For example, if the display recovers from a failure, or if the device's battery level is greater than a predetermined value, or if a user command is received, the second control unit may instruct the display to display second image information using the backlight unit and panel. Thus, the display may switch from displaying image information using the backlight unit to displaying image information using the backlight unit and a normally operating panel. This helps to improve the user's visual impression when the user views an image, and helps to improve the user experience.

[0032] Referring to the second aspect, in some implementations of the second aspect, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0033] Referring to the second aspect, in some implementations of the second aspect, the first status message includes a first user command, and the first user command instructs switching to the first display mode.

[0034] According to a third aspect, there is provided a display control device. A first display mode and a second display mode are implemented using the device. The first display mode is for performing a display using a backlight unit, and the second display mode is for displaying image information using the backlight unit and a panel. The device includes: a receiving unit configured to receive a first status message, where the first status message indicates that the panel is not operating; the receiving unit is further configured to receive a first image signal, where the first image signal is used to display the first image information; and a control unit configured to display the first image information in the first display mode based on the first status message.

[0035] Referring to the third aspect, in some implementations of the third aspect, the device further includes a transmitting unit configured to transmit a first status message to the second control unit before the first image signal is received by the receiving unit, and the receiving unit is configured, in particular, to receive the first image signal generated by the second control unit based on the first status message.

[0036] Referring to the third aspect, in some implementations of the third aspect, the receiving unit is further configured to receive a second status message, where the second status message indicates that the panel is operating. The receiving unit is further configured to receive a second image signal, where the second image signal is used to display second image information. The first control unit is further , in the second status message The display mode is switched from the first display mode to the second display mode based on the result of the selection, and the second image information is displayed in the second display mode.

[0037] Referring to the third aspect, in some implementations of the third aspect, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating that the battery level is lower than or equal to a predetermined power level.

[0038] Referring to the third aspect, in some implementations of the third aspect, the first status message includes a first user command, and the first user command instructs switching to the first display mode.

[0039] Referring to the third aspect, in some implementations of the third aspect, the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

[0040] According to a fourth aspect, there is provided a display control device including: a receiving unit configured to receive a first status message, where the first status message indicates that the panel is not operating; and a transmitting unit configured to transmit a first image signal and first instruction information to a display based on the first status message. The first image signal is used to display the first image information, and the first instruction information instructs the display to display the first image information in a first display mode, where the first display mode is to perform the display using a backlight unit.

[0041] Referring to the fourth aspect, in some implementations of the fourth aspect, the device further includes a generating unit configured to generate a first image signal based on the first status message before the transmitting unit transmits the first image signal information to the display.

[0042] Referring to the fourth aspect, in some implementations of the fourth aspect, the receiving unit is further configured to receive a second status message, where the second status message indicates that the panel is operating. The transmitting unit is further configured to transmit a second image signal and second instruction information to the display based on the second status message. The second instruction information instructs the display to switch from the first display mode to a second display mode, where the second display mode is to display image information using the backlight unit and the panel.

[0043] Referring to the fourth aspect, in some implementations of the fourth aspect, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0044] Referring to the fourth aspect, in some implementations of the fourth aspect, the first status message includes a first user command, and the first user command instructs switching to the first display mode.

[0045] According to a fifth aspect, there is provided an apparatus, the apparatus including a processing unit and a storage unit, the storage unit configured to store instructions, the processing unit executing the instructions stored in the storage unit, thereby causing the apparatus to perform any conceivable method of the first or second aspect.

[0046] Optionally, the processing unit may be a processor and the storage unit may be a memory, which may be a storage unit within the chip (e.g., a register or cache) or a storage unit located outside the chip within the vehicle (e.g., a read-only memory or a random access memory).

[0047] According to a sixth aspect, there is provided a display. The display includes a backlight unit, a panel, and a first control unit. A first display mode and a second display mode are implemented using the first control unit. The first display mode is for displaying image information using the backlight unit, and the second display mode is for displaying image information using the backlight unit and the panel.

[0048] According to a seventh aspect, there is provided a terminal device comprising an apparatus according to any possible implementation of the third, fourth and fifth aspects, or comprising a display according to the sixth aspect.

[0049] Referring to the seventh aspect, in some implementations of the seventh aspect, the terminal device is a vehicle.

[0050] According to an eighth aspect, there is provided a computer program product comprising computer program code that, when executed on a computer, causes the computer to carry out the method of the first or second aspect.

[0051] Note that all or part of the computer program code may be stored in a first storage medium. The first storage medium may be encapsulated together with the processor or may be encapsulated separately from the processor. The embodiment of the present application is not particularly limited thereto.

[0052] According to a ninth aspect, there is provided a computer-readable medium storing program code which, when executed on a computer, causes the computer to carry out the method of the first or second aspect described above.

[0053] According to a tenth aspect, an embodiment of the present application provides a chip system, the chip system including a processor configured to invoke a computer program or computer instructions stored in a memory, thereby causing the processor to perform the method of the first aspect.

[0054] Referring to the tenth aspect, in one possible implementation, the processor is coupled to the memory using an interface.

[0055] Referring to the tenth aspect, in one possible implementation, the chip system further includes a memory, the memory storing computer programs or computer instructions.

[0056] According to an eleventh aspect, an embodiment of the present application provides a chip system, the chip system including a processor configured to invoke a computer program or computer instructions stored in a memory, thereby causing the processor to perform the method of the second aspect.

[0057] Referring to the eleventh aspect, in one possible implementation, the processor is coupled to the memory using an interface.

[0058] Referring to the eleventh aspect, in one possible implementation, the chip system further includes a memory, which stores computer programs or computer instructions. [Brief explanation of the drawings]

[0059] [Figure 1] 1 is a functional block diagram of a terminal device according to an embodiment of the present application;

[0060] [Figure 2] Schematic diagram of an in-vehicle display;

[0061] [Figure 3] An exploded view of any in-car display system;

[0062] [Figure 4] Schematic diagram of the remote driver board;

[0063] [Figure 5] Schematic diagram of a display module;

[0064] [Figure 6] Schematic diagram of the display structure;

[0065] [Figure 7] A schematic diagram of the edge architecture;

[0066] [Figure 8] Schematic diagram of direct-under architecture;

[0067] [Figure 9] Schematic diagram of a normally white mode liquid crystal display;

[0068] [Figure 10] Schematic diagram of a normally black mode liquid crystal display;

[0069] [Figure 11] 1 is a schematic diagram of the structure of an in-vehicle display system;

[0070] [Figure 12] 1 is a schematic diagram of another structure of an in-vehicle display system;

[0071] [Figure 13] 1 is a schematic diagram of the structure of a display system according to an embodiment of the present application;

[0072] [Figure 14] 1 is a diagram showing the display effect of driving information according to an embodiment of the present application;

[0073] [Figure 15] Another display effect diagram of driving information according to an embodiment of the present application;

[0074] [Figure 16] 1 is a schematic diagram of the structure of another display system according to an embodiment of the present application;

[0075] [Figure 17] Another display effect diagram according to an embodiment of the present application;

[0076] [Figure 18] 1 is a schematic flowchart of a display control method according to an embodiment of the present application;

[0077] [Figure 19] 1 is another schematic flowchart of a display control method according to an embodiment of the present application;

[0078] [Figure 20] 1 is a schematic block diagram of a display control device according to an embodiment of the present application;

[0079] [Figure 21] 1 is a schematic block diagram of a display control device according to an embodiment of the present application; and

[0080] [Figure 22] 1 is a schematic block diagram of a display system according to an embodiment of the present application; DETAILED DESCRIPTION OF THE INVENTION

[0081] The technical solutions in this application are described below with reference to the accompanying drawings.

[0082] 1 is a functional block diagram of a terminal device 100 according to an embodiment of the present application. The terminal device 100 may include a display 110 and a computing platform 120.

[0083] The display 110 is configured to display images, videos, and the like. The display 110 includes a backlight unit and a display panel. The backlight unit may be a mini light-emitting diode (mini-LED) or a micro-LED. The display panel may be an LCD, a mini-LED, a micro-OLED, or the like. In some embodiments, the terminal device 100 may include one or N displays 110, where N is a positive integer greater than 1.

[0084] Some or all functions of terminal device 100 are controlled by computing platform 120. Computing platform 120 may include at least one processor 121, which may execute instructions 123 stored on a non-transitory computer-readable medium, such as memory 122. In some embodiments, computing platform 120 may alternatively be multiple computing devices that control individual components or subsystems of terminal device 100 in a distributed manner.

[0085] Processor 121 may be any conventional processor, such as a central processing unit (CPU), or alternatively, may further include a graphics processing unit (GPU), a field programmable gate array (FPGA), a system on chip (SOC), an application-specific integrated circuit (ASIC), or a combination thereof.

[0086] It should be understood that the terminal device 100 in this embodiment of the present application may be a vehicle, a mobile phone, a smart TV, a tablet computer, a wearable device, an augmented reality (AR) / virtual reality (VR) device, a notebook computer, an ultra-mobile personal computer (UMPC), a netbook, a personal digital assistant (PDA), or the like. The embodiment of the present application is not limited to a specific type of the terminal device.

[0087] It should be further understood that, as used herein, a "vehicle" may include one or more different types of transportation tools and may include one or more different types of transportation tools or movable objects that operate or move on land (e.g., highways, roads, or railroads), on water (e.g., waterways, rivers, or oceans), or in space. For example, a vehicle may include an automobile, bicycle, motorcycle, train, subway, airplane, boat, aircraft, robot, or another type of transportation tool or movable object, or the like.

[0088] It should be further understood that the structure of the terminal device in FIG. 1 should not be construed as a limitation on the embodiments of the present application.

[0089] As described above, an in-vehicle display, as an interactive window of driving information, needs to provide timely feedback of driving information to the driver so that the driver can understand the vehicle status in real time. Currently, the functional safety of an in-vehicle display is implemented using a driver board through verification and backup display, and this solution depends on the functional normality of the display. If the display is faulty, the functional safety from the driver board to the display cannot be guaranteed, and as a result, the driver cannot see the driving information through the display, which affects driving safety.

[0090] The present application provides a display method and apparatus, and a terminal device. When a display fails, a light-emitting diode (LED) backlight can be used to display image information, which helps improve the user experience. For example, when an in-vehicle display fails, a matrix LED backlight cooperates with a normally white panel to display vehicle speed, steering information, gear information, and the like. This helps improve driving safety. Alternatively, when the battery level of the terminal device is low, the matrix LED backlight cooperates with a normally white panel to display information. This helps conserve the battery of the terminal device. For example, when the vehicle's battery level is below a certain threshold, the matrix LED backlight cooperates with a normally white panel to display vehicle speed, steering information, gear information, and the like. This helps conserve the vehicle's battery and extend the vehicle's driving mileage.

[0091] The following describes a display method in an embodiment of the present application using an in-vehicle display as an example. FIG. 2 is a schematic diagram of an in-vehicle display. As shown in FIG. 2, the in-vehicle display may include a vehicle instrument display 201, a vehicle streaming media rearview mirror 202, and an in-vehicle infotainment display 203. The vehicle instrument display 201 is configured to display vehicle driving information and is mainly used by the driver. The vehicle streaming media rearview mirror 202 is mainly configured to display information about the interior of the vehicle cabin and information about the next vehicle, assisting the driver in driving. The in-vehicle infotainment display 203 mainly controls human-machine interactions throughout the vehicle, such as air conditioning, seat control, music, navigation, and video entertainment.

[0092] FIG. 3 is an exploded view of any of the in-vehicle display systems in FIG. 2. As shown in FIG. 3, the system may include an in-vehicle display system host 301, a controller area network (CAN) bus 302, a low-voltage differential signaling (LVDS) signal cable 303, and a remote display system 304. The remote display system 304 includes a remote driver board 3041 and a display module 3042. The in-vehicle display system host 301 may provide source-end signals for content to be displayed on the display. The CAN bus can provide vehicle driving information, such as driving speed information, steering light information, and gear information. The LVDS signal cable is used to transmit display content to the display. The signals are high-speed signals compatible with several different serial chips and can be transmitted using several different protocols. The main function of the remote driver board is to deserialize the source-end transmission signal and convert it into the LVDS signal required by the display module, such as an open low-voltage differential signaling display interface (Open LDI) signal or an embedded display port (eDP) signal. In addition, the remote driver board receives the CAN signal and adapts to a safety chip to perform safe display of operating status information and power conversion.

[0093] 4 is a schematic diagram of the structure of a remote driver board. The remote driver board 3041 may include a security chip 401. The security chip 401 may be the microcontroller unit (MCU) of the remote driver board and may implement signal deserialization, CAN signal reception, secure display, and the like. In some scenarios, the chip is implemented by multiple chips through combination. In one embodiment, the security chip 401 may include an MCU and an on-screen display (OSD) chip.

[0094] 5 is a schematic diagram of the structure of a display module. The display module may include a backlight unit 501, a panel 502, a chip-on-flex (COF), a display driver integrated circuit (DDIC) and a flexible printed circuit (FPC) 503, a logic board (timing controller (TCON)) 504, and the like. The TCON 504 is configured to receive an LVDS signal and implement a joint display of the backlight unit 501 and the panel 502 through algorithm control (e.g., a local dimming algorithm). In addition, the TCON 504 may be further configured to perform power conversion.

[0095] In one embodiment, the functionality of TCON 504 may be implemented by TCON chip 5041.

[0096] The backlight unit 501 may be a matrix backlight unit. The backlight unit 501 may use mini-LEDs to create a matrix layout and implement partition control (e.g., lighting the LED backlight in partition units). For example, the TCON board may implement a local dimming algorithm for the displayed content to improve the readability of the displayed content.

[0097] The panel 502 is configured to display content. The panel may employ a combination of polarizers in a normally white mode to implement image display controlled by liquid crystal. The material of the component may be a glass substrate.

[0098] The DDIC and FPC 503 are configured to convert digital signals into analog signals, drive circuits on the panel, and control the rotation of the liquid crystal to implement image display. For example, the DDIC and FPC product form may be COF or a combination of chip-on-glass (COG) and FPC.

[0099] 6 is a schematic diagram of another structure of a display module. As shown in FIG. 6, the display module may include a mini-LED backlight, a lower polarizer, a panel, an upper polarizer, a touch sensor (TP sensor), and a cover glass.

[0100] LED backlight sources used in current LCDs include edge-type backlight sources and direct-type backlight sources. Figure 7 shows a schematic diagram of an edge-type architecture. LEDs are arranged on the side of a light guide plate. An edge-type backlight source is a backlight source formed by a linear or point light source on the side of a specially designed light guide plate. An edge-type backlight source implements the effect of a surface light source through the light guide plate and is visually completely open or completely closed.

[0101] Figure 8 is a schematic diagram of the direct-under architecture. Direct type Backlight sources do not require a light guide plate, but rather the light source (LED chip array) is installed at the bottom of the backlight source. After light is emitted from the LED, it passes through the reflector at the bottom and then through the diffuser plate and diffusion film on the surface to be evenly emitted. The thickness of the backlight source is mainly determined by the height of the cavity between the reflector and diffusion film. If the installation requirements and luminous brightness are met, a higher cavity will result in better uniformity of the light emitted through the diffuser plate. Direct backlight sources can use mini-LED solutions, which will result in a visually matrix-like appearance of the direct backlight source and implement local dimming to match the LCD display effect.

[0102] The display mode of the panel can be classified into NW mode and normally black (NB) mode. Figure 9 is a schematic diagram of a liquid crystal display in NW mode. As shown in Figure 9, when no voltage is applied, the liquid crystal transmits light and a bright picture is displayed. When voltage is applied, the liquid crystal does not transmit light and a dark picture is displayed.

[0103] Figure 10 is a schematic diagram of a liquid crystal display in NB mode. As shown in Figure 10, when no voltage is applied, the liquid crystal does not transmit light and a dark picture is displayed. When voltage is applied, the liquid crystal transmits light and a bright picture is displayed.

[0104] 11 is a schematic diagram of the structure of an in-vehicle display system. As shown in FIG. 11, the in-vehicle display system may include a driver board and a display. The driver board includes a power supply, an MCU, and an OSD chip. The OSD chip may receive a source-end signal (for example, the source-end signal may be an LVDS signal) and perform a data check on the source-end signal to determine whether the source-end signal is normal. If the source-end signal is abnormal, the OSD chip enters a function security processing logic. If the OSD chip determines that the source-end signal is normal, the OSD chip may convert the source-end signal into a signal that can be received and recognized by a display.

[0105] For example, the OSD chip may receive source-end signals using a video serial communication (flat panel display link, FPD Link) protocol, an automotive pixel link (APIX) protocol, or a Gigabit multimedia serial links (GMSL) protocol.

[0106] For example, the OSD chip may convert the source end signal into an Open LDI signal or an eDP signal.

[0107] The driver board may receive the CAN signal and send the signal to the OSD chip using the MCU. The CAN signal may include vehicle information, such as vehicle status (e.g., vehicle speed, steering lights, or gear). When the OSD chip enters the function security processing logic, the OSD chip may determine image information based on the CAN signal and send the image information to the display using the LVDS interface for display.

[0108] The display receives image information using a flexible printed circuit, and then controls the mini-LED backlight and panel to display using the DDIC and TCON.

[0109] As shown in FIG. 11, the driver board may also provide power to the DDIC and TCON.

[0110] Figure 12 is a schematic diagram of another structure of an in-vehicle display system. When the TCON controls the mini-LED backlight and panel to perform the display, the display may be implemented using a local dimming algorithm. After the display receives image information sent by the driver board using the LVDS interface, the TCON may adjust the matrix backlight through, for example, image division, feature extraction, backlight calculation, analog diffusion, and liquid crystal compensation. In this way, LEDs corresponding to colorless pictures are turned off to achieve the effect of pure black, and LEDs corresponding to colored parts are turned on to improve the visual effect.

[0111] For example, the TCON may first divide the image information sent to the display by the driver board by performing image division, e.g., dividing the image information into four equally sized image information pieces. The TCON then performs feature extraction on each image information piece to obtain image information corresponding to the colorless picture and image information corresponding to the colored part in each image information piece. The TCON then calculates the appropriate backlight luminance for the image information piece based on the feature-extracted image information. Analog diffusion and liquid crystal compensation indicate that after backlight calculations are performed on the image, the pixel size of the displayed image needs to be adjusted to change the light transmittance to ensure that the display luminance of the image being actually displayed matches that of the image when the backlight is fully turned on as closely as possible. The TCON may then adjust each pixel point-by-point based on a correction curve.

[0112] Both the in-vehicle display systems shown in Figures 11 and 12 rely on the display being able to operate normally to ensure functional safety from the source end to the driver board. If the display module fails and cannot display, functional safety from the driver board to the display cannot be guaranteed. Display failures include, but are not limited to, the following:

[0113] (1) The LCD panel is damaged and the display is not displayed or is unstable.

[0114] (2) The LCD DDIC or TCON fails, causing no display or unstable display.

[0115] (3) The high-speed signal cable or connection cable inside the FPC is damaged, causing no display or unstable display.

[0116] In an embodiment of the present application, an emergency backup display in case of display failure may be implemented based on the above-mentioned local dimming algorithm and panel in NW mode.

[0117] FIG. 13 is a schematic diagram of the structure of a display system according to an embodiment of the present application. As shown in FIG. 13, after receiving a CAN signal containing driving information, the MCU sends the CAN signal to the OSD chip. The OSD chip may determine an image signal based on the driving information contained in the CAN signal. The OSD chip uses an LVDS interface to transmit the image signal to the display. After receiving the image signal, the display may perform image segmentation and feature extraction to determine colorless and colored pictures in the image information corresponding to the image signal, and turn on the LED backlight areas corresponding to the colored pictures and turn off the LED backlight areas corresponding to the colorless pictures. The LED backlight cooperates with the panel in network mode for matrix display. FIG. 14 is a display effect diagram of driving information according to an embodiment of the present application. The driving information may include, for example, vehicle speed (e.g., 70 km / h), steering light (e.g., turn left), and gear (e.g., D gear).

[0118] In one embodiment, after receiving an image signal, the display may perform image segmentation and feature extraction to determine colorless and colored pictures in the image information corresponding to the image signal, and turn on the LED backlight areas corresponding to the colorless pictures and turn off the LED backlight areas corresponding to the colored pictures. The LED backlight cooperates with the panel in NW mode for matrix display. Figure 15 is another display effect diagram of driving information according to an embodiment of the present application, where the driving information includes, for example, vehicle speed (e.g., 70 km / h), steering light (e.g., turn left), and gear (e.g., D gear).

[0119] In one embodiment, the display system shown in FIG. 13 may be used for backup display when a display failure occurs, or for energy-saving display when the battery level of the terminal device is lower than a default value. For example, when the power of a new energy vehicle is insufficient (e.g., the battery level is less than 10%), there is a high demand for power saving. In this case, a display using the display system shown in FIG. 13 may save the power of the new energy vehicle, which helps to extend the driving mileage of the vehicle. For example, when the panel is turned off, approximately 1155 mW of power consumption can be saved.

[0120] FIG. 16 is a schematic diagram of the structure of another display system according to an embodiment of the present application. As shown in FIG. 16, the display system includes an image generation device, an image processing device, a backlight unit (e.g., an LED backlight), and a panel. The image generation device is configured to generate an image signal. The image processing device is configured to perform feature extraction on image information corresponding to the image signal to obtain a first target region in the image information. The first target region may be a region used to display a colored picture. Regions other than the first target region in the image information may be regions used to display a colorless picture. The image processing device may turn on an LED backlight based on the first target region and perform matrix display using the LED backlight in conjunction with the panel in NW mode. For example, the image processing device may turn on a backlight unit corresponding to the first target region and turn off the LED backlight in regions other than the first target region. For example, the image processing device may turn on an LED backlight corresponding to regions other than the first target region and turn off the LED backlight in regions other than the first target region.

[0121] In some embodiments, the image generation module and the image processing module may be two different modules, or may be multiple different sub-modules integrated into the same module, although the embodiments of the present application are not limited thereto.

[0122] It should be understood that the above-described embodiments are described using an example in which the display system is applied to a vehicle. The embodiments of the present application are not limited thereto. The display method and system in the embodiments of the present application may also be applied to a terminal device such as a mobile phone or a smart TV. For example, FIG. 17 is a diagram showing another display effect according to an embodiment of the present application. Take the application to a smart TV as an example. When the smart TV detects a collision from another object, the panel is damaged, and the panel cannot perform display, the smart TV may notify the user that the current smart TV is in danger by displaying default image information (e.g., "DANGER").

[0123] 18 is a schematic flowchart of a display control method 1800 according to an embodiment of the present application. As shown in FIG. 18, the method 1800 may be applied to a display. The display includes a backlight unit, a panel, and a first control unit. The display has a first display mode and a second display mode. The first display mode is for displaying image information using the backlight unit, and the second display mode is for displaying image information using the backlight unit and the panel, and the method 1800 includes the following steps:

[0124] S1801: The display receives a first status message, where the first status message indicates that the panel is not operating.

[0125] Optionally, receiving the first status message by the display includes receiving the first status message by a first control unit.

[0126] Optionally, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0127] Optionally, the first status message includes a first user command, the first user command instructing a switch to the first display mode.

[0128] For example, if a display fails, the first control unit may directly obtain a first status message indicating that the display has failed.

[0129] For example, the first control unit may receive a first status message from the second control unit. For example, if the vehicle's battery level is lower than or equal to a predetermined value, the second control unit may indicate to the first control unit that the battery level is lower than or equal to the predetermined value, and as a result, the first control unit may control the panel not to operate. As another example, the first status message may be a first user command, and the first user command instructs switching to a first display mode.

[0130] For example, the first control unit may be a TCON, and the second control unit may be an MCU (or an MCU and an OSD chip).

[0131] In this embodiment of the present application, the function of the OSD chip may be integrated into the MCU, or the OSD chip may be a chip independent of the MCU, but this is not limited to this embodiment of the present application.

[0132] S1802: A display receives a first image signal.

[0133] Optionally, receiving the first image signal by the display includes receiving the first image signal by a first control unit.

[0134] For example, the first control unit may receive a first image signal transmitted by the second control unit.

[0135] Optionally, the first image signal may alternatively be a default image signal.

[0136] S1803: The display displays the first image information in the first display mode based on the first status message.

[0137] Optionally, before the display receives the first image signal, the method further includes the display sending a first status message to the second control unit, and receiving the first image signal by the display includes the display receiving the first image signal generated by the second control unit based on the first status message.

[0138] For example, the TCON may receive a first status message indicating that the panel is not working. After receiving the first status message, the TCON may send the first status message to an MCU on a remote driver board. After receiving the signal, the MCU may generate a first image signal based on the first status message and send the first image signal to the TCON. For example, if a display failure occurs, the MCU may generate a first image signal based on a CAN signal, so that some necessary driving information can be displayed reliably even if the display failure occurs. This helps ensure driving safety.

[0139] Optionally, the method further comprises receiving a second status message by the display, where the second status message indicates that the panel is operating; receiving a second image signal by the display, where the second image signal is used to display second image information; and is the second status message The display mode is switched from the first display mode to the second display mode based on the detected image, and the second image information is displayed in the second display mode.

[0140] Optionally, displaying the first image information using the backlight unit includes the display acquiring a first region within the first image information, where the first region is a display region of a colorful picture within the first image information, or the first region is a display region of a colorless picture within the first image information; and the display controlling the backlight unit to display the first image information based on the first region.

[0141] It should be understood that the process of the display using the backlight unit to display the first image information should refer to the display process shown in Figure 13, and the details will not be described again in this specification.

[0142] Optionally, the method further includes receiving, by the first control unit, a second status message, where the second status message indicates that the panel is operating; receiving a second image signal, where the second image signal is used to display second image information; and , in the second status message The method includes switching from the first display mode to the second display mode based on the first display mode and displaying the second image information in the second display mode.

[0143] In this embodiment of the present application, when the panel is operating, the display may switch from the first display mode to the second display mode, so that the second image information is displayed using the backlight unit and the panel, which helps to improve the user's visual impression when the user views the picture, and helps to improve the user experience.

[0144] For example, if the display recovers from a failure, or if the device's battery level is greater than a predetermined value, or if a user command is received, the first control unit may display the second image information using the backlight unit and the panel. Thus, the display may switch from displaying the image information using the backlight unit to displaying the image information using the backlight unit and the normally operating panel. This helps to improve the user's visual impression when the user views the image, and helps to improve the user experience.

[0145] It should be understood that the process of the display using the backlight unit and the display panel to display the second image information should refer to the display process shown in Figure 12, and the details will not be described again in this specification.

[0146] Optionally, the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

[0147] In this embodiment of the present application, the display may implement multiple display modes (e.g., a first display mode and a second display mode). In this way, when the panel is not working, the backlight unit may be used to display image information to implement a backup display in case of an emergency. This helps to improve the security performance of the device and helps to improve the user experience.

[0148] 19 is a schematic flowchart of a display control method 1900 according to an embodiment of the present application. As shown in FIG. 19, the method 1900 may be applied to a second control unit, which may be the above-mentioned MCU (or the second control unit may be a control unit that integrates the functions of an MCU and an OSD chip). The method 1900 includes the following steps:

[0149] S1901: A second control unit receives a first status message, where the first status message indicates that the panel is not operating.

[0150] Optionally, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0151] Optionally, the first status message includes a first user command, the first user command instructing a switch to the first display mode.

[0152] For example, if the vehicle's battery level is lower than or equal to a predetermined value, the second control unit may obtain a first status message. Alternatively, if the vehicle receives a first user command, the second control unit may determine that the panel is not operational.

[0153] For example, the second control unit may receive a first status message from the first control unit. For example, if a display failure occurs, the first control unit may receive the first status message and send the first status message to the second control unit.

[0154] It should be understood that after obtaining the first status message, the first control unit may send other indication information to the second control unit indicating that the panel is not working.

[0155] S1902: The second control unit sends a first image signal and first instruction information to the display based on the first status message, where the first image signal is used to display the first image information, and the first instruction information instructs the display to display the first image information in a first display mode, where the first display mode is to perform the display using a backlight unit.

[0156] Optionally, the method further includes, before the second control unit sends the first image signal to the display, the method further includes the second control unit generating the first image signal based on the first status message.

[0157] Optionally, the method further includes: a second control unit receiving a second status message, where the second status message indicates that the panel is operating; and the second control unit sending a second image signal and second instruction information to the display based on the second status message, the second instruction information instructing the display to switch from the first display mode to a second display mode, the second display mode being to display image information using the backlight unit and the panel.

[0158] For example, if the vehicle's battery level is greater than a predetermined value, the second control unit may obtain a second status message. Alternatively, if the vehicle receives a second user command, the second control unit may determine that the panel is not operational.

[0159] For example, the second control unit may receive a second status message from the first control unit. For example, when the display recovers from a failure, the first control unit may receive the first status message and send the second status message to the second control unit.

[0160] 20 is a schematic block diagram of a display control device 2000 according to an embodiment of the present application. As shown in FIG. 20, the display control device 2000 includes: a receiving unit 2010 configured to receive a first status message, where the first status message indicates that the panel is not operating; the receiving unit 2010 is further configured to receive a first image signal, where the first image signal is used to display first image information; and a first control unit 2020 configured to display the first image information in a first display mode based on the first status message.

[0161] Optionally, the apparatus 2000 further comprises a transmitting unit configured to transmit a first status message to the second control unit before the receiving unit receives the first image signal.

[0162] The receiving unit 2010 is particularly configured to receive a first image signal generated by the second control unit based on the first status message.

[0163] Optionally, the receiving unit 2010 is further configured to receive a second status message, where the second status message indicates that the panel is working.

[0164] The receiving unit 2010 is further configured to receive a second image signal, where the second image signal is used to display second image information.

[0165] The first control unit 2020 further , in the second status message The display mode is switched from the first display mode to the second display mode based on the result of the selection, and the second image information is displayed in the second display mode.

[0166] Optionally, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0167] Optionally, the first status message includes a first user command, the first user command instructing a switch to the first display mode.

[0168] Optionally, the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

[0169] Optionally, the first control unit may be a TCON.

[0170] Optionally, the device 2000 may include a display.

[0171] 21 is a schematic block diagram of a display control device 2100 according to an embodiment of the present application. As shown in FIG. 21, the display control device 2100 includes a receiving unit 2110 configured to receive a first status message, where the first status message indicates that the panel is not working; and a sending unit 2120 configured to send a first image signal and first instruction information to a display based on the first status message. The first image signal is used to display first image information, and the first instruction information instructs the display to display the first image information in a first display mode, where the first display mode is to perform display using a backlight unit.

[0172] Optionally, the apparatus further includes a generating unit configured to generate the first image signal based on the first status message before the transmitting unit transmits the first image signal to the display.

[0173] Optionally, the receiving unit 2110 is further configured to receive a second status message, where the second status message indicates that the panel is working.

[0174] The sending unit 2120 is further configured to send a second image signal and second instruction information to the display based on the second status message, where the second instruction information instructs the display to switch from the first display mode to a second display mode, where the second display mode uses the backlight unit and the panel to display a picture.

[0175] Optionally, the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a display connector or line failure, or information indicating a battery level lower than or equal to a predetermined power level.

[0176] Optionally, the first status message includes a first user command, the first user command instructing a switch to the first display mode.

[0177] Optionally, the device 2100 may be an MCU, or the device 2100 may include an MCU and an OSD chip.

[0178] 22 is a schematic block diagram of a display system 2200 according to an embodiment of the present application. The display system may include a first device 2210 and a second device 2220. For example, the first device Place 2210 is , may be the device 2000 described above, and / or the second device 2220 may be the device 2100 described above.

[0179] An embodiment of the present application further provides an apparatus, the apparatus including a processing unit and a storage unit, the storage unit configured to store instructions, and the processing unit executing the instructions stored in the storage unit, thereby causing the apparatus to perform the steps performed in the above-mentioned embodiments.

[0180] Optionally, if the device is located in a vehicle, the processing unit may be processor 121 shown in Figure 1, and the storage unit may be memory 122 shown in Figure 1. Memory 122 may be a storage unit within the chip (e.g., a register or cache) or may be a storage unit located outside the chip within the vehicle (e.g., a read-only memory or random access memory).

[0181] Some embodiments of the present application further provide a display, which may include the device 2000 described above.

[0182] An embodiment of the present application further provides a terminal device, which may include the above-described apparatus 2000, the above-described apparatus 2100, the above-described system 2200, or the above-described display.

[0183] Optionally, the terminal device may be a vehicle.

[0184] An embodiment of the present application further provides a computer program product, which includes computer program code that, when executed on a computer, causes the computer to perform the above-described method.

[0185] An embodiment of the present application further provides a computer-readable medium, which stores program code that, when executed on a computer, causes the computer to perform the above-described method.

[0186] In some implementation processes, the steps of the above-described methods may be implemented using hardware integrated logic circuits in a processor or using instructions in software form. The methods disclosed with reference to the embodiments of the present application may be directly executed by a hardware processor, or may be executed by a combination of hardware and software modules in a processor. The software modules may be located in a storage medium well-established in the art, such as a random access memory, a flash memory, a read-only memory, a programmable read-only memory, an electrically erasable programmable memory, or a register. The storage medium is located in the memory, and the processor reads information in the memory and completes the steps of the above-described methods in combination with the processor's hardware. To avoid repetition, details will not be described again in this specification.

[0187] It should be understood that in embodiments of the present application, memory may include read-only memory and random access memory to provide instructions and data to the processor.

[0188] In the embodiments of the present application, the terms "first," "second," and various numerical values ​​are used merely to distinguish between different pipes, through-holes, and the like, and are not intended to limit the scope of the embodiments of the present application. For example, the terms "first," "second," and various numerical values ​​are used to distinguish between different pipes, through-holes, and the like.

[0189] It should be understood that the term "and / or" used herein describes only a correspondence between related entities and represents three possible relationships. For example, A and / or B may represent three cases: when only A is present, when both A and B are present, and when only B is present. Additionally, the symbol " / " used herein generally indicates an "or" relationship between related entities.

[0190] It should be understood that the sequence numbers of the above processes do not imply the order of execution in various embodiments of the present application, and the order of execution of the processes should be determined according to the functions and internal logic of the processes, and should not be construed as any limitation on the implementation process of the embodiments of the present application.

[0191] Those skilled in the art may recognize that, in combination with the examples described in the embodiments disclosed herein, the units and algorithm steps can be implemented by electronic hardware or a combination of computer software and electronic hardware. Whether these functions are performed by hardware or software depends on the specific application and the design constraints of the technical solution. Those skilled in the art may use different methods to implement the described functions for each specific application, but such implementation should not be considered as going beyond the scope of the present application.

[0192] Those skilled in the art may clearly understand that for the purpose of convenient and simple description, the detailed operation processes of the above-mentioned systems, devices and units should be referred to the corresponding processes in the above-mentioned method embodiments, and the details will not be described again in this specification.

[0193] In some embodiments provided herein, it should be understood that the disclosed systems, devices, and methods may be implemented in other manners. For example, the described device embodiments are merely examples. For example, the division into multiple units is merely a logical division of function, and other divisions may be used in actual implementation. For example, multiple units or components may be combined or integrated into another system, or some features may be omitted or not implemented. In addition, the shown or described mutual couplings or direct couplings or communication connections may be implemented using some interfaces. Indirect couplings or communication connections between devices or units may be implemented in electronic, mechanical, or other forms.

[0194] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, located in one location or distributed over multiple network units, some or all of which may be selected based on actual requirements for realizing the objectives of the solutions of the embodiments.

[0195] Additionally, the functional units in the embodiments of the present application may be integrated into one processing unit, each of these units may exist physically alone, or two or more units may be integrated into one unit.

[0196] When these functions are implemented in the form of software functional units and sold or used as independent products, these functions may be stored in a computer-readable storage medium. Based on this understanding, the technical solutions of the present application may be essentially implemented in the form of a software product, or a portion that contributes to the prior art may be implemented in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for instructing a computer device (which may be a personal computer, a server, or a network device) to perform all or some of the steps of the methods described in the embodiments of the present application. The aforementioned storage medium includes any medium capable of storing program code, such as a USB flash drive, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.

[0197] The above description is merely a specific implementation of the present application and is not intended to limit the scope of protection of the present application. Any modifications or substitutions that can be easily thought of by those skilled in the art within the technical scope disclosed in the present application shall be included in the scope of protection of the present application. Therefore, the scope of protection of the present application shall be subject to the scope of protection of the claims. 。 [Other possible items] [Item 1] A display control method applicable to a display, the display including a backlight unit, a panel, and a first control unit, the display having a first display mode and a second display mode, the first display mode being for displaying image information using the backlight unit, and the second display mode being for displaying the image information using the backlight unit and the panel, the method comprising: receiving a first status message by the first control unit, wherein the first status message indicates that the panel is not operational; receiving a first image signal, wherein the first image signal is used to display first image information; and displaying the first image information in the first display mode based on the first status message; A method comprising: [Item 2] Prior to receiving the first image signal, the method further comprises: sending the first status message to a second control unit; Equipped with The step of receiving a first image signal includes: receiving the first image signal generated by the second control unit based on the first status message; having The method according to item 1. [Item 3] The method further comprises: receiving a second status message by the first control unit, wherein the second status message indicates that the panel is operational; receiving a second image signal, wherein the second image signal is used to display second image information; and switching from the first display mode to the second display mode based on the second state information, and displaying the second image information in the second display mode; 3. The method according to item 1 or 2, comprising: [Item 4] 4. The method of any one of items 1 to 3, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a driver chip failure of the display, information indicating a connector or line failure of the display, or information indicating that the battery level is lower than or equal to a predetermined power level. [Item 5] 4. The method of any one of items 1 to 3, wherein the first status message includes a first user command, and the first user command instructs switching to the first display mode. [Item 6] 6. The method of any one of items 1 to 5, wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information. [Item 7] A display control method, comprising: receiving a first status message, wherein the first status message indicates that the panel is not operational; and sending a first image signal and first instruction information to a display based on the first status message, wherein the first image signal is used to display first image information, and the first instruction information instructs the display to display the first image information in a first display mode, the first display mode being to perform display using a backlight unit; A method for providing [Item 8] Prior to transmitting the first image signal to the display, the method further comprises: generating the first image signal based on the first status message; Item 7. The method according to item 7, comprising: [Item 9] The method further comprises: receiving a second status message, wherein the second status message indicates that the panel is operational; and sending a second image signal and second instruction information to the display based on the second status message, wherein the second instruction information instructs the display to switch from the first display mode to a second display mode, the second display mode being to display the image information using the backlight unit and the panel; 9. The method according to item 7 or 8, comprising: [Item 10] 10. The method of any one of items 7 to 9, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a driver chip failure of the display, information indicating a connector or line failure of the display, or information indicating that the battery level is lower than or equal to a predetermined power level. [Item 11] 10. The method of any one of items 7 to 9, wherein the first status message includes a first user command, and the first user command instructs switching to the first display mode. [Item 12] A display control device, wherein a first display mode and a second display mode are implemented using the device, the first display mode being for performing display using a backlight unit, and the second display mode being for displaying the image information using the backlight unit and a panel, the device comprising: a receiving unit configured to receive a first status message, wherein the first status message indicates that the panel is not operational; The receiving unit is further configured to receive a first image signal, the first image signal being used to display first image information; and a first control unit configured to display the first image information in the first display mode based on the first status message; An apparatus comprising: [Item 13] The apparatus further comprises: a transmitting unit configured to transmit the first status message to a second control unit before the receiving unit receives the first image signal; Equipped with the receiving unit is particularly configured to receive the first image signal generated by the second control unit based on the first status message; Item 13. The device according to item 12. [Item 14] The receiving unit is further configured to receive a second status message, the second status message indicating that the panel is operating; the receiving unit is further configured to receive a second image signal, the second image signal being used to display second image information; and the first control unit is further configured to switch from the first display mode to the second display mode based on the second status information, and to display the second image information in the second display mode. Item 14. The device according to item 12 or 13. [Item 15] 15. The device of any one of items 12 to 14, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a driver chip failure of the display, information indicating a connector or line failure of the display, or information indicating that the battery level is lower than or equal to a predetermined power level. [Item 16] 15. The device of any one of items 12 to 14, wherein the first status message includes a first user command, the first user command instructing switching to the first display mode. [Item 17] 17. The apparatus of any one of items 12 to 16, wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information. [Item 18] A display control device, a receiving unit configured to receive a first status message, wherein the first status message indicates that the panel is not operational; and a transmitting unit configured to transmit a first image signal and first instruction information to a display based on the first status message, wherein the first image signal is used to display first image information, and the first instruction information instructs the display to display the first image information in a first display mode, the first display mode being to perform display using a backlight unit; An apparatus comprising: [Item 19] The apparatus further comprises: a generating unit configured to generate the first image signal based on the first status message before the transmitting unit transmits the first image signal to the display; Item 19. The device according to item 18, comprising: [Item 20] the receiving unit is further configured to receive a second status message, the second status message indicating that the panel is operating; and the transmitting unit is further configured to transmit a second image signal and second instruction information to the display based on the second status message, the second instruction information instructing the display to switch from the first display mode to a second display mode, the second display mode being to display the image information using the backlight unit and the panel. 20. The device according to item 18 or 19. [Item 21] 21. The device of any one of items 18 to 20, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a driver chip failure of the display, information indicating a connector or line failure of the display, or information indicating that the battery level is lower than or equal to a predetermined power level. [Item 22] 21. The device of any one of items 18 to 20, wherein the first status message includes a first user command, the first user command instructing switching to the first display mode. [Item 23] a backlight unit, a panel, and a first control unit; a first display mode and a second display mode are implemented using the first control unit; and The first display mode is for displaying image information using the backlight unit, and the second display mode is for displaying the image information using the backlight unit and the panel. display. [Item 24] 12. A computer-readable storage medium storing program code that, when executed on a computer, causes the computer to perform the method according to any one of items 1 to 11. [Item 25] A terminal device, the terminal device comprising an apparatus according to any one of items 12 to 22, or the terminal device comprising a display according to item 23. [Item 26] Item 26. The terminal device according to item 25, wherein the terminal device is a vehicle. [Item 27] A chip comprising a processor and a data interface, wherein the processor uses the data interface to read instructions stored in a memory to perform the method of any one of items 1 to 6. [Item 28] A chip comprising a processor and a data interface, wherein the processor uses the data interface to read instructions stored in a memory to perform the method of any one of items 7 to 11.

Claims

1. A display control method applied to a display, the display including a backlight unit, a panel, and a first control unit, the display having a first display mode and a second display mode, the first display mode being for displaying image information using the backlight unit, and the second display mode being for displaying the image information using the backlight unit and the panel, the display control method comprising: receiving a first status message by the first control unit, wherein the first status message indicates that the panel is not operational; the first control unit transmitting the first status message to a second control unit; the first control unit receiving a first image signal from the second control unit, wherein the first image signal is generated by the second control unit in response to the second control unit receiving the first status message based on a CAN signal received by the second control unit, and the first image signal is used to display first image information; and the first control unit displays the first image information in the first display mode. A display control method comprising:

2. A display control method as described in claim 1, wherein the CAN signal includes operating status information.

3. A display control method as described in claim 1 or 2, wherein the first control unit receives first instruction information from the second control unit together with the first image signal, and the first instruction information instructs the first image information to be displayed in the first display mode.

4. The display control method further comprises: receiving a second status message by the first control unit, wherein the second status message indicates that the panel is operational; the first control unit receiving a second image signal from the second control unit, wherein the second image signal is used to display second image information; and switching from the first display mode to the second display mode based on the second status message and displaying the second image information in the second display mode; The display control method according to claim 1 , comprising:

5. 5. A display control method according to claim 1, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a driver chip failure of the display, information indicating a connector or line failure of the display, or information indicating that the battery level is lower than or equal to a predetermined power level.

6. The display control method according to claim 1 , wherein the first status message includes a first user command, and the first user command instructs switching to the first display mode.

7. A display control method applied to a display, the display including a backlight unit, a panel, and a first control unit, the display having a first display mode and a second display mode, the first display mode being for displaying image information using the backlight unit, and the second display mode being for displaying the image information using the backlight unit and the panel, the display control method comprising: receiving a first status message by the first control unit, wherein the first status message indicates that the panel is not operational; receiving a first image signal, wherein the first image signal is used to display first image information; and displaying the first image information in the first display mode based on the first status message; Equipped with A display control method, wherein the first status message includes a first user command, the first user command instructing switching to the first display mode.

8. The display control method according to claim 1 , wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

9. A display control method applied to a display, the display including a backlight unit, a panel, and a first control unit, the display having a first display mode and a second display mode, the first display mode being for displaying image information using the backlight unit, and the second display mode being for displaying the image information using the backlight unit and the panel, the display control method comprising: receiving a first status message by the first control unit, wherein the first status message indicates that the panel is not operational; receiving a first image signal, wherein the first image signal is used to display first image information; and displaying the first image information in the first display mode based on the first status message; Equipped with The display control method, wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

10. A display control device, wherein a first display mode and a second display mode are implemented using the display control device, the first display mode is for performing display using a backlight unit, and the second display mode is for displaying image information using the backlight unit and a panel, the display control device comprising: a receiving unit configured to receive a first status message, wherein the first status message indicates that the panel is not operational; a transmitting unit configured to transmit the first status message to a second control unit; the receiving unit is further configured to receive, in response to the second control unit receiving the first status message, a first image signal generated by the second control unit based on the CAN signal received by the second control unit, the first image signal being used to display first image information; and a first control unit configured to display the first image information in the first display mode; The display control device further comprises:

11. the receiving unit is further configured to receive a second status message, the second status message indicating that the panel is operating; the receiving unit is further configured to receive a second image signal from the second control unit, the second image signal being used to display second image information; and the first control unit is further configured to switch from the first display mode to the second display mode based on the second status message, and to display the second image information in the second display mode. The display control device according to claim 10.

12. 12. The display control device of claim 10 or 11, wherein the first status message includes one or more types of information indicating a panel failure, information indicating a display driver chip failure, information indicating a connector or line failure of the display, or information indicating a battery level lower than or equal to a predetermined power level.

13. The display control device according to claim 10 , wherein the first status message includes a first user command, and the first user command instructs switching to the first display mode.

14. A display control device, wherein a first display mode and a second display mode are implemented using the display control device, the first display mode is for performing display using a backlight unit, and the second display mode is for displaying image information using the backlight unit and a panel, and the display control device: a receiving unit configured to receive a first status message, wherein the first status message indicates that the panel is not operational; The receiving unit is further configured to receive a first image signal, the first image signal being used to display first image information; and a first control unit configured to display the first image information in the first display mode based on the first status message; Equipped with The first status message includes a first user command, the first user command instructing a switch to the first display mode.

15. 15. The display control device of claim 10, wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

16. A display control device, wherein a first display mode and a second display mode are implemented using the display control device, the first display mode is for performing display using a backlight unit, and the second display mode is for displaying image information using the backlight unit and a panel, and the display control device: a receiving unit configured to receive a first status message, wherein the first status message indicates that the panel is not operational; The receiving unit is further configured to receive a first image signal, the first image signal being used to display first image information; and a first control unit configured to display the first image information in the first display mode based on the first status message; Equipped with The display control device, wherein the first image information includes one or more types of vehicle speed information, gear information, or steering light information.

17. A computer program for causing a computer to execute the display control method according to any one of claims 1 to 9.

18. A chip comprising a processor and a data interface, the processor using the data interface to read instructions stored in a memory to execute the display control method of any one of claims 1 to 9.

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