A control method and device of an in-vehicle light, a vehicle, and a storage medium
By analyzing the trigger information and interface operations of the target object, a custom in-vehicle lighting control strategy is generated, which solves the problem that the lighting mode cannot be changed in the existing technology, realizes personalized lighting control, and improves the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-26
- Publication Date
- 2026-04-14
AI Technical Summary
The existing interior lighting modes cannot be changed, which cannot meet users' personalized needs and affects the riding experience.
By acquiring the trigger information of the target object, parsing the target lighting mode, and determining the correspondence between the lighting mode and the control strategy based on the target object's interface operation and voiceprint, a custom control strategy is generated to control the interior lights.
It enables control of the vehicle's interior lights based on user-defined lighting modes, meeting personalized needs and improving the passenger experience.
Smart Images

Figure CN116476733B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of vehicle technology, specifically to a method, device, vehicle, and storage medium for controlling interior lights. Background Technology
[0002] With the continuous development of automotive technology and the improvement of in-car entertainment equipment, intelligent cabin design in automobiles is gradually becoming a development trend. To enhance the user's riding experience, interior lights (such as ambient lighting) are often installed in the cabin to control their operation when needed. Currently, the control of interior lights often involves pre-designing lighting modes for different scenarios, controlling the lights to operate in the corresponding mode based on the scenario. However, because the lighting modes in the above-mentioned interior light control method cannot be changed, it cannot meet the personalized needs of users, resulting in a poor user riding experience. Summary of the Invention
[0003] One objective of this application is to provide a method for controlling in-vehicle lights to solve the problem that the lighting mode in the prior art cannot be changed, thus affecting the user's riding experience; another objective of this application is to provide a control device for in-vehicle lights; a third objective of this application is to provide a vehicle; and a fourth objective of this application is to provide a storage medium.
[0004] To achieve the above objectives, in a first aspect, this application provides a method for controlling interior lights, the method comprising:
[0005] Obtain the target trigger information of the target object for the vehicle interior light, and parse the target lighting mode corresponding to the vehicle interior light from the target trigger information;
[0006] A first control strategy corresponding to the target lighting mode is determined from the first association relationship; wherein, the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, and the correspondences are determined based on the trigger operation of the target object on the first interface, the first interface being used for configuring the lighting mode and the control strategy;
[0007] The interior lights are controlled according to the first control strategy.
[0008] Furthermore, the correspondence is determined in the following way:
[0009] The first interface is displayed; wherein, the first interface displays a plurality of first controls corresponding to the light mode;
[0010] When a trigger operation by the target object on the target first control in the first interface is detected, a second interface is displayed; wherein, the second interface displays a control strategy template corresponding to the target first control;
[0011] Obtain the target configuration information of the target object for the second interface;
[0012] Based on the target configuration information, the control strategy is generated to obtain the corresponding relationship.
[0013] Further, generating the control strategy based on the target configuration information to obtain the correspondence includes:
[0014] The control strategy is generated based on the target configuration information. The control strategy includes the usage scenario corresponding to the interior lights and the control information corresponding to the interior lights.
[0015] If it is determined that the usage scenario does not match the control information, the control information is processed according to the usage scenario to obtain the processed control information.
[0016] A third interface is generated based on the processed control information;
[0017] Upon receiving a confirmation message from the target object for the third interface, the processed control strategy is obtained.
[0018] The corresponding relationship is obtained based on the processed control strategy.
[0019] Furthermore, obtaining the target trigger information of the target object for the vehicle interior lights includes:
[0020] Obtain the target speech signal input by the target object;
[0021] The target triggering information of the target object for the vehicle interior light is obtained from the target voice signal;
[0022] The step of determining the first control strategy corresponding to the target lighting mode from the first association relationship includes:
[0023] The target voiceprint corresponding to the target object is obtained from the target speech signal;
[0024] Determine the first association relationship corresponding to the target voiceprint;
[0025] The first control strategy corresponding to the target lighting mode is determined from the first association relationship.
[0026] Furthermore, the first control strategy includes the target light brightness corresponding to the interior light and the target usage scenario corresponding to the interior light, wherein the target usage scenario is a vehicle driving scenario;
[0027] The step of controlling the interior lights according to the first control strategy includes:
[0028] Acquire first environmental information corresponding to the external environment of the vehicle; wherein, the interior lights are installed inside the vehicle;
[0029] If it is determined that the target usage scenario, the first environmental information, and the target light brightness do not match, the target light brightness is processed according to the first environmental information and the target usage scenario to obtain the processed target light brightness.
[0030] The interior lights are controlled based on the processed target light brightness.
[0031] Furthermore, the method also includes:
[0032] When the target lighting mode is not stored in the first association relationship and the target lighting mode is automatic mode, the second environmental information corresponding to the vehicle's external environment and the third environmental information corresponding to the vehicle's internal environment are obtained; wherein, the internal lights are installed inside the vehicle.
[0033] Based on the second environmental information and the third environmental information, the target control information corresponding to the vehicle interior lights is determined;
[0034] The interior lights are controlled according to the target control information.
[0035] Furthermore, the method also includes:
[0036] When the target light pattern is not stored in the first association relationship, a light pattern similar to the target light pattern is determined from the multiple light patterns stored in the first association relationship;
[0037] Generate target prompt information based on the light pattern similar to the target light pattern;
[0038] When a confirmation message is received from the target object regarding the target prompt information, a second control strategy corresponding to the light pattern that is similar to the target light pattern is determined from the first association relationship;
[0039] The interior lights are controlled according to the second control strategy.
[0040] To achieve the above objectives, in a second aspect, this application provides a control device for vehicle interior lights, the device comprising:
[0041] The acquisition module is used to acquire the target trigger information of the target object for the vehicle interior light, and parse the target lighting mode corresponding to the vehicle interior light from the target trigger information;
[0042] A determining module is used to determine a first control strategy corresponding to the target lighting mode from a first association relationship; wherein, the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, the correspondences are determined based on the trigger operation of the target object on a first interface, and the first interface is used for configuring the lighting mode and the control strategy;
[0043] The control module is used to control the interior lights according to the first control strategy.
[0044] To achieve the above objectives, in a third aspect, this application provides a vehicle, including: a processor and a memory, the processor being configured to execute a control program for interior lights stored in the memory to implement the interior light control method described above.
[0045] To achieve the above objectives, in a fourth aspect, this application provides a storage medium storing one or more programs that can be executed by one or more processors to implement the vehicle interior light control method described above.
[0046] The beneficial effects of this application are as follows: This application provides a method for controlling in-vehicle lights. By obtaining target trigger information of the target object for the in-vehicle lights, the target lighting mode corresponding to the door lights is parsed from the target trigger information. The first control vehicle corresponding to the target lighting mode is determined from the first association relationship. The first association relationship stores multiple sets of correspondences between lighting modes and control strategies. The correspondences are determined based on the target object's trigger operation on the first interface. The first interface is used for configuring lighting modes and control strategies. According to the first control strategy, the in-vehicle lights are controlled, thereby realizing the control of in-vehicle lights according to the target object's customized lighting mode, meeting the target object's personalized needs, and improving the target object's riding experience. Attached Figure Description
[0047] Figure 1 A flowchart illustrating a method for controlling an interior light provided in an embodiment of this application;
[0048] Figure 2 A flowchart illustrating another method for controlling interior lights provided in an embodiment of this application;
[0049] Figure 3 A flowchart illustrating yet another method for controlling interior lights provided in this application embodiment;
[0050] Figure 4 A schematic diagram of the structure of a vehicle interior light control device provided in an embodiment of this application;
[0051] Figure 5 A schematic diagram of the structure of a vehicle provided in an embodiment of this application;
[0052] In the attached diagrams above:
[0053] 10. Acquisition Module; 20. Determination Module; 30. Control Module;
[0054] 500. Vehicle; 501. Processor; 502. Memory; 5021. Operating system; 5022. Application program; 503. User interface; 504. Network interface; 505. Bus system. Detailed Implementation
[0055] The embodiments of this application will be described below with reference to the accompanying drawings and preferred embodiments. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be understood that the preferred embodiments are only for illustrating this application and are not intended to limit the scope of protection of this application.
[0056] To facilitate understanding of the embodiments of this application, the following will provide further explanation and description with reference to the accompanying drawings and specific embodiments. These embodiments do not constitute a limitation on the embodiments of this application.
[0057] refer to Figure 1 , Figure 1 This is a flowchart illustrating a method for controlling an interior light according to an embodiment of this application. The method includes the following steps:
[0058] S101: Obtain the target trigger information of the target object for the interior lights, and parse the target lighting mode corresponding to the interior lights from the target trigger information.
[0059] In this embodiment, the target object specifically refers to the driver and / or passengers inside the vehicle. The vehicle is equipped with interior lights to enhance the entertainment experience for the driver and passengers; these interior lights can specifically be ambient lights. When the target object needs the interior lights to operate, it can input target trigger information for the lights. In this embodiment, to ensure the driving safety of the driver, the target object can input the target trigger information for the interior lights through a voice acquisition device installed in the vehicle. Alternatively, the target object can input the target trigger information through a display device inside the vehicle. The method by which the target object inputs the target trigger information can be set according to actual needs, and is not limited in this embodiment.
[0060] Specifically, step S101 involves obtaining the target trigger information for the vehicle interior lights, including:
[0061] Acquire the target speech signal input by the target object;
[0062] The target trigger information of the target object for the vehicle interior lights is obtained from the target voice signal.
[0063] When the target object inputs target trigger information for the interior lights through the voice acquisition device installed in the vehicle, the target voice signal can be input in a fixed voice format. For example, the fixed voice format can be "Please use xx lighting mode". Of course, a fixed voice format can also be set according to actual needs, so that when the voice acquisition device collects the target object's target voice signal, it can obtain the target object's target trigger information for the interior lights from the target voice signal.
[0064] Before performing step S101, the vehicle interior light control method provided in this application embodiment further includes the following steps:
[0065] Determine whether a control command to control the interior lights has been received;
[0066] Upon receiving a control command to control the interior lights, step S101 is executed.
[0067] In this embodiment, when the target requires the interior lights to operate, a voice signal is first acquired using the vehicle's voice acquisition device. After acquiring the voice signal, it is recognized. If a preset keyword is present in the voice signal, a control command to control the interior lights is received. For example, the preset keyword could be "control the interior lights." Of course, preset keywords can also be set according to actual needs; this embodiment does not specifically limit the method of setting preset keywords.
[0068] S102: Determine the first control strategy corresponding to the target lighting mode from the first association relationship; wherein, the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, and the correspondences are determined based on the trigger operation of the target object on the first interface, and the first interface is used for configuring lighting modes and control strategies.
[0069] In this embodiment, to meet the user's personalized needs, the target object can configure lighting modes and control strategies based on the first interface to obtain multiple sets of correspondences between lighting modes and control strategies, thereby obtaining a first association relationship. This first association relationship is pre-stored. When a target lighting mode is obtained, the first association relationship is invoked to perform a query operation, thereby retrieving the first control strategy corresponding to the target lighting mode from the first association relationship. Since the lighting mode and its corresponding control strategy are customized by the target object, controlling the interior lights according to the first control strategy when the first control strategy corresponding to the target lighting mode is obtained can meet the target object's personalized control needs and improve the target object's riding experience.
[0070] Specifically, reference Figure 2 The correspondence between each lighting mode and control strategy can be determined in the following way:
[0071] S201: Display the first interface; the first interface displays multiple first controls corresponding to the lighting modes;
[0072] S202: When a trigger operation by the target object on the target first control in the first interface is detected, the second interface is displayed; wherein, the second interface displays the control strategy template corresponding to the target first control;
[0073] S203: Obtain the target configuration information of the target object for the second interface;
[0074] S204: Generate a control strategy based on the target configuration information to obtain the correspondence between the lighting mode and the control strategy.
[0075] The first control is pre-set; for example, it could be a KTV lighting mode, a soft lighting mode, etc. The lighting mode corresponding to the first control can be set according to actual needs, and this embodiment does not limit this. When the target object needs to customize a certain lighting mode, it can click or touch the target first control corresponding to that lighting mode based on the first interface. After clicking or touching the target first control, a second interface corresponding to that lighting mode can be displayed. The second interface displays the control strategy template corresponding to that lighting mode. The control strategy template can be determined based on the parameter information of the interior lights. The parameter information of the interior lights includes: interior light position information, interior light type information, interior light color information, interior light brightness information, and interior light operating mode information. The interior light brightness information can be represented by a brightness ratio, the interior light color information can be represented by a color spectrum, and the interior light operating modes include flashing, flowing, starlight, and none. The control strategy template also includes lighting mode information and usage scenario information. The usage scenario information can be understood as the scenario in which the interior lights are controlled; for example, the usage scenario information includes a stationary vehicle scenario and a moving vehicle scenario. The control strategy template in this embodiment can also be set according to actual needs. The specific content of the control strategy template is not limited in this embodiment.
[0076] Specifically, when the control strategy template corresponding to the target first control is displayed on the second interface, the target object can modify the lighting mode information, interior light parameter information, and usage scenario information in the control strategy template according to its own needs. After modifying the control strategy template, the target object's target configuration information for the second interface can be obtained. This target configuration information is actually the relevant modification information of the control strategy template corresponding to the target first control. After obtaining the target configuration information, a control strategy corresponding to the target first control can be generated, thus obtaining the correspondence between the lighting mode and the control strategy.
[0077] More specifically, in order to ensure that the control strategy for the target device is more reasonable, refer to Figure 3 Based on the target configuration information, a control strategy is generated to obtain the corresponding relationship, including:
[0078] S301: Generate a control strategy based on the target configuration information. The control strategy includes the usage scenario of the interior lights and the control information of the interior lights.
[0079] S302: If it is determined that the usage scenario and control information do not match, the control information is processed according to the usage scenario to obtain processed control information;
[0080] S303: Generate a third interface based on the processed control information;
[0081] S304: Upon receiving a confirmation message from the target object for the third interface, obtain the processed control strategy;
[0082] S305: Obtain the corresponding relationship based on the processed control strategy.
[0083] In this embodiment, when the target object sets the control strategy corresponding to the lighting mode, the control strategy set by the target object may be unreasonable due to the target object's subjective intention. While using this control strategy to control the interior lights may satisfy the target object's personalized needs, it will still affect the target object's riding experience. Therefore, after generating the control strategy, it is necessary to further evaluate the control strategy to ensure that the final generated control strategy will not affect the target object's riding experience. Thus, after generating the control strategy, it is determined whether the usage scenario in the control strategy matches the control information. If they match, no modification to the control strategy is needed. If they do not match, the control information needs to be processed according to the usage scenario to obtain processed control information. This processed control information is then displayed to the target object through a third interface. The third interface is essentially a prompt interface for modifying the control strategy, displaying a prompt message asking whether the control strategy should be modified to the following control strategy. When the target object confirms the modification of the control strategy, it clicks or touches the confirmation control in the third interface to obtain confirmation information from the target object regarding the third interface. Based on the prompts in the third interface, the control strategy is modified to obtain the modified control strategy. The lighting mode is then associated with the modified control strategy to establish a correspondence. When the target object clicks or touches the rejection control in the third interface, it indicates that the target object does not intend to modify the generated control strategy. The corresponding correspondence is then obtained using the generated control strategy.
[0084] The usage scenarios described above are as described in the previous embodiment and will not be repeated here. The control information includes: interior light operating mode, interior light color, interior light brightness, interior light position information, and interior light type. Multiple matching conditions can be set based on the control information and usage scenario. After generating the control strategy, it is determined whether the multiple matching conditions are met based on the usage scenario and control information in the control strategy. If no matching conditions are met, it indicates that the usage scenario and control information do not match; if all matching conditions are met, it indicates that the usage scenario and control information match. For example, the matching condition could be that when the vehicle is driving, the headlight brightness should be set below 30% and any interior light operating mode should be prohibited. If the generated control strategy's usage scenario is a vehicle driving scenario, the headlight brightness in the control information is 50%, and there is no interior light operating mode, then the generated control strategy does not meet the above matching conditions, meaning the usage scenario and the generated control strategy do not match.
[0085] In this embodiment, to better meet the personalized needs of the target object and improve their riding experience, the first association relationship can be determined based on voiceprint. Different first association relationships can be set based on different voiceprints, with the voiceprint serving as the object's identifier. Since the target trigger information is determined by acquiring the target's voice signal, step S102 specifically includes:
[0086] Obtain the target voiceprint corresponding to the target object from the target speech signal;
[0087] Determine the first association relationship corresponding to the target voiceprint;
[0088] The first control strategy corresponding to the target lighting mode is determined from the first association relationship.
[0089] After obtaining the target voiceprint, the first association relationship corresponding to the target voiceprint can be obtained based on the correspondence between the voiceprint and the first association relationship. Based on the determined first association relationship, the first control strategy corresponding to the target lighting mode can be determined.
[0090] By using the above methods, since different objects have different primary relationships, controlling the interior lights in a targeted manner for different objects can better meet the personalized needs of the target objects and improve their riding experience.
[0091] In this embodiment, after determining the first control strategy corresponding to the target lighting mode from the first association relationship, the following step S103 can be executed. If the first control strategy corresponding to the target lighting mode is not determined from the first association relationship and the target lighting mode is automatic, the following steps can be executed to control the interior lights, specifically as follows:
[0092] When no target lighting mode is stored in the first association relationship and the target lighting mode is automatic mode, the second environmental information corresponding to the vehicle's external environment and the third environmental information corresponding to the vehicle's internal environment are obtained; wherein, the interior lights are set inside the vehicle.
[0093] Based on the second and third environmental information, determine the target control information corresponding to the interior lights;
[0094] The interior lights are controlled based on the target control information.
[0095] The automatic mode can be understood as a mode other than the target object's custom lighting mode. When the target lighting mode is determined to be automatic mode, it is necessary to make a comprehensive judgment based on the relevant information of the external environment and the relevant information of the internal environment to determine the target control information corresponding to the interior lights. Based on the target control information, the interior lights are controlled.
[0096] Specifically, the second environmental information includes the vehicle's visibility while driving, and the third environmental information includes whether music is playing inside the vehicle. Multiple matching conditions can be preset, each corresponding to control information. After acquiring the second and third environmental information, matching conditions that meet the criteria can be determined, and corresponding target control information can be determined based on these matching conditions. This target control information is then used to control the vehicle's interior lights. The target control information can refer to the control information described above, and is not limited in this embodiment. For example, the matching condition could be that the vehicle's visibility is good or better and music is playing inside the vehicle. Of course, the second and third environmental information and matching conditions can also be set according to actual needs, and are not limited in this embodiment.
[0097] By means of the above, when the first control strategy corresponding to the target lighting mode is not determined from the first association relationship and the target lighting mode is automatic, the interior lights can be controlled by line of sight, which further meets the personalized needs of the target audience and improves the riding experience of the target audience.
[0098] In this embodiment, after determining the first control strategy corresponding to the target lighting mode from the first association relationship, the following step S103 can be executed. If the first control strategy corresponding to the target lighting mode is not determined from the first association relationship and the target lighting mode is not automatic, the following steps can be executed to control the interior lights, specifically as follows:
[0099] If the target light pattern is not stored in the first association relationship, a light pattern similar to the target light pattern is determined from the multiple light patterns stored in the first association relationship;
[0100] Generate target prompt information based on a light pattern similar to the target light pattern;
[0101] When a confirmation message from the target object for the target prompt information is obtained, a second control strategy corresponding to a light pattern similar to the target light pattern is determined from the first association relationship;
[0102] The interior lights are controlled according to the second control strategy.
[0103] In this case, the target voice signal input by the target user may be unclear, preventing the determination of the first control strategy corresponding to the target lighting mode from the first association relationship. Therefore, to further improve the user experience, the obtained target lighting mode is compared with multiple lighting modes stored in the first association relationship to determine the lighting mode most similar to the target lighting mode. The similarity calculation method can be based on existing technology and will not be elaborated here. After determining the most similar lighting mode, a target prompt message is generated based on the lighting mode. This target prompt message can be displayed in the form of an interface, indicating whether to control the interior lights to work in this lighting mode. When the target user triggers the confirmation control in the interface, a confirmation message for the target prompt message is obtained. After obtaining the confirmation message, the second control strategy corresponding to the lighting mode can be determined from the first association relationship, and the interior lights can be controlled using the second control strategy. When the target user triggers the rejection control in the interface, a rejection message for the target prompt message is obtained. At this time, the process can be restarted to re-acquire the target voice signal for the interior lights.
[0104] By means of the above, when the first control strategy corresponding to the target lighting mode is not determined from the first association relationship and the target lighting mode is not in automatic mode, a corresponding control scheme can be provided to the target object to avoid the target object not responding to the target voice signal for a long time, thereby further improving the target object's riding experience.
[0105] S103: Control the interior lights according to the first control strategy.
[0106] In this embodiment, after determining the first control strategy corresponding to the target lighting mode, the interior lights can be controlled according to the relevant content included in the first control strategy, so that the control of the interior lights meets the personalized needs of the target object and improves the riding experience of the target object.
[0107] In the above, when the first control strategy includes the target light brightness corresponding to the interior lights and the target usage scenario corresponding to the interior lights, and the target usage scenario is a vehicle driving scenario, in order to ensure the driving safety of the vehicle when controlling the interior lights, step S103 specifically includes:
[0108] Obtain first environmental information corresponding to the external environment of the vehicle; wherein, the interior lights are installed inside the vehicle;
[0109] When the target usage scenario, the first environmental information and the target light brightness are mismatched, the target light brightness is processed according to the first environmental information and the target usage scenario to obtain the processed target light brightness.
[0110] The interior lights are controlled based on the brightness of the target light after processing.
[0111] Specifically, the first environmental information is the vehicle's visibility. If the interior lights are still on or at a certain brightness when visibility is poor, it may affect the driver's ability to drive, thus impacting vehicle safety. Therefore, by pre-setting matching conditions, when the target usage scenario, the first environmental information, and the target light brightness meet the set conditions, no adjustment to the target light brightness is needed. If the conditions are not met, the interior lights can be turned off or the target light brightness can be adjusted to be extremely dim. This ensures that controlling the interior lights will not affect the driver's ability to drive, thus guaranteeing vehicle safety.
[0112] This application provides a method for controlling in-vehicle interior lights. The method involves acquiring target trigger information for the interior lights from a target object. This target trigger information includes the target lighting mode corresponding to the interior lights. A first control vehicle corresponding to the target lighting mode is determined from a first association relationship. The first association relationship stores multiple sets of correspondences between lighting modes and control strategies. These correspondences are determined based on the target object's trigger operation on a first interface. The first interface is used for configuring lighting modes and control strategies. Based on the first control strategy, the interior lights are controlled. This allows for control of the interior lights according to the target object's customized lighting mode, meeting the target object's personalized needs and improving the target object's riding experience.
[0113] refer to Figure 4 , Figure 4 This is a flowchart illustrating a vehicle interior light control device provided in an embodiment of this application. The vehicle interior light control device provided in this embodiment includes: an acquisition module 10, a determination module 20, and a control module 30. The acquisition module 10 is used to acquire target trigger information of a target object for the vehicle interior light, and parse the target lighting mode corresponding to the vehicle interior light from the target trigger information. The determination module 20 is used to determine a first control strategy corresponding to the target lighting mode from a first association relationship; wherein the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, the correspondences being determined based on the trigger operation of the target object on a first interface, the first interface being used for configuring the lighting mode and the control strategy; the control module 30 is used to control the vehicle interior light according to the first control strategy.
[0114] In this embodiment, the determining module 20 is further configured to:
[0115] The first interface is displayed; wherein, the first interface displays a plurality of first controls corresponding to the light mode;
[0116] When a trigger operation by the target object on the target first control in the first interface is detected, a second interface is displayed; wherein, the second interface displays a control strategy template corresponding to the target first control;
[0117] Obtain the target configuration information of the target object for the second interface;
[0118] Based on the target configuration information, the control strategy is generated to obtain the corresponding relationship.
[0119] In this embodiment, the determining module 20 is further configured to:
[0120] The control strategy is generated based on the target configuration information. The control strategy includes the usage scenario corresponding to the interior lights and the control information corresponding to the interior lights.
[0121] If it is determined that the usage scenario does not match the control information, the control information is processed according to the usage scenario to obtain the processed control information.
[0122] A third interface is generated based on the processed control information;
[0123] Upon receiving a confirmation message from the target object for the third interface, the processed control strategy is obtained.
[0124] The corresponding relationship is obtained based on the processed control strategy.
[0125] In this embodiment, the acquisition module 10 is further configured to:
[0126] Obtain the target speech signal input by the target object;
[0127] The target triggering information of the target object for the vehicle interior light is obtained from the target voice signal;
[0128] The step of determining the first control strategy corresponding to the target lighting mode from the first association relationship includes:
[0129] The target voiceprint corresponding to the target object is obtained from the target speech signal;
[0130] Determine the first association relationship corresponding to the target voiceprint;
[0131] The first control strategy corresponding to the target lighting mode is determined from the first association relationship.
[0132] In this embodiment, the first control strategy includes the target light brightness corresponding to the interior light and the target usage scenario corresponding to the interior light, wherein the target usage scenario is a vehicle driving scenario.
[0133] In this embodiment, the control module 30 is further configured to:
[0134] Acquire first environmental information corresponding to the external environment of the vehicle; wherein, the interior lights are installed inside the vehicle;
[0135] If it is determined that the target usage scenario, the first environmental information, and the target light brightness do not match, the target light brightness is processed according to the first environmental information and the target usage scenario to obtain the processed target light brightness.
[0136] The interior lights are controlled based on the processed target light brightness.
[0137] In this embodiment, the acquisition module 10 is further configured to:
[0138] When the target lighting mode is not stored in the first association relationship and the target lighting mode is automatic mode, the second environmental information corresponding to the vehicle's external environment and the third environmental information corresponding to the vehicle's internal environment are obtained; wherein, the internal lights are installed inside the vehicle.
[0139] In this embodiment, the determining module 20 is further configured to:
[0140] Based on the second environmental information and the third environmental information, the target control information corresponding to the vehicle interior lights is determined.
[0141] In this embodiment, the control module 30 is further configured to:
[0142] The interior lights are controlled according to the target control information.
[0143] In this embodiment, the determining module 20 is further configured to:
[0144] If the target lighting pattern is not stored in the first association relationship, a lighting pattern similar to the target lighting pattern is determined from the plurality of lighting patterns stored in the first association relationship.
[0145] This application provides a vehicle interior light control device, which further includes a generation module. The generation module is used for:
[0146] A target prompt message is generated based on the light pattern that is similar to the target light pattern.
[0147] In this embodiment, the determining module 20 is further configured to:
[0148] When a confirmation message is received from the target object regarding the target prompt information, a second control strategy corresponding to the light pattern that is similar to the target light pattern is determined from the first association relationship.
[0149] In this embodiment, the control module 30 is further configured to:
[0150] The interior lights are controlled according to the second control strategy.
[0151] This application provides a vehicle interior light control device. By acquiring target trigger information of a target object for the vehicle interior light, including the target lighting mode corresponding to the vehicle interior light, a first control vehicle corresponding to the target lighting mode is determined from a first association relationship. The first association relationship stores multiple sets of correspondences between lighting modes and control strategies. The correspondences are determined based on the target object's trigger operation on a first interface. The first interface is used to configure lighting modes and control strategies. According to the first control strategy, the vehicle interior light is controlled, thereby realizing the ability to control the vehicle interior light according to the target object's customized lighting mode, meeting the target object's personalized needs, and improving the target object's riding experience.
[0152] Figure 5 This is a structural schematic diagram of a vehicle provided in an embodiment of this application. Figure 5 The vehicle 500 shown includes at least one processor 501, a memory 502, at least one network interface 504, and other user interfaces 503. The various components in the vehicle 500 are coupled together via a bus system 505. It is understood that the bus system 505 is used to implement communication between these components. In addition to a data bus, the bus system 505 also includes a power bus, a control bus, and a status signal bus. However, for clarity, in… Figure 5 The general designated all buses as Bus System 505.
[0153] The user interface 503 may include a display, keyboard, or clicking device (e.g., mouse, trackball, touchpad, or touchscreen).
[0154] It is understood that the memory 502 in the embodiments of this application can be volatile memory or non-volatile memory, or may include both volatile and non-volatile memory. The non-volatile memory can be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. The volatile memory can be random access memory (RAM), which is used as an external cache. By way of example, but not limitation, many forms of RAM are available, such as Static Random Access Memory (SRAM), Dynamic Random Access Memory (DRAM), Synchronous DRAM (SDRAM), Double Data Rate SDRAM (DDRSDRAM), Enhanced Synchronous DRAM (ESDRAM), Synchronous Link DRAM (SLDRAM), and Direct Rambus RAM (DRRAM). The memory 502 described herein is intended to include, but is not limited to, these and any other suitable types of memory.
[0155] In some implementations, memory 502 stores elements, executable units or data structures, or subsets thereof, or extended sets thereof: operating system 5021 and application program 5022.
[0156] The operating system 5021 includes various system programs, such as the framework layer, core library layer, and driver layer, used to implement various basic business functions and handle hardware-based tasks. The application program 5022 includes various applications, such as a media player and a browser, used to implement various application functions. Programs implementing the methods of this application embodiment can be included in application program 5022.
[0157] In this embodiment of the application, by calling the program or instructions stored in the memory 502, specifically the program or instructions stored in the application program 5022, the processor 501 is used to execute the method steps provided in each method embodiment, such as: obtaining target trigger information of the target object for the interior lights, parsing the target lighting mode corresponding to the interior lights from the target trigger information, determining the first control vehicle corresponding to the target lighting mode from the first association relationship, the first association relationship storing multiple sets of correspondence relationships between lighting modes and control strategies, the correspondence relationship being determined based on the trigger operation of the target object for the first interface, the first interface being used for configuring lighting modes and control strategies, and controlling the interior lights according to the first control strategy.
[0158] The methods disclosed in the embodiments of this application can be applied to or implemented by processor 501. Processor 501 may be an integrated circuit chip with signal processing capabilities. In the implementation process, each step of the above method can be completed by the integrated logic circuit of the hardware in processor 501 or by instructions in the form of software. The processor 501 may be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. It can implement or execute the methods, steps, and logic block diagrams disclosed in the embodiments of this application. The general-purpose processor may be a microprocessor or any conventional processor. The steps of the methods disclosed in the embodiments of this application can be directly embodied in the execution of a hardware decoding processor, or executed by a combination of hardware and software units in the decoding processor. The software units may be located in random access memory, flash memory, read-only memory, programmable read-only memory, electrically erasable programmable memory, registers, or other mature storage media in the art. The storage medium is located in memory 502. Processor 501 reads the information in memory 502 and, in conjunction with its hardware, completes the steps of the above method.
[0159] It is understood that the embodiments described herein can be implemented in hardware, software, firmware, middleware, microcode, or a combination thereof. For hardware implementation, the processing unit can be implemented in one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), general-purpose processors, controllers, microcontrollers, microprocessors, other electronic units for performing the functions described herein, or combinations thereof.
[0160] For software implementation, the techniques described herein can be implemented by units that perform the functions described herein. The software code can be stored in memory and executed by a processor. The memory can be implemented in the processor or external to the processor.
[0161] The vehicle provided in this embodiment can be as follows: Figure 5 The vehicle shown can perform the following actions: Figure 1-3 All steps of the method for controlling the interior lights of a CRRC vehicle, thereby achieving... Figure 1-3 For details on the technical effects of the vehicle interior light control method shown, please refer to [link / reference needed]. Figure 1-3 The relevant descriptions are presented concisely and will not be elaborated upon here.
[0162] This application also provides a storage medium (computer-readable storage medium). This storage medium stores one or more programs. The storage medium may include volatile memory, such as random access memory; it may also include non-volatile memory, such as read-only memory, flash memory, hard disk, or solid-state drive; and it may also include combinations of the above types of memory.
[0163] When one or more programs in the storage medium can be executed by one or more processors to implement the above-described method for controlling the interior lights executed on the side of the interior light control device.
[0164] The processor is used to execute the control program for the interior lights stored in the memory to implement the following steps of the interior light control method executed on the control device side of the interior lights: obtaining target trigger information of the target object for the interior lights, parsing the target lighting mode corresponding to the interior lights from the target trigger information, determining the first controlled vehicle corresponding to the target lighting mode from the first association relationship, the first association relationship storing multiple sets of correspondence relationships between lighting modes and control strategies, the correspondence relationship being determined based on the trigger operation of the target object for the first interface, the first interface being used for configuring lighting modes and control strategies, and controlling the interior lights according to the first control strategy.
[0165] Those skilled in the art will further recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of both. To clearly illustrate the interchangeability of hardware and software, the components and steps of the various examples have been generally described in terms of functionality in the foregoing description. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementations should not be considered beyond the scope of this invention.
[0166] It should be noted that the terms "one implementation," "embodiment," "exemplary embodiment," and "some embodiments" used in the specification indicate that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, such phrases do not necessarily refer to the same embodiment. Moreover, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments, whether explicitly described or not, is within the knowledge scope of those skilled in the art.
[0167] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0168] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A control method of an in-vehicle light, characterized by, The method includes: Obtain the target trigger information of the target object for the vehicle interior light, and parse the target lighting mode corresponding to the vehicle interior light from the target trigger information; A first control strategy corresponding to the target lighting mode is determined from the first association relationship; wherein, the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, and the correspondences are determined based on the trigger operation of the target object on the first interface, the first interface being used for configuring the lighting mode and the control strategy; The interior lights are controlled according to the first control strategy; The method further includes: When the target lighting mode is not stored in the first association relationship and the target lighting mode is automatic mode, the second environmental information corresponding to the vehicle's external environment and the third environmental information corresponding to the vehicle's internal environment are obtained; wherein, the internal lights are set inside the vehicle, and the second environmental information includes the vehicle's driving line of sight, and the third environmental information includes whether music is playing inside the vehicle. Based on the second environmental information and the third environmental information, the target control information corresponding to the vehicle interior lights is determined; The interior lights are controlled according to the target control information.
2. The method according to claim 1, characterized in that, The correspondence is determined in the following way: The first interface is displayed; wherein, the first interface displays a plurality of first controls corresponding to the light mode; When a trigger operation by the target object on the target first control in the first interface is detected, a second interface is displayed; wherein, the second interface displays a control strategy template corresponding to the target first control; Obtain the target configuration information of the target object for the second interface; Based on the target configuration information, the control strategy is generated to obtain the corresponding relationship.
3. The method according to claim 2, characterized in that, The step of generating the control strategy based on the target configuration information to obtain the corresponding relationship includes: The control strategy is generated based on the target configuration information. The control strategy includes the usage scenario corresponding to the interior lights and the control information corresponding to the interior lights. If it is determined that the usage scenario does not match the control information, the control information is processed according to the usage scenario to obtain the processed control information. A third interface is generated based on the processed control information; Upon receiving a confirmation message from the target object for the third interface, the processed control strategy is obtained. The corresponding relationship is obtained based on the processed control strategy.
4. The method according to claim 1, characterized in that, The acquisition of target trigger information for the vehicle interior lights includes: Obtain the target speech signal input by the target object; The target triggering information of the target object for the vehicle interior light is obtained from the target voice signal; The step of determining the first control strategy corresponding to the target lighting mode from the first association relationship includes: The target voiceprint corresponding to the target object is obtained from the target speech signal; Determine the first association relationship corresponding to the target voiceprint; The first control strategy corresponding to the target lighting mode is determined from the first association relationship.
5. The method according to claim 1, characterized in that, The first control strategy includes the target light brightness corresponding to the interior light and the target usage scenario corresponding to the interior light, wherein the target usage scenario is a vehicle driving scenario; The step of controlling the interior lights according to the first control strategy includes: Acquire first environmental information corresponding to the external environment of the vehicle; wherein, the interior lights are installed inside the vehicle; If it is determined that the target usage scenario, the first environmental information, and the target light brightness do not match, the target light brightness is processed according to the first environmental information and the target usage scenario to obtain the processed target light brightness; The interior lights are controlled based on the processed target light brightness.
6. The method according to claim 1, characterized in that, The method further includes: When the target light pattern is not stored in the first association relationship, a light pattern similar to the target light pattern is determined from the multiple light patterns stored in the first association relationship; Generate target prompt information based on the light pattern similar to the target light pattern; When a confirmation message is received from the target object regarding the target prompt information, a second control strategy corresponding to the light pattern that is similar to the target light pattern is determined from the first association relationship; The interior lights are controlled according to the second control strategy.
7. A control device for vehicle interior lights, characterized in that, The device includes: The acquisition module is used to acquire the target trigger information of the target object for the vehicle interior light, and parse the target lighting mode corresponding to the vehicle interior light from the target trigger information; A determining module is used to determine a first control strategy corresponding to the target lighting mode from a first association relationship; wherein, the first association relationship stores multiple sets of correspondences between lighting modes and control strategies, the correspondences are determined based on the trigger operation of the target object on a first interface, and the first interface is used for configuring the lighting mode and the control strategy; The control module is used to control the interior lights according to the first control strategy; The device further includes: When the target lighting mode is not stored in the first association relationship and the target lighting mode is automatic mode, second environmental information corresponding to the vehicle's external environment and third environmental information corresponding to the vehicle's internal environment are obtained; wherein, the interior lights are installed inside the vehicle, and the second environmental information includes the vehicle's driving line of sight, and the third environmental information includes whether music is playing inside the vehicle; based on the second environmental information and the third environmental information, target control information corresponding to the interior lights is determined; and the interior lights are controlled according to the target control information.
8. A vehicle, characterized in that, include: A processor and a memory, the processor being configured to execute a control program for interior lights stored in the memory to implement the control method for interior lights according to any one of claims 1 to 6.
9. A storage medium, characterized in that, The storage medium stores one or more programs, which can be executed by one or more processors to implement the vehicle interior light control method according to any one of claims 1 to 6.
Citation Information
Patent Citations
Method, device and system for adjusting driving modes and vehicle
CN106683673A
Vehicle-mounted process management method and apparatus
CN109120681A
Steering wheel atmosphere lamp control method, related assembly and steering wheel
CN115709679A