Ambient Light Control Method, Medium, Controller and Vehicle

By obtaining the meteorological information of the vehicle environment and other trigger conditions, the control atmosphere light presents a rainbow light effect, solving the problem of single ambient light design in the existing technology, and achieving a vivid visual experience and personalized control under external light intensity.

CN118338501BActive Publication Date: 2025-07-22BYD CO LTD
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Patent Information

Application Number
CN202410737196.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-07-22
Estimated Expiration
2044-06-07

AI Technical Summary

Technical Problem

At this stage, the interior ambient light design is relatively simple and inconvenient to control, especially in the condition of strong external light, which cannot provide a clear visual experience.

Method used

By obtaining the meteorological information of the vehicle's environment, the control atmosphere lights show a rainbow light effect when meeting the target conditions, and combine time, rainfall, audio signals and other triggering conditions to achieve the linkage between the atmosphere lights and meteorological information.

Benefits of technology

Provide a distinct visual experience under strong external light conditions, enhance passengers' natural perception experience, enhance driving pleasure, and provide personalized atmosphere control choices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure relates to an ambient light control method, medium, controller and vehicle. The method includes: obtaining meteorological information of the environment where the vehicle is located; in response to detecting that the meteorological information meets a target condition, controlling the ambient light to work in a preset mode, wherein the preset mode is used to make the ambient light present a rainbow light effect. In this way, even under the condition of strong external light (for example, during the day), a distinct visual experience can be provided, and the ambient light can be linked with the meteorological information, giving passengers a feeling of approaching nature, enhancing the driving pleasure of the vehicle, and at the same time, it can also be used to set off the atmosphere, create surprises, give warnings, etc., giving users more choices and experiences.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of vehicles, and in particular, to an ambient light control method, medium, controller, and vehicle. Background Art

[0002] With the development of science and technology and the improvement of people's living standards, the interior design of vehicles pays more and more attention to a sense of technology and comfort, and among them, the design of ambient light is particularly important. At present, the lighting effects of in-vehicle ambient lights such as sky curtain ambient lights and starry sky roof ambient lights are relatively single, and the control is relatively inconvenient. Summary of the Invention

[0003] The purpose of the present disclosure is to provide an ambient light control method, medium, controller, and vehicle.

[0004] To achieve the above purpose, in a first aspect, the present disclosure provides an ambient light control method, including:

[0005] Obtain meteorological information of the environment where the vehicle is located;

[0006] In response to detecting that the meteorological information meets a target condition, control the ambient light to work according to a preset mode, where the preset mode is used to make the ambient light present a rainbow lighting effect.

[0007] Optionally, the meteorological information includes rainfall, and the method further includes:

[0008] If it is detected that the rainfall becomes zero, it is determined that the target condition is met.

[0009] Optionally, the meteorological information includes rainfall, and the method further includes:

[0010] If it is detected that the rainfall becomes zero, determine a target rainfall intensity according to the total rainfall within a first preset duration before the target moment, where the target moment is the moment when it is detected that the rainfall becomes zero;

[0011] If the target rainfall intensity reaches a target intensity, it is determined that the target condition is met.

[0012] Optionally, before the step of obtaining meteorological information of the environment where the vehicle is located, the method further includes:

[0013] Obtain the current date and the current time;

[0014] If the current date is within a target date range and the current time is within a target time period, execute the step of obtaining meteorological information of the environment where the vehicle is located.

[0015] Optionally, the target time period is the daytime period.

[0016] Optionally, controlling the ambient light to work in a preset mode in response to detecting that the meteorological information meets a target condition includes:

[0017] After a second preset duration of detecting that the meteorological information meets the target condition, controlling the ambient light to work in a preset mode.

[0018] Optionally, the method further includes:

[0019] In response to detecting an audio signal, converting the audio signal into a rhythm signal of the ambient light, where the audio signal is a music signal or a singing signal;

[0020] Controlling the color and brightness of the ambient light according to the rhythm signal.

[0021] Optionally, the method further includes:

[0022] After controlling the ambient light to work in the preset mode for a third preset duration, controlling the ambient light to turn off.

[0023] Optionally, the method further includes:

[0024] If any of the following conditions is met, controlling the ambient light to work in the preset mode:

[0025] The number of times of detecting laughter reaches a preset number within a fourth preset duration;

[0026] Detecting that the vehicle is traveling at a constant speed and the duration reaches a fifth preset duration;

[0027] Receiving a control instruction for instructing the ambient light to present a rainbow light effect;

[0028] Detecting a singing signal;

[0029] Detecting a music signal and the music type to which the music signal belongs is a preset type.

[0030] In a second aspect, the present disclosure provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, the steps of the ambient light control method provided in the first aspect of the present disclosure are implemented.

[0031] In a third aspect, the present disclosure provides a controller, including:

[0032] A first memory, on which a computer program is stored;

[0033] A first processor, configured to execute the computer program in the first memory to implement the steps of the ambient light control method provided in the first aspect of the present disclosure.

[0034] Fourth aspect, the present disclosure provides a vehicle, comprising:

[0035] at least one ambient light; and

[0036] the controller provided in the third aspect of the present disclosure.

[0037] In the above technical solution, when the meteorological information of the environment where the vehicle is located meets the target conditions, the ambient light is controlled to work according to a preset mode, so that the ambient light presents a rainbow light effect. In this way, even under the condition of strong external light (for example, during the day), a distinct visual experience can be provided, and the ambient light can be linked with the meteorological information, giving passengers a feeling of approaching nature, enhancing the driving pleasure of the vehicle, and at the same time, it can also be used to set off the atmosphere, create surprises, remind and warn, etc., giving users more choices and experiences.

[0038] Other features and advantages of the present disclosure will be described in detail in the subsequent specific implementation part. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] The drawings are used to provide a further understanding of the present disclosure and constitute a part of the specification, and are used to explain the present disclosure together with the following specific implementation manners, but do not constitute a limitation to the present disclosure. In the drawings:

[0040] Figure 1 is a flowchart of a method for controlling an ambient light according to an exemplary embodiment.

[0041] Figure 2 is a flowchart of a method for controlling an ambient light according to another exemplary embodiment.

[0042] Figure 3 is a flowchart of a method for controlling an ambient light according to still another exemplary embodiment.

[0043] Figure 4 is a block diagram of a device for controlling an ambient light according to an exemplary embodiment.

[0044] Figure 5 is a block diagram of a vehicle according to an exemplary embodiment. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0045] The following will describe in detail the specific implementation manners of the present disclosure with reference to the drawings. It should be understood that the specific implementation manners described herein are only for explaining and understanding the present disclosure, and are not used to limit the present disclosure.

[0046] Figure 1 is a flowchart of a method for controlling an ambient light according to an exemplary embodiment. As Figure 1 shown, the method may include S101 and S102.

[0047] In S101, obtain the meteorological information of the environment where the vehicle is located.

[0048] In the present disclosure, the meteorological information may include real-time weather information (e.g., whether it is raining), rainfall and other information. The vehicle can obtain meteorological information through the weather application of the vehicle networking, or can obtain meteorological information through in-vehicle sensors. For example, the rainfall can be obtained through an in-vehicle rainfall sensor.

[0049] In S102, in response to detecting that the meteorological information meets the target conditions, control the ambient light to work according to a preset mode.

[0050] In the present disclosure, the ambient light may be, for example, a sky curtain ambient light, a starry sky roof ambient light, a sunroof ambient light, a window ambient light, a door ambient light, a rear windshield ambient light, etc.

[0051] The preset mode is used to make the ambient light present a rainbow light effect. When the meteorological information meets the target conditions, the ambient light can be controlled to enter the preset mode to simulate the generation conditions of a rainbow under natural environmental conditions and present a colorful rainbow light effect.

[0052] In one implementation, through the selection of the optical refraction phenomenon, white light is scattered into a colorful light band due to wavelength differences when passing through a prism, and this principle is used to simulate the natural phenomenon of a rainbow. Moreover, the light effect can be enhanced through polarized light to improve the visual experience.

[0053] When the ambient light is a sky curtain ambient light, a rainbow pattern can also be achieved through different color plate combinations or a translucent display screen.

[0054] In the above technical solution, when the meteorological information of the environment where the vehicle is located meets the target conditions, control the ambient light to work according to a preset mode so that the ambient light presents a rainbow light effect. In this way, even under the condition of strong external light (e.g., during the day), a distinct visual experience can be provided. Moreover, the linkage between the ambient light and the meteorological information can be realized, giving passengers a feeling of being close to nature, enhancing the driving pleasure of the vehicle, and at the same time, it can also be used to set off the atmosphere, create surprises, give warnings, etc., providing users with more choices and experiences.

[0055] In the natural environment, a rainbow usually appears after rain. The present disclosure can determine whether the target conditions are met through the rainfall to simulate the generation conditions of a rainbow under natural environmental conditions, that is, the above meteorological information may include rainfall. Specifically, there are various implementation manners to determine whether the meteorological information meets the target conditions. In one implementation manner, if it is detected that the rainfall becomes zero, it is determined that the meteorological information meets the target conditions.

[0056] In the present disclosure, a vehicle can determine whether the rainfall becomes zero through a weather application. Specifically, when a rain stop signal is obtained through the weather application of the vehicle network, it is determined that the rainfall becomes zero. At this time, it can be determined that the meteorological information meets the target conditions.

[0057] The vehicle can also determine whether the rainfall becomes zero by means of an in-vehicle rainfall sensor. Specifically, when the rainfall collected by the in-vehicle rainfall sensor is greater than a preset rainfall threshold, it is determined that it is raining. After that, it continuously monitors whether the rainfall collected by the in-vehicle rainfall sensor is zero. If it is monitored that the rainfall becomes zero, it is determined that the meteorological information meets the target conditions.

[0058] In another implementation manner, a rainbow usually appears after a heavy rain or a downpour. Therefore, in order to improve the accuracy of the target conditions and avoid mis-triggering the rainbow light effect, it is possible to determine whether the meteorological information meets the target conditions in combination with the rainfall intensity. Specifically, if it is detected that the rainfall becomes zero, then according to the total rainfall within the first preset duration (for example, 10 minutes) before the target moment, the target rainfall intensity is determined; if the target rainfall intensity reaches the target intensity, it is determined that the meteorological information meets the target conditions.

[0059] In the present disclosure, the target moment can be the moment when it is detected that the rainfall becomes zero. In addition, the in-vehicle rainfall sensor can be used to collect the rainfall in real time, and according to the rainfall collected in real time, the total rainfall within the first preset duration before the target moment is determined; afterwards, according to the corresponding relationship between the rainfall interval and the reference rainfall intensity pre-constructed, the reference rainfall intensity corresponding to the rainfall interval to which the above total rainfall belongs is determined as the target rainfall intensity. Among them, the above target intensity can be a value set by the user or a default empirical value, and the present disclosure does not make specific limitations.

[0060] The following will specifically describe the implementation manner of controlling the atmosphere light to work according to a preset mode in response to detecting that the meteorological information meets the target conditions in S102 above. Specifically, it can be implemented through various implementation manners. In one implementation manner, when it is detected that the meteorological information meets the target conditions, a corresponding control instruction can be immediately sent to the atmosphere light to control the atmosphere light to work according to a preset mode.

[0061] In another implementation manner, after the second preset duration from the detection that the meteorological information meets the target conditions, the atmosphere light is controlled to work according to a preset mode, that is, when it is detected that the meteorological information meets the target conditions, after waiting for the second preset duration, a corresponding control instruction is sent to the atmosphere light to control the atmosphere light to work according to a preset mode. In this way, not only can the stability of the meteorological conditions be ensured (it may rain later), but also a sense of anticipation can be given to the passengers.

[0062] Rainbows occur more frequently during fixed periods in summer and autumn of a year (e.g., during the day). Therefore, in order to more realistically simulate the conditions for rainbow formation under natural environmental conditions, time information (i.e., the current date and current time) can be incorporated. Specifically, as Figure 2 shown, before the above S101, the above method may further include the following S103 - S105.

[0063] In S103, obtain the current date and current time.

[0064] In the present disclosure, a vehicle can obtain the current date and current time through means such as a built - in clock, a Network Time Protocol (NTP) server, a terminal communicatively connected thereto, etc.

[0065] In S104, determine whether the current date is within the target date range.

[0066] If the current date is within the target date range (e.g., from May 1st to September 30th), then execute the following S105; if the current date is not within the target date range, there is no need to obtain meteorological information anymore, and at this time, the method process can be ended.

[0067] In S105, determine whether the current time is within the target time period.

[0068] If the current time is within the target time period (e.g., from 05:30 to 17:30), then execute the above S101, that is, when the current date is within the target date range and the current time is within the target time period, obtain the meteorological information of the environment where the vehicle is located to determine whether the target conditions are met according to the meteorological information. If the current time is not within the target time period, it can continuously monitor whether the current time period is within the target time period, that is, return to S105.

[0069] Among them, both the above - mentioned target date range and target time period can be values set by the user or default empirical values, and the present disclosure does not make specific limitations.

[0070] Since rainbows usually appear after rain during the day, the above - mentioned target time period can be the daytime period. In this way, the above - mentioned ambient light can be applicable to scenes with strong light such as during the day. Among them, the daytime period can be determined according to the sunrise time and sunset time of the day. By way of example, the daytime period is the period between the current sunrise time and sunset time.

[0071] When the current date is within the target date range and the current time is within the target time period, a request message for asking whether to turn on the ambient light can be sent to the user first. After receiving the instruction message indicating to turn on the ambient light from the user, the step of obtaining the meteorological information of the environment where the vehicle is located is executed. In this way, the sense of participation and control of the user can be increased, and whether to turn on the ambient light is determined according to the instruction of the user, which reflects the respect for the personalized needs of the user and the personalization of the service.

[0072] In addition to meteorological conditions, other possible triggering conditions can also be used to trigger the ambient light to present a rainbow light effect, such as detecting laughter, the vehicle driving smoothly, receiving a control instruction, detecting a passenger singing, or music playing inside and outside the vehicle, etc. These conditions make the control of the ambient light more diversified and personalized, enabling the ambient light to be intelligently adjusted according to different situations and the preferences of passengers, and providing a more comfortable and personalized driving experience for passengers. Specifically, the above method may further include the following steps:

[0073] If any of the following conditions is satisfied, the ambient light is controlled to work according to a preset mode:

[0074] The number of times of detecting laughter within the fourth preset duration reaches the preset number of times;

[0075] It is detected that the vehicle is driving at a constant speed and the continuous duration reaches the fifth preset duration;

[0076] A control instruction for instructing the ambient light to present a rainbow light effect is received;

[0077] A singing signal is detected;

[0078] A music signal is detected and the music type to which the music signal belongs is the preset type.

[0079] In a possible implementation manner, the laughter of the passenger can be collected and recognized by a voice sensor arranged in the vehicle. When the number of times of detecting laughter within the fourth preset duration reaches the preset number of times (for example, 3 times), the ambient light can be automatically triggered to present a rainbow light effect, creating a pleasant or gorgeous atmosphere inside the vehicle.

[0080] In a possible implementation manner, when it is detected that the vehicle is driving at a constant speed and the continuous duration reaches the fifth preset duration (for example, 5 minutes), the ambient light can be triggered to present a rainbow light effect. Specifically, when the driver has a smooth journey with all green lights on the urban road and hardly needs to step on the brakes, or when the vehicle is on the usual familiar commuting route and arrives earlier than usual, the ambient light can be automatically triggered to present a rainbow light effect. First, it can reduce the fatigue of the driver during long-time driving. Second, it can also serve as an incentive mechanism, a feedback for the smooth driving of the vehicle and the smooth comfort of the people inside the vehicle. Third, it can remind the driver of the driving time in this state for the hint of the next operation.

[0081] In a possible implementation, the user can also actively trigger a control instruction for indicating that the ambient light presents a rainbow light effect. For example, the control instruction can be triggered through voice, gestures, a terminal communicating with the vehicle, an in-vehicle display device (such as an in-vehicle display screen), etc. In this way, the user can control the in-vehicle ambient light according to their own preferences and needs, enhancing the driving and riding experience.

[0082] Exemplarily, the user can trigger the above control instruction through specific gestures, such as spreading out five fingers, making a fist, a peace sign, etc.

[0083] In a possible implementation, when a singing signal is detected, it indicates that there is a passenger singing in the vehicle. At this time, the ambient light can also be automatically triggered to present a rainbow light effect, which can create a dynamic light effect matching the singing activity, provide a more pleasant and immersive entertainment environment for the passengers, and also enhance the interaction experience between the passengers and the vehicle.

[0084] In a possible implementation, when a music signal is detected and the music type to which the music signal belongs is a preset type, such as light music, classical music, country music, etc., which are music close to nature, the ambient light can be automatically triggered to present a rainbow light effect. Among them, a pre-trained classification model can be used to identify the music type to which the music signal belongs.

[0085] The combination of the rainbow light effect and the natural music type can create a relaxed and pleasant atmosphere, making the passengers feel as if they are in nature. In addition, the synchronous change of music and light can enhance the emotional experience of the passengers, making them more immersed in the music and the atmosphere.

[0086] In order to provide a more immersive experience for the passengers, the parameters such as the color and brightness of the ambient light can be controlled to change dynamically with the rhythm of the music. As the music progresses, the change of the ambient light can echo the rhythm and emotion of the music, enhancing the emotional experience of the passengers. Specifically, the above method can also include the following two steps:

[0087] In response to detecting an audio signal, convert the audio signal into a rhythm signal of the ambient light; wherein, the audio signal is a music signal or a singing signal;

[0088] Control the color and brightness of the ambient light according to the rhythm signal.

[0089] In the present disclosure, an audio processing module can be used to process an audio signal to convert it into a rhythm signal for an ambient light. The rhythm signal of the ambient light can include the color and brightness signals of the ambient light, and the rhythm signal is sent to the ambient light. The ambient light can achieve different color and brightness effects according to the rhythm signal, so that the ambient light realizes the music rhythm function. At the same time, the ambient light can also enable passengers to have the function of editing and selecting to trigger the musical rhythm by themselves. Each passenger is their own music master. At the same time, the ambient light can be linked with the interior ambient light to provide the highest-level enjoyment.

[0090] In addition, after the ambient light works in a preset mode for a certain period of time (the third preset duration), the ambient light can be controlled to turn off to avoid energy waste caused by the long-term operation of the ambient light or the aesthetic fatigue of passengers. Specifically, as Figure 3 shown, the above method may further include the following S106:

[0091] In S106, after controlling the ambient light to work in a preset mode for the third preset duration, the ambient light is controlled to turn off.

[0092] Figure 4 is a block diagram of an ambient light control device shown according to an exemplary embodiment. As Figure 4 shown, the ambient light control device 300 includes:

[0093] A first acquisition module 301, configured to acquire meteorological information of the environment where the vehicle is located;

[0094] A control module 302, configured to control the ambient light to work in a preset mode in response to detecting that the meteorological information meets a target condition, where the preset mode is used to make the ambient light present a rainbow light effect.

[0095] In the above technical solution, when the meteorological information of the environment where the vehicle is located meets the target condition, the ambient light is controlled to work in a preset mode so that the ambient light presents a rainbow light effect. In this way, even under the condition of strong external light (for example, during the day), a distinct visual experience can be provided, and the ambient light can be linked with the meteorological information to give passengers a feeling of approaching nature, enhance the driving pleasure of the vehicle, and can also be used to set off the atmosphere, create surprises, remind and warn, etc., giving users more choices and experiences.

[0096] Optionally, the meteorological information includes rainfall, and the ambient light control device 300 further includes:

[0097] A first determination module, configured to determine that the target condition is met if it is detected that the rainfall becomes zero.

[0098] Optionally, the meteorological information includes rainfall, and the ambient light control device 300 further includes:

[0099] A second determination module, configured to, if it is detected that the rainfall becomes zero, determine a target rainfall intensity according to the total rainfall within a first preset duration before the target moment, where the target moment is the moment when it is detected that the rainfall becomes zero;

[0100] A third determination module, configured to determine that the target condition is satisfied if the target rainfall intensity reaches the target intensity.

[0101] Optionally, the atmosphere lamp control device 300 further includes:

[0102] A second acquisition module, configured to acquire the current date and the current time before the first acquisition module 301 acquires the meteorological information of the environment where the vehicle is located;

[0103] A triggering module, configured to trigger the first acquisition module 301 to acquire the meteorological information of the environment where the vehicle is located if the current date is within the target date range and the current time is within the target time period.

[0104] Optionally, the target time period is the daytime period.

[0105] Optionally, the control module 302 is configured to control the atmosphere lamp to work in a preset mode after a second preset duration when it is detected that the meteorological information satisfies the target condition.

[0106] Optionally, the atmosphere lamp control device 300 further includes:

[0107] A conversion module, configured to convert the audio signal into a rhythm signal of the atmosphere lamp in response to detecting the audio signal, where the audio signal is a music signal or a singing signal;

[0108] The control module 302 is further configured to control the color and brightness of the atmosphere lamp according to the rhythm signal.

[0109] Optionally, the control module 302 is further configured to control the atmosphere lamp to turn off after a third preset duration when controlling the atmosphere lamp to work in the preset mode.

[0110] Optionally, the control module 302 is further configured to control the atmosphere lamp to work in the preset mode if any of the following conditions is satisfied:

[0111] The number of times of detecting laughter reaches a preset number within a fourth preset duration;

[0112] It is detected that the vehicle is traveling at a constant speed and the duration reaches a fifth preset duration;

[0113] A control instruction for instructing the atmosphere lamp to present a rainbow lamp effect is received;

[0114] A singing signal is detected;

[0115] A music signal is detected, and the music type to which the music signal belongs is a preset type.

[0116] Regarding the ambient light control device in the above embodiments, the specific manners in which each module performs operations have been described in detail in the embodiments related to the method, and will not be elaborated here.

[0117] The present disclosure also provides a computer-readable storage medium, on which computer program instructions are stored, and when the program instructions are executed by a processor, the steps of the ambient light control method described in any embodiment of the present disclosure are implemented.

[0118] The present disclosure also provides a controller, including:

[0119] A first memory, on which a computer program is stored;

[0120] A first processor, configured to execute the computer program in the first memory to implement the steps of the ambient light control method described in any embodiment of the present disclosure.

[0121] The present disclosure also provides a vehicle, including at least one ambient light and the controller described in any embodiment of the present disclosure.

[0122] The present disclosure also provides a computer program product, including a computer program, and when the computer program is executed by a processor, the steps of the ambient light control method described in any embodiment of the present disclosure are implemented.

[0123] Figure 5 It is a block diagram of a vehicle 600 shown according to an exemplary embodiment. For example, the vehicle 600 can be a hybrid vehicle, or a non-hybrid vehicle, an electric vehicle, a fuel cell vehicle, or other types of vehicles. The vehicle 600 can be an autonomous vehicle, a semi-autonomous vehicle, or a non-autonomous vehicle.

[0124] Referring to Figure 5 , the vehicle 600 may include various subsystems. For example, an infotainment system 610, a perception system 620, a decision control system 630, a drive system 640, and a computing platform 650. Among them, the vehicle 600 may further include more or fewer subsystems, and each subsystem may include multiple components. In addition, each subsystem and each component of the vehicle 600 can be interconnected in a wired or wireless manner.

[0125] In some embodiments, the infotainment system 610 may include a communication system, an entertainment system, a navigation system, etc.

[0126] The perception system 620 may include several types of sensors for sensing information about the environment around the vehicle 600. For example, the perception system 620 may include a global positioning system (the global positioning system may be a GPS system, a Beidou system, or other positioning systems), an inertial measurement unit (IMU), lidar, millimeter-wave radar, ultrasonic radar, and a camera device.

[0127] The decision-making and control system 630 may include a computing system, a vehicle controller, a steering system, an accelerator, and a braking system.

[0128] The drive system 640 may include components that provide powered movement for the vehicle 600. In one embodiment, the drive system 640 may include an engine, an energy source, a powertrain, and wheels. The engine may be one or a combination of an internal combustion engine, an electric motor, and an air compression engine. The engine is capable of converting the energy provided by the energy source into mechanical energy.

[0129] Some or all functions of the vehicle 600 are controlled by the computing platform 650. The computing platform 650 may include at least one second processor 651 and a second memory 652. The second processor 651 may execute instructions 653 stored in the second memory 652.

[0130] The second processor 651 may be any conventional processor, such as a commercially available CPU. The processor may also include, for example, a Graphic Process Unit (GPU), a Field Programmable Gate Array (FPGA), a System on Chip (SOC), an Application Specific Integrated Circuit (ASIC), or a combination thereof.

[0131] The second memory 652 may be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, a magnetic disk, or an optical disk.

[0132] In addition to the instructions 653, the second memory 652 may also store data, such as road maps, route information, data on the position, direction, speed, etc. of the vehicle. The data stored in the second memory 652 can be used by the computing platform 650.

[0133] In an embodiment of the present disclosure, the second processor 651 may execute instructions 653 to complete all or part of the steps of the above-described ambient light control method.

[0134] The preferred embodiments of the present disclosure have been described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the protection scope of the present disclosure.

[0135] In addition, it should be noted that, among the various specific technical features described in the above specific embodiments, they can be combined in any suitable manner without conflict. To avoid unnecessary repetition, the present disclosure does not separately describe various possible combination methods.

[0136] Furthermore, any combination can be made among various different embodiments of the present disclosure, as long as it does not violate the idea of the present disclosure, and it should also be regarded as the content disclosed by the present disclosure.

Claims

1. A method for controlling an ambient light, characterized in that, Including: Obtain the current date and current time; If the current date is within the target date range and the current time is within the target time period, obtain the meteorological information of the environment where the vehicle is located; After detecting that the meteorological information satisfies the target condition for a second preset duration, control the ambient light to work in a preset mode, where the preset mode is used to make the ambient light present a colorful rainbow light effect, and the ambient light simulates a colorful rainbow based on a prism and an optical refraction phenomenon; Wherein, the meteorological information includes rainfall, and the method further includes: If it is detected that the rainfall becomes zero, it is determined that the target condition is satisfied; or If it is detected that the rainfall becomes zero, determine the target rainfall intensity according to the total rainfall within the first preset duration before the target moment, where the target moment is the moment when it is detected that the rainfall becomes zero; if the target rainfall intensity reaches the target intensity, it is determined that the target condition is satisfied.

2. The atmosphere lamp control method according to claim 1, characterized in that, The target time period is the daytime period.

3. The ambient light control method according to claim 1 or 2, characterized in that, The method further includes: In response to detecting an audio signal, convert the audio signal into a rhythm signal of the ambient light, where the audio signal is a music signal or a singing signal; Control the color and brightness of the ambient light according to the rhythm signal.

4. The ambient light control method according to claim 1 or 2, characterized in that, The method further includes: After controlling the ambient light to work in the preset mode for a third preset duration, control the ambient light to turn off.

5. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1-4.

6. A controller, characterized in that, Including: A first memory, on which a computer program is stored; A first processor, configured to execute the computer program in the first memory to implement the steps of the method according to any one of claims 1-4.

7. A vehicle, characterized in that, Including: At least one ambient light; And A controller according to claim 6.

Citation Information

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