Atmosphere lamp control method based on artificial intelligence and related device
By obtaining the atmosphere characteristics of the environment in which the smart device is located and using artificial intelligence models to adjust the ambient light effect, the problem of single effect of the traditional smart speaker ambient light is solved, real-time interaction with user behavior and environment is achieved, and user immersion and personalized lighting atmosphere are enhanced.
Patent Information
- Application Number
- CN202510390878.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-07-11
AI Technical Summary
The ambient light effect control of traditional smart speakers is single, and they cannot interact with user behavior, environmental characteristics, user emotions, etc. in real time, becoming an important communication medium between users and smart devices.
By obtaining the atmosphere characteristics of the environment in which the smart device is located, such as voice, gesture, time, weather and emotional characteristics, using artificial intelligence models to adjust the ambient light effects, real-time interaction with user behavior and environment.
It realizes real-time interaction between the ambient lighting effects of smart devices and user behavior and environment, enhances user immersion, provides personalized lighting atmosphere, supports multi-modal interaction and low-power operation.
Smart Images

Figure CN120302490A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of ambient light control, and particularly relates to an ambient light control method and related device based on artificial intelligence. Background Art
[0002] As a high-quality audio output device, speakers have entered thousands of households, usually cooperating with video playback devices to achieve audio-visual services, or to achieve ordinary audio playback functions such as playing songs, music, and radio broadcasts.
[0003] However, with the rapid development and maturity of artificial intelligence (AI), intelligent devices with ambient light effects such as smart speakers can also introduce artificial intelligence technology to present some more intelligent and brand-new ambient light effects. Summary of the Invention
[0004] The purpose of this application is to provide an ambient light control method and related device based on artificial intelligence to create a lighting atmosphere suitable for the current environment for users.
[0005] In a first aspect, this application provides an ambient light control method based on artificial intelligence, which is applied to a smart device and includes:
[0006] Obtain the ambient characteristics of the current environment where the smart device is located;
[0007] Adjust the ambient light effect of the smart device according to the ambient characteristics, and the ambient light effect is used to create a lighting atmosphere suitable for the current environment.
[0008] Optionally, obtaining the ambient characteristics of the current environment where the smart device is located includes:
[0009] Obtain the voice ambient characteristics of the current environment through a voice command; or,
[0010] Obtain the gesture ambient characteristics of the current environment through a gesture command; or,
[0011] Obtain the time ambient characteristics of the current environment through a preset time event corresponding to the current time; or,
[0012] Obtain the weather ambient characteristics of the current environment through a weather event corresponding to the current weather condition; or,
[0013] Obtain the emotional ambient characteristics of the current environment through the emotional state of the target user.
[0014] Optionally, adjusting the ambient light effect of the smart device according to the ambient characteristics includes:
[0015] Input one or more of the voice atmosphere feature, the gesture atmosphere feature, the time atmosphere feature, the weather atmosphere feature, and the emotion atmosphere feature into a first preset artificial intelligence model to obtain the atmosphere light effect that the intelligent device needs to present. The first preset artificial intelligence model is a model that has been trained to convert and output a corresponding atmosphere light effect based on one or more of the atmosphere features of voice, gesture, time, weather, and emotion;
[0016] Adjust the intelligent device to present the atmosphere light effect.
[0017] Optionally, obtaining the voice atmosphere feature of the current environment through a voice command includes:
[0018] Obtain the voice atmosphere feature of the current environment by means of a wake-up word plus an adjustment statement.
[0019] Optionally, obtaining the gesture atmosphere feature of the current environment through a gesture command includes:
[0020] Obtain the gesture atmosphere feature of the current environment by means of a wake-up gesture plus an adjustment gesture.
[0021] Optionally, obtaining the time atmosphere feature of the current environment through a preset time event corresponding to the current time includes:
[0022] Connect to the Internet to know the current time;
[0023] Judge whether there is a legal holiday at the current time;
[0024] When there is a legal holiday at the current time, use the holiday as the time atmosphere feature;
[0025] When there is no legal holiday at the current time, the time atmosphere feature is empty.
[0026] Optionally, obtaining the emotion atmosphere feature of the current environment through the emotional state of the target user includes:
[0027] Obtain the current image of the target user;
[0028] Input the current image into a second preset artificial intelligence model to obtain the emotion atmosphere feature corresponding to the target user. The second preset artificial intelligence model is a model that has been trained to recognize the user's emotion from the user's image.
[0029] Optionally, the intelligent device is a smart speaker with a projection function, and the method further includes:
[0030] Project the range feature of the current environment and the description of the atmosphere light effect.
[0031] In a second aspect, the present application provides an atmosphere light control device based on artificial intelligence, which is applied to an intelligent device and includes:
[0032] An acquisition unit, configured to acquire the atmosphere characteristics of the current environment where the intelligent device is located;
[0033] An adjustment unit, configured to adjust the atmosphere light effect of the intelligent device according to the atmosphere characteristics, and the atmosphere light effect is used to create a lighting atmosphere suitable for the current environment.
[0034] Optionally, when the acquisition unit acquires the atmosphere characteristics of the current environment where the intelligent device is located, it is specifically configured to:
[0035] Acquire the voice atmosphere characteristics of the current environment through a voice command; or,
[0036] Acquire the gesture atmosphere characteristics of the current environment through a gesture command; or,
[0037] Acquire the time atmosphere characteristics of the current environment through a preset time event corresponding to the current time; or,
[0038] Acquire the weather atmosphere characteristics of the current environment through a weather event corresponding to the current weather condition; or,
[0039] Acquire the emotion atmosphere characteristics of the current environment through the emotion state of the target user.
[0040] Optionally, when the adjustment unit adjusts the atmosphere light effect of the intelligent device according to the atmosphere characteristics, it is specifically configured to:
[0041] Input one or more of the voice atmosphere characteristics, the gesture atmosphere characteristics, the time atmosphere characteristics, the weather atmosphere characteristics, and the emotion atmosphere characteristics into a first preset artificial intelligence model to obtain the atmosphere light effect that the intelligent device needs to present. The first preset artificial intelligence model is a model that has been trained to be able to convert and output the corresponding atmosphere light effect according to one or more of the voice, gesture, time, weather, and emotion atmosphere characteristics;
[0042] Adjust the intelligent device to present the atmosphere light effect.
[0043] Optionally, when the acquisition unit acquires the voice atmosphere characteristics of the current environment through a voice command, it is specifically configured to:
[0044] Acquire the voice atmosphere characteristics of the current environment in the way of a wake-up word plus an adjustment statement.
[0045] Optionally, when the acquisition unit acquires the gesture atmosphere characteristics of the current environment through a gesture command, it is specifically configured to:
[0046] Obtain the gesture atmosphere feature of the current environment by means of a wake-up gesture plus an adjustment gesture.
[0047] Optionally, when the obtaining unit obtains the time atmosphere feature of the current environment through a preset time event corresponding to the current time, it is specifically used for:
[0048] Connect to the Internet to obtain the current time;
[0049] Determine whether there is a legal holiday at the current time;
[0050] When there is a legal holiday at the current time, use the holiday as the time atmosphere feature;
[0051] When there is no legal holiday at the current time, the time atmosphere feature is empty.
[0052] Optionally, when the obtaining unit obtains the emotional atmosphere feature of the current environment through the emotional state of the target user, it is specifically used for:
[0053] Obtain the current image of the target user;
[0054] Input the current image into a second preset artificial intelligence model to obtain the emotional atmosphere feature corresponding to the target user. The second preset artificial intelligence model is a model trained to recognize the user's emotion from the user's image.
[0055] Optionally, the intelligent device is an intelligent speaker with a projection function, and the device further includes:
[0056] A projection unit, configured to project the range feature of the current environment and the description of the atmosphere light effect.
[0057] In a third aspect, the present application provides a computer device, including:
[0058] A processor, a memory, a bus, an input / output interface, and a network interface;
[0059] The processor is connected to the memory, the input / output interface, and the network interface through the bus;
[0060] The memory stores a program;
[0061] When the processor executes the program stored in the memory, it implements the artificial intelligence-based atmosphere light control method according to any one of the above first aspects.
[0062] Fourthly, the present application provides a computer storage medium, in which instructions are stored, and when the instructions are executed on a computer, the computer is made to execute the method for controlling an atmosphere lamp based on artificial intelligence according to any one of the above-mentioned first aspects.
[0063] Fifthly, the present application provides a computer program product, and when the computer program product is executed on a computer, the computer is made to execute the method for controlling an atmosphere lamp based on artificial intelligence according to any one of the above-mentioned first aspects.
[0064] As can be seen from the above technical solutions, the embodiments of the present application have the following advantages:
[0065] The method for controlling an atmosphere lamp based on artificial intelligence according to the present application is applied to an intelligent device. By obtaining the atmosphere characteristics of the environment where the intelligent device is located, the atmosphere of the environment is determined; then, according to the atmosphere characteristics, the atmosphere lamp effect of the intelligent device is adjusted, and the atmosphere lamp effect is used to create a lighting atmosphere suitable for the current environment, so as to create a lighting atmosphere effect suitable for the current environment for the user. BRIEF DESCRIPTION OF THE DRAWINGS
[0066] Figure 1 is a schematic flowchart of an embodiment of the method for controlling an atmosphere lamp based on artificial intelligence according to the present application;
[0067] Figure 2 is a schematic flowchart of another embodiment of the method for controlling an atmosphere lamp based on artificial intelligence according to the present application;
[0068] Figure 3 is a schematic structural diagram of an embodiment of the device for controlling an atmosphere lamp based on artificial intelligence according to the present application;
[0069] Figure 4 is a schematic structural diagram of another embodiment of the device for controlling an atmosphere lamp based on artificial intelligence according to the present application;
[0070] Figure 5 is a schematic structural diagram of an embodiment of the computer device according to the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0071] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0072] It should be noted that the ambient light of intelligent devices can enhance the user's sense of immersion and can project and display the device status of intelligent devices (for example, when the speaker is muted, a red light indicates a standby state, and a blue light indicates a standby state), reducing the user's dependence on the screen to understand the device status. However, the traditional intelligent speaker has a single control over the presentation effect of the ambient light. Usually, different colors are set to express different device states. Even if there are ambient light effects that can be controlled separately, they are the flowing light effects, running light effects, etc. implemented according to the preset program. These ambient light effects do not achieve real-time interaction with user behavior, environmental characteristics, user emotions, etc., and do not become an important communication medium for interaction between users and intelligent devices.
[0073] In view of this, this embodiment proposes an atmosphere light control method based on artificial intelligence (AI) applied to a smart device. The smart device is specifically a smart speaker with a projection function, which mainly includes: a central processing unit module, a memory module, an artificial intelligence chip module, a communication module, a speaker amplifier module, an atmosphere light module, a projection module, a power module, etc. The above-mentioned modules are connected through a printed circuit board (PCB) and then adapted to be installed in a suitable speaker to obtain the smart device. The central processing unit module is mainly used for comprehensive scheduling of the various component modules connected to it to implement the atmosphere light control method mentioned in this embodiment; the power supply module is mainly used to provide a suitable working voltage to the central processing unit module, the memory module, the artificial intelligence chip module, the communication module, the speaker amplifier module, the atmosphere light module, the projection module, etc. The power supply module can be a self-contained battery-powered mode or a mains power supply mode, and the power source of the power supply module is not limited here; the memory module mainly stores the program for implementing the relevant steps of this embodiment, and the memory also stores the preset trained first preset artificial intelligence model, the second preset artificial intelligence model, the preset atmosphere light effect program, etc.; the artificial intelligence chip module is mainly used to quickly load and run the first preset artificial intelligence model and the second preset artificial intelligence model stored in the memory module; the communication module It is mainly used to communicate with the outside world (electronic devices such as mobile phones, tablets, computers, smart home devices such as smart air conditioners, smart indoor lights, smart fans, etc.), for example, the communication module is a WiFi / Bluetooth / Zigbee module, which supports linkage with smart home devices (air conditioners, curtains, etc.); the speaker amplifier module is mainly used to control the playback of different audio sounds according to the central processor module to realize the playback function of the speaker; the atmosphere light module can be turned off or on. When the atmosphere light module is turned on, the light can be displayed according to the strength of the audio sound or displayed according to the preset program to form an ambient light atmosphere. The atmosphere light module can be an RGBW four-color LED array, which supports 16 million color adjustment, and cooperates with optical components such as Fresnel lens group and micro DLP projection chip lamp to realize the projection of dynamic patterns (such as stars, waves) and text information. In another embodiment, the smart speaker of this embodiment can be further integrated with a sensor module, which includes but is not limited to a microphone array, an infrared camera, an ambient light sensor (ALS), etc., and the ambient audio data is obtained through the microphone array, and the personnel data such as the position, posture, and body temperature of the environment personnel are obtained through the infrared camera.
[0074] Based on the above understanding, please refer to Figure 1 , the present application of an artificial intelligence-based atmosphere light control method is applied to an embodiment of a smart device, including:
[0075] 101. Obtain the atmosphere characteristics of the current environment where the intelligent device is located.
[0076] Specifically, in this embodiment, the voice command of the target user can be obtained through a microphone, with natural language processing (NLP) and local / cloud semantic understanding supported, and the voice atmosphere characteristics of the current environment can be obtained through the voice command of the target user. To accurately identify the voice command of the target user, this embodiment can adopt the method of wake-up word plus adjustment statement to obtain the voice atmosphere characteristics of the current environment. For example, the wake-up word is: "Hello, Xiaofen", and the adjustment statement is: "Adjust the atmosphere light to XX mode". Then, when the intelligent device obtains through the microphone that the target user says "Hello, Xiaofen, adjust the atmosphere light to XX mode", it will focus on identifying the adjustment statement after the wake-up word after hearing the wake-up word, and then obtain the voice atmosphere characteristic as "XX mode". In practical applications, the voice atmosphere characteristic can also be "XX color", "XX special effect", etc.
[0077] In another embodiment, the gesture command of the target user can be obtained through an infrared camera in this embodiment, and the gesture atmosphere characteristics of the current environment can be obtained through the gesture command. To accurately identify the gesture command of the target user, this embodiment can adopt the method of wake-up gesture plus adjustment gesture to obtain the voice atmosphere characteristics of the current environment. For example, the wake-up gesture is to extend the palm towards the intelligent device and stay for at least 3 seconds, and the adjustment gesture is to shake the hand left, right, up or down. Then, when the intelligent device obtains through the infrared camera that the target user extends the palm towards it and stays for at least 3 seconds and shakes the hand in a specific direction, it will focus on identifying the adjustment gesture after the wake-up gesture after recognizing the wake-up gesture, and then obtain the gesture atmosphere characteristic as one of "left", "right", "down", "up", "draw a circle", etc. By presetting the command triggered by each gesture atmosphere characteristic in advance, the meaning of the command corresponding to the adjustment gesture of the target user can be known. In practical applications, the gesture atmosphere characteristic can be set as: "left" represents switching to the previous atmosphere light mode, "right" represents switching to the next atmosphere light mode, "up" represents turning up the brightness of the atmosphere light, "down" represents turning down the brightness of the atmosphere light, "draw a circle" represents pausing or starting the atmosphere light, etc.
[0078] In another embodiment, the current time can be obtained by connecting to the Internet through a communication module in this embodiment, and the time atmosphere characteristics of the current environment can be obtained through the time event preset corresponding to the current time; that is, it is judged whether there is a legal holiday at the current time, such as one of the Spring Festival, Mid-Autumn Festival, Double Ninth Festival, etc.; when there is a legal holiday at the current time, the corresponding festival (such as the Spring Festival) is used as the time atmosphere characteristic; when there is no legal holiday at the current time, the time atmosphere characteristic is empty. It is also possible to preset the command triggered by each legal holiday in advance, and then the meaning of the command corresponding to the time atmosphere characteristic can be known.
[0079] In another embodiment, this embodiment can connect to the Internet through a communication module to obtain the current weather status of the surrounding environment, or can infer the current weather status of the surrounding environment through the environmental data detected by environmental sensors (such as temperature and humidity sensors), and then obtain the weather atmosphere characteristics of the current environment through the weather events corresponding to the current weather status. For example, the current weather status can be: rainy day, sunny day, cloudy day, haze day, snowy day, day, night, etc. It is also possible to preset the instructions triggered by each current weather status in advance, so as to know the meaning of the instructions corresponding to the weather atmosphere characteristics.
[0080] In another embodiment, this embodiment can obtain the current image of the target user (such as a facial expression image) through an infrared camera, input the current image into a second preset artificial intelligence model, and obtain the emotional atmosphere characteristics corresponding to the target user, where the second preset artificial intelligence model is a model trained to recognize user emotions from user images. The training of the second preset artificial intelligence model trained in this embodiment can collect infrared camera image data of volunteers using smart devices in different emotional states as training samples, and if necessary, combine manual classification of the emotional labels of the volunteers in different training samples in different emotional states (happy, calm, sad, angry, etc.) for the artificial intelligence model to train, so as to obtain a trained artificial intelligence model that can recognize different emotional states of the target user in the infrared image. It can be understood that the second preset artificial intelligence model in this embodiment includes deep learning models, CNN models, etc., and can continuously optimize the recognition process according to the historical emotional states of the target user, so as to more quickly and accurately recognize the emotional atmosphere characteristics corresponding to the target user. It is also possible to preset the instructions triggered by each user emotional state in advance, so as to know the meaning of the instructions corresponding to the emotional atmosphere characteristics.
[0081] 102. Adjust the atmosphere light effect of the smart device according to the atmosphere characteristics, and the atmosphere light effect is used to create a lighting atmosphere suitable for the current environment.
[0082] Specifically, based on the atmosphere features obtained in step 101, one or more of the above-mentioned voice atmosphere features, gesture atmosphere features, time atmosphere features, weather atmosphere features, and emotion atmosphere features are input into the first preset artificial intelligence model, and the atmosphere light effect that the intelligent device needs to present can be obtained. In this step, the intelligent device is adjusted to present the above-mentioned atmosphere light effect. The first preset artificial intelligence model is a model that has been trained to be able to convert and output the corresponding atmosphere light effect based on one or more of the atmosphere features such as voice, gesture, time, weather, and emotion. In this embodiment, the training of the trained first preset artificial intelligence model can collect the atmosphere features obtained by volunteers using different voice commands, gesture commands, emotional states, and time dates as training samples. When necessary, artificial classification of the atmosphere light effect labels corresponding to different training samples is combined so that the artificial intelligence model can be trained to obtain the trained model that can realize obtaining the corresponding atmosphere light effect based on one or more of the voice atmosphere feature, gesture atmosphere feature, time atmosphere feature, weather atmosphere feature, and emotion atmosphere feature. For example, during the Spring Festival, "fireworks", "firecrackers", etc. can be set as the flashing light effects. The flashing brightness of the light effect is lower at night and higher during the day. In the case of rainy days, the atmosphere light effect has a water droplet ripple effect, etc. It can be understood that the first preset artificial intelligence model in this embodiment includes a deep learning model, which can adjust the weight of the corresponding atmosphere light effect according to the operations (such as frequent switching, length of stay, etc.) of the target user, so as to better adapt to the preferences of the target user and realize building a lighting atmosphere effect suitable for the current environment for the target user.
[0083] Please refer to Figure 2 , another embodiment of the atmosphere light control method based on artificial intelligence in this application is applied to an intelligent device, including:
[0084] 201. Obtain the atmosphere features of the current environment where the intelligent device is located.
[0085] The execution of this step is similar to the operations performed in step 101 of the foregoing Figure 1 embodiment and will not be elaborated here.
[0086] 202. Adjust the atmosphere light effect of the intelligent device according to the atmosphere features, and the atmosphere light effect is used to create a lighting atmosphere suitable for the current environment.
[0087] The execution of this step is similar to the operations performed in step 102 of the foregoing Figure 1 embodiment and will not be elaborated here.
[0088] 203. Project the range features of the current environment and the description of the atmosphere light effect.
[0089] It should be emphasized that the intelligent device in this embodiment is an intelligent speaker with a projection function. To facilitate the target user to set and understand various information about the current ambient light effect of the intelligent speaker, the range characteristics of the current environment and the description of the ambient light effect can be projected for the target user to make choices and modifications. This step can also incorporate a dynamic projection algorithm: generating real-time dynamic light effects based on the audio spectrum (such as music rhythm, frequency) as the ambient light effect.
[0090] It can be seen that the method for controlling the ambient light of an intelligent device based on artificial intelligence in this embodiment can automatically adjust the color, brightness, and projection content of the ambient light according to the voice commands, gesture commands, current time, environmental weather conditions, and emotional states of the target user, and supports deep linkage with music rhythm and smart home devices. This embodiment has the advantages of multi-modal interaction, low power consumption, and high integration. This embodiment combines the three functions of a speaker, an ambient light, and a projector, saving space and cost, and can achieve dynamic interaction driven by artificial intelligence AI, realizing deep linkage of semantic understanding and emotion perception, and can adopt ambient light adaptive adjustment technology to automatically reduce the projection brightness at night.
[0091] The above embodiments have described the embodiments of the method for controlling the ambient light of an intelligent device based on artificial intelligence of the present application. Next, the device for controlling the ambient light of an intelligent device based on artificial intelligence of the present application will be described. Please refer to Figure 3 , an embodiment of the device for controlling the ambient light of an intelligent device based on artificial intelligence of the present application, includes:
[0092] An acquisition unit 301, configured to acquire the ambient characteristics of the current environment where the intelligent device is located;
[0093] An adjustment unit 302, configured to adjust the ambient light effect of the intelligent device according to the ambient characteristics, where the ambient light effect is used to create a lighting atmosphere suitable for the current environment.
[0094] The operations performed by the device for controlling the ambient light of an intelligent device based on artificial intelligence of the present application are similar to those described in the foregoing Figure 1 embodiments and will not be elaborated here.
[0095] Please refer to Figure 4 , another embodiment of the device for controlling the ambient light of an intelligent device based on artificial intelligence of the present application, includes:
[0096] An acquisition unit 401, configured to acquire the ambient characteristics of the current environment where the intelligent device is located;
[0097] An adjustment unit 402, configured to adjust the ambient light effect of the intelligent device according to the ambient characteristics, where the ambient light effect is used to create a lighting atmosphere suitable for the current environment.
[0098] Optionally, when the obtaining unit 401 obtains the atmosphere characteristics of the current environment where the intelligent device is located, it is specifically configured to:
[0099] Obtain the voice atmosphere characteristics of the current environment through a voice command; or,
[0100] Obtain the gesture atmosphere characteristics of the current environment through a gesture command; or,
[0101] Obtain the time atmosphere characteristics of the current environment through a preset time event corresponding to the current time; or,
[0102] Obtain the weather atmosphere characteristics of the current environment through a weather event corresponding to the current weather condition; or,
[0103] Obtain the emotional atmosphere characteristics of the current environment through the emotional state of the target user.
[0104] Optionally, when the adjustment unit 402 adjusts the atmosphere light effect of the intelligent device according to the atmosphere characteristics, it is specifically configured to:
[0105] Input one or more of the voice atmosphere characteristics, the gesture atmosphere characteristics, the time atmosphere characteristics, the weather atmosphere characteristics, and the emotional atmosphere characteristics into a first preset artificial intelligence model to obtain the atmosphere light effect that the intelligent device needs to present. The first preset artificial intelligence model is a model that has been trained to be able to convert and output the corresponding atmosphere light effect according to one or more of the atmosphere characteristics of voice, gesture, time, weather, and emotion;
[0106] Adjust the intelligent device to present the atmosphere light effect.
[0107] Optionally, when the obtaining unit 401 obtains the voice atmosphere characteristics of the current environment through a voice command, it is specifically configured to:
[0108] Obtain the voice atmosphere characteristics of the current environment by means of a wake-up word plus an adjustment statement.
[0109] Optionally, when the obtaining unit obtains the gesture atmosphere characteristics of the current environment through a gesture command, it is specifically configured to:
[0110] Obtain the gesture atmosphere characteristics of the current environment by means of a wake-up gesture plus an adjustment gesture.
[0111] Optionally, when the obtaining unit 401 obtains the time atmosphere characteristics of the current environment through a preset time event corresponding to the current time, it is specifically configured to:
[0112] Connect to the Internet to know the current time;
[0113] Determine whether there is a legal holiday at the current time;
[0114] When there is a legal holiday at the current time, use the holiday as the time atmosphere feature;
[0115] When there is no legal holiday at the current time, the time atmosphere feature is empty.
[0116] Optionally, when the obtaining unit 401 obtains the emotional atmosphere feature of the current environment through the emotional state of the target user, it is specifically used for:
[0117] Obtain the current image of the target user;
[0118] Input the current image into a second preset artificial intelligence model to obtain the emotional atmosphere feature corresponding to the target user. The second preset artificial intelligence model is a model trained to recognize the user's emotion from the user's image.
[0119] Optionally, the intelligent device is an intelligent speaker with a projection function, and the device further includes:
[0120] A projection unit 403, configured to project the range feature of the current environment and the description of the atmosphere lamp effect.
[0121] This application is applied to the operations performed by an intelligent device-based artificial intelligence atmosphere lamp control device, which are similar to those described in the foregoing Figure 2 embodiment and will not be elaborated here.
[0122] The computer device in the embodiment of the present application will be described below. Please refer to Figure 5 , an embodiment of the computer device in the embodiment of the present application includes:
[0123] The computer device 500 may include one or more processors (central processing units, CPUs) 501 and a memory 502, and one or more applications or data are stored in the memory 502. Among them, the memory 502 is volatile storage or persistent storage. The program stored in the memory 502 may include one or more modules, and each module may include a series of instruction operations on the computer device. Further, the processor 501 may be configured to communicate with the memory 502 and execute a series of instruction operations in the memory 502 on the computer device 500. The computer device 500 may further include: one or more network interfaces 503, one or more input / output interfaces 504, and / or one or more operating systems, such as HarmonyOS, Windows Server, Mac OS, Unix, Linux, FreeBSD, etc. The processor 501 may perform the foregoing Figure 1 or Figure 2 operations performed in any of the illustrated embodiments, which are not specifically described herein.
[0124] In several embodiments provided in the embodiments of the present application, those skilled in the art should understand that the disclosed systems, devices, and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the division of the unit is only a logical function division, and there may be other division methods in actual implementation. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection between each other may be through some interfaces, and the indirect coupling or communication connection of the device or unit may be in electrical, mechanical or other forms.
[0125] In addition, each functional unit in various embodiments of the present application may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of a software functional unit. If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods in various embodiments of the present application. The foregoing storage medium includes: various media such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disc that can store program codes.
[0126] The foregoing is only a preferred embodiment of the present application and is not intended to limit the present application. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An atmosphere lamp control method based on artificial intelligence, characterized in that, Applied to a smart device, including: Obtain the atmosphere characteristics of the current environment where the smart device is located; Adjust the atmosphere light effect of the smart device according to the atmosphere characteristics, and the atmosphere light effect is used to create a lighting atmosphere suitable for the current environment.
2. The ambient light control method according to claim 1, wherein, Obtaining the atmosphere characteristics of the current environment where the smart device is located includes: Obtain the voice atmosphere characteristics of the current environment through a voice command; or, Obtain the gesture atmosphere characteristics of the current environment through a gesture command; or, Obtain the time atmosphere characteristics of the current environment through a preset time event corresponding to the current time; or, Obtain the weather atmosphere characteristics of the current environment through a weather event corresponding to the current weather state; or, Obtain the emotional atmosphere characteristics of the current environment through the emotional state of the target user.
3. The ambient light control method according to claim 2, wherein, Adjusting the atmosphere light effect of the smart device according to the atmosphere characteristics includes: Input one or more of the voice atmosphere characteristics, the gesture atmosphere characteristics, the time atmosphere characteristics, the weather atmosphere characteristics, and the emotional atmosphere characteristics into a first preset artificial intelligence model to obtain the atmosphere light effect that the smart device needs to present. The first preset artificial intelligence model is a model that has been trained to be able to convert and output the corresponding atmosphere light effect according to one or more of the atmosphere characteristics of voice, gesture, time, weather, and emotion; Adjust the smart device to present the atmosphere light effect.
4. The ambient light control method according to claim 3, wherein Obtaining the voice atmosphere characteristics of the current environment through a voice command includes: Obtain the voice atmosphere characteristics of the current environment by means of a wake-up word plus an adjustment statement.
5. The ambient light control method according to claim 3, wherein Obtaining the gesture atmosphere characteristics of the current environment through a gesture command includes: Obtain the gesture atmosphere characteristics of the current environment by means of a wake-up gesture plus an adjustment gesture.
6. The ambient light control method according to claim 3, wherein Obtaining the time atmosphere characteristics of the current environment through a preset time event corresponding to the current time includes: Connect to the Internet to know the current time; Judge whether there is a legal holiday at the current time; When there is a legal holiday at the current time, use the holiday as the time atmosphere characteristic; When there is no legal holiday at the current time, the time atmosphere characteristic is empty.
7. The ambient light control method according to claim 3, wherein Obtaining the emotional atmosphere characteristics of the current environment through the emotional state of the target user includes: Obtain the current image of the target user; Input the current image into a second preset artificial intelligence model to obtain the emotional atmosphere characteristics corresponding to the target user. The second preset artificial intelligence model is a model that has been trained to be able to recognize the user's emotion from the user's image.
8. The ambient light control method according to claim 1, wherein The smart device is a smart speaker with a projection function, and the method further includes: Project the range characteristics of the current environment and the description of the atmosphere light effect.
9. An atmosphere lamp control device based on artificial intelligence, characterized in that, Applied to a smart device, including: An acquisition unit for acquiring the atmosphere characteristics of the current environment where the smart device is located; An adjustment unit for adjusting the atmosphere light effect of the smart device according to the atmosphere characteristics, and the atmosphere light effect is used to create a lighting atmosphere suitable for the current environment.
10. A computer device, characterized in that, Including: A processor, a memory, a bus, an input / output interface, and a network interface; The processor is connected to the memory, the input / output interface, and the network interface through the bus; A program is stored in the memory; When the processor executes the program stored in the memory, the artificial intelligence-based ambient light control method described in any one of claims 1 to 8 is implemented.