Control method for coordination between lighting effect and music, smart terminal, and controlled device

The smart terminal generates a custom scene management page, which supports users to freely combine lighting effects and music, solving the problem that the combination of ambient lighting and music products in the existing technology is difficult to meet user needs in many occasions, and achieving a flexible audio-visual experience.

WO2025156701A1PCT designated stage Publication Date: 2025-07-31JIANGMEN ZENGGE CO LTD

Patent Information

Application Number
PCT/CN2024/123519
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-25
Filing Date
2024-10-09
Publication Date
2025-07-31

AI Technical Summary

Technical Problem

The existing products that combine ambient lighting and music are difficult to quickly meet user needs in many different occasions, lack novelty, and it is impossible to easily replace the music and lighting effect combinations.

Method used

The smart terminal generates a custom scene management page, which supports users to freely combine lighting effects and music, generate scene tags and send playback instructions to the controlled device, realizing the linkage of lighting effects and music.

Benefits of technology

Users can quickly change the lighting effects and music combinations to meet the needs of multiple occasions and provide a flexible audio-visual experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN2024123519_31072025_PF_FP_ABST
Patent Text Reader

Abstract

Provided in the present application are a control method for coordination between a lighting effect and music, a smart terminal, and a controlled device, which are aimed at solving the problem in the prior art of it being inconvenient to change a combination of music and a lighting effect, thereby making it difficult to quickly satisfy user requirements under various different occasions. The smart terminal is in communication connection with the controlled device, and the controlled device is used for presenting a lighting effect and directly or indirectly playing music. The control method comprises: generating on a human-computer interaction interface a custom scenario management page, which supports a user in freely combining lighting effects and music, wherein each group of a lighting effect and music forms a scenario, and a corresponding scenario label is customized by the user or preconfigured according to a set rule; and when any scenario is triggered, generating a corresponding playing instruction and sending the playing instruction to a controlled device, wherein the playing instruction includes a scenario label, so that the controlled device loads and runs scenario data matching the scenario label, and presents and plays a combination of a lighting effect and music for the corresponding scenario in a coordinated mode.
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Description

A control method for linking lighting effects with music, an intelligent terminal, and a controlled device Technical Field

[0001] The present application is applied to the field of atmosphere lighting, and in particular relates to a control method for linking lighting effects with music. Background Art

[0002] Mood lighting is a type of lighting designed to create a specific mood or environment by creating a specific light effect and atmosphere. Mood lighting typically uses LED technology and has adjustable color, brightness, and lighting effects to suit different occasions and needs.

[0003] a. The design and functionality of ambient lighting can vary by brand and model, but they generally share the following characteristics:

[0004] b. Adjust brightness: The ambient light can adjust the brightness from soft light to brighter light to suit different needs and environments.

[0005] c. Adjust color: Ambient lighting can provide a variety of color options, such as warm tones (such as yellow, orange), cool tones (such as blue, green) and colorful lighting effects; users can choose the appropriate color according to their needs.

[0006] d. Lighting effects: Some ambient lights have a variety of lighting effects, such as gradient, flashing, breathing light, etc. These effects can create unique light and shadow effects by changing the color and brightness.

[0007] e. Control method: Ambient lights can be controlled and adjusted through remote controls, mobile phone applications, or touch buttons, allowing users to easily change lighting settings.

[0008] Ambient lighting has a wide range of uses, from home decoration and commercial spaces to entertainment venues, relaxation and meditation, adding beauty and comfort to any environment, creating a specific atmosphere and mood, and providing a better experience. Combining ambient lighting with music is a common creative application, enhancing the atmosphere and expressiveness of the music, creating a more immersive and exciting experience. It can be used in home entertainment, parties, concerts, and other occasions, providing music lovers with both visual and auditory enjoyment.

[0009] At present, products that combine ambient lighting and music usually have the lighting effects corresponding to the music fixed when they leave the factory. The music or lighting effects cannot be changed, and they lack novelty after long-term use.

[0010] Chinese patent document CN113225879A discloses a vehicle interior lighting control method, an ambient light controller, and a control system. The ambient light controller communicates with an authorized cloud server and can obtain the latest lighting effect control strategy file from the authorized cloud server. When generating a lighting control signal, it combines the timestamp data stream of the music to be played and the lighting effect feature file containing the lighting effect feature values ​​on the timeline. Therefore, the vehicle interior lights can present lighting effects according to the musical melody of the music to be played, which improves the user experience to a certain extent. However, the lighting effect feature file itself has no connection with the music to be played, and relies on the updated lighting effect control strategy file to generate "lighting effects according to the musical melody of the music to be played", which makes it difficult to quickly meet user needs in a variety of different occasions.

[0011] Summary of the Invention

[0012] The present application provides a control method, intelligent terminal and controlled device for the linkage of lighting effects and music, aiming to solve the problem that the existing technology is not convenient for changing the combination of music and lighting effects and is difficult to quickly meet user needs in a variety of different occasions.

[0013] In a first aspect, a method for controlling lighting effects and music linkage is provided, which is applied to a smart terminal, wherein the smart terminal is in communication with a controlled device, and the controlled device is configured to present lighting effects and directly or indirectly play music. The method comprises:

[0014] Generate a custom scene management page on the human-computer interaction interface, allowing users to freely combine lighting effects and music; each set of lighting effects and music constitutes a scene, which can be customized by the user or pre-configured with corresponding scene labels according to set rules;

[0015] When any scene is triggered, a corresponding play instruction is generated and sent to the controlled device. The play instruction contains a scene tag, so that the controlled device loads and runs the scene data matching the scene tag, and jointly presents and plays the lighting effects and music combination of the corresponding scene.

[0016] Optionally, the content of each set of scene data includes a set of lighting effect data and music data, and the content of each scene tag includes a set of lighting data tags and music data tags; the lighting data tags correspond one-to-one to the lighting effect data, and the music data corresponds one-to-one to the music data tags.

[0017] Further optionally, before any of the scenes is triggered, several sets of scene data and corresponding scene tags are generated in advance according to user input;

[0018] Then, a number of lighting effect data and their lighting data tags, a number of music data and their music data tags are sent to the controlled device, so that the controlled device loads and runs them; or, when the play instruction is sent to the controlled device, the corresponding scene data is sent at the same time.

[0019] Further optionally, before any of the scenes is triggered, the controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records a number of corresponding scene tags, and pre-constructs a combination mapping relationship with the lighting data tags and the music data tags; the number of lighting effect data and the number of music data are downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of ​​the controlled device through burning software.

[0020] Optionally, any of the scenarios is triggered by triggering the scenario through a human-computer interaction interface of an application program of a smart terminal or by default enabling a switch in the scenario.

[0021] Optionally, the smart terminal application supports setting the number of times or duration of playback when triggering a scene.

[0022] Optionally, any of the scenes is triggered by a remote control, a human infrared sensor or a radar sensor, or by a default switch in the scene; wherein the triggering mechanism of the remote control, the human infrared sensor or the radar sensor is pre-configured in the smart terminal application.

[0023] Optionally, the custom scene management page supports custom editing and importing of lighting effect data and music data; the user freely combines lighting effects and music by combining lighting data tags corresponding to lighting effect data and music data tags corresponding to music data to obtain a scene and generate corresponding scene tags.

[0024] Optionally, the smart terminal application further supports calling an audio acquisition module of the smart terminal to acquire first audio data, and using the acquired first audio data as a music file for selection.

[0025] Optionally, the intelligent terminal further obtains rhythm variation data by calculating the frequency spectrum of the music, and adaptively adjusts specific lighting effects according to the rhythm variation data to generate the scene data.

[0026] In a second aspect, a method for linking lighting effects with music is applied to a controlled device, the controlled device being communicatively connected to a smart terminal, the controlled device being configured to present lighting effects and directly or indirectly play music; the method comprising:

[0027] Receive a play instruction sent by a smart terminal, wherein the play instruction includes a scene tag;

[0028] Load and run the scene data that matches the scene tag, call the lighting processing module and the sound effect processing module, and jointly present and play the lighting effects and music combination of the corresponding scene;

[0029] The play instruction is generated by the intelligent terminal when any scene is triggered, and each scene and its scene label correspond to a set of pre-set lighting effects and music.

[0030] Optionally, the content of each set of scene data includes a set of lighting effect data and music data, and the content of each scene tag includes a set of lighting data tags and music data tags; the lighting data tags correspond one-to-one to the lighting effect data, and the music data corresponds one-to-one to the music data tags.

[0031] Further optionally, the scene data currently loaded and running comes from the smart terminal; the specific implementation method is: the controlled device pre-receives a number of lighting effect data and their lighting data tags, a number of music data and their music data tags issued by the smart terminal; or, the smart terminal issues the current playback instruction and also issues the corresponding scene data.

[0032] Further optionally, the currently loaded and running scene data is downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of ​​the controlled device through burning software; the specific implementation method is: the controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records the corresponding number of scene tags, and pre-builds a combined mapping relationship with the lighting data tags and music data tags.

[0033] Optionally, the indirect music playback is to connect the controlled device through the smart terminal. The controlled device detects the signal of a nearby Bluetooth speaker. After the smart terminal selects the speaker to be connected, the controlled device connects and matches with the speaker and plays the music on the controlled device. At the same time, the controlled device presents a lighting effect.

[0034] Optionally, the controlled device is further configured with a microphone for collecting second audio data, saving the obtained second audio data to a local storage area and uploading the music data tag to the smart terminal for user selection.

[0035] Optionally, the controlled device further obtains rhythm variation data by calculating the frequency spectrum of the music, and adaptively adjusts a specific lighting effect according to the rhythm variation data to generate the scene data.

[0036] In a third aspect, an intelligent terminal includes a memory and a processor, wherein the memory stores a computer program. The special feature of the intelligent terminal is that when the processor executes the computer program, the steps of the control method for linking the above-mentioned lighting effects with music are implemented.

[0037] In a fourth aspect, a controlled device includes a memory and a processor, wherein the memory is divided into a program storage area and a data storage area. The special feature is that when the processor executes the computer program in the program storage area, the steps of the method for linking the above-mentioned lighting effects with music are implemented.

[0038] Compared with the prior art, this application has at least the following beneficial effects:

[0039] This application allows users to create various customized scenes by selecting lighting effects and music through a smart terminal application. For each scene, users can freely combine lighting effect files and music files. When playback is required, users only need to trigger the scene on the smart terminal (or trigger the scene through other pre-associated control methods), and the controlled device will simultaneously present and play the lighting effects and music corresponding to the scene. Users can switch scenes to obtain different audio-visual experiences, quickly meeting user needs. They can also change the lighting effects and music (the lighting effect and music combination settings for the scene) at any time through the smart device application. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] FIG1 is a schematic diagram of the working principle of the smart terminal in this application;

[0041] Figure 2 is an example of adding a scene (scenario) to the human-computer interaction interface of a smart terminal;

[0042] Figure 3 is an example of a specific scenario setting for the human-computer interaction interface of a smart terminal;

[0043] FIG4 is an example of adding music (selecting a music data tag) on ​​the human-computer interaction interface of a smart terminal;

[0044] FIG5 is a schematic diagram of the working principle of the controlled device in this application;

[0045] FIG6 is an example of a workflow of a smart terminal in one embodiment of the present application;

[0046] FIG7 is an example of a workflow of a controlled device in one embodiment of the present application. DETAILED DESCRIPTION

[0047] In order to make the purpose, technical solutions and advantages of this application more clear, the following further describes this application in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0048] In the description of this application: Unless otherwise specified, the terms "first" and "second" in this application are intended to distinguish the objects referred to and do not have any special meaning in terms of technical connotation (for example, they should not be understood as emphasizing the degree of importance or order, etc.). Expressions such as "including", "comprising", and "having" also mean "not limited to" (certain units, contents, steps, etc.).

[0049] In an embodiment of the present application, a method for controlling the linkage of lighting effects and music is provided, and the devices involved mainly include smart terminals and controlled devices.

[0050] Smart terminals, such as smartphones and tablets, have IoT functionality and are equipped with application software (APPs). They may also have built-in cameras. Smart terminals can be powered by iOS, Android, or Windows.

[0051] The controlled device is a device that communicates wirelessly with the smart terminal through the Internet of Things circuit and has music playback and light display functions; the controlled device can specifically be a smart light strip controller, a smart Christmas light controller, a smart neon light controller, etc., which can realize the opening and closing of the audio unit and the light unit, brightness adjustment, color temperature adjustment, color adjustment, mode pattern and speed change, timing control, light effect according to the rhythm of music, scene control, parameter setting and other functions; Bluetooth speakers can also be added to replace the controlled device to realize the music playback function (the controlled device plays music indirectly).

[0052] In one embodiment, as shown in FIG1 , a method for controlling lighting effects linked to music is provided, which includes, from the perspective of a smart terminal, the following steps:

[0053] Generate a custom scene management page (application GUI) in the human-computer interaction interface, allowing users to freely combine lighting effects and music; each set of lighting effects and music constitutes a scene, which can be customized by the user or pre-configured with corresponding scene tags according to set rules;

[0054] When any scene is triggered, a corresponding play instruction is generated and sent to the controlled device. The play instruction contains a scene tag, so that the controlled device loads and runs the scene data matching the scene tag, and jointly presents and plays the lighting effects and music combination of the corresponding scene.

[0055] The specific form of the scene label here is not limited. For example, it can be a simple numerical code, or it can be text, symbols, etc.

[0056] The scene data stored in the controlled device does not necessarily come from the smart terminal APP, but can also be downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of ​​the controlled device through burning software.

[0057] The content of each set of scene data includes a set of lighting effect data and music data, and the content of each scene tag includes a set of lighting data tags and music data tags; the lighting data tags correspond one-to-one to the lighting effect data, and the music data corresponds one-to-one to the music data tags.

[0058] This embodiment allows users to create various customized scenes by selecting lighting effects and music through a smart terminal application. For each scene, users can freely combine lighting effect files and music files. When playback is required, the user simply triggers the scene on the smart terminal (or triggers the scene through other pre-associated control methods), and the controlled device will simultaneously present and play the lighting effects and music corresponding to the scene. Users can switch scenes to obtain different audio-visual experiences, quickly meeting their needs. They can also change the lighting effects and music (the lighting effect and music combination settings for the scene) at any time through the smart device application.

[0059] The custom scene management page of the smart terminal's human-computer interaction interface supports custom editing and importing of lighting effect data and music data. Users can freely combine lighting effects and music by combining the lighting data tags corresponding to the lighting effect data and the music data tags corresponding to the music data to create a scene and generate the corresponding scene tag. Specific user operations supported include adding, deleting, editing, importing, recording, and naming scene tags.

[0060] Regarding the content of scene tags, in order to facilitate efficient management and use by users, scenes can be named individually. Then, in the playback instructions sent by the smart terminal to the controlled device, the field of the scene tag mainly consists of the scene tag field + the light data tag field + the music data tag field. However, in order to save the amount of transmitted data, especially when the human-computer interaction interface of the smart terminal can intuitively distinguish different scenes, the light data tag or the music data tag can also be used as the scene tag. Then, in the playback instructions sent by the smart terminal to the controlled device, the field of the scene tag mainly directly consists of the light data tag field + the music data tag field (without the need to add an additional scene tag field).

[0061] FIG2 is an example of adding a scene (scenario) in the human-computer interaction interface of a smart terminal, where “Rainbow after the Rain” is a music data label and can also serve as a scene label.

[0062] The scene data stored in the controlled device may be derived from the smart terminal: before any of the scenes is triggered, several sets of scene data and corresponding scene tags are generated in advance according to the user's input (operation); then several lighting effect data and their lighting data tags, and several music data and their music data tags are sent to the controlled device for loading and operation;

[0063] The specific process of sending data can be to send the scene data to the controlled device immediately after it is generated; the user can also select part or all of the scene data and send it to the controlled device; or the corresponding scene data can be sent at the same time as the play instruction is sent to the controlled device.

[0064] As mentioned above, user input can be a simple selection or confirmation operation, or it can be further edited or imported, entered, or other operations. For example, lighting effect data can be customized and edited on the app to produce a lighting effect. Lighting files can also be generated through other apps or computer software, imported into the app, and then sent to the controlled device. The app also supports calling the audio acquisition module of the smart terminal to collect first audio data (such as the user's own poetry recitation) and use the obtained first audio data as a music file for selection.

[0065] FIG3 is an example of a scene-specific setting of the human-computer interaction interface of a smart terminal.

[0066] FIG4 is an example of adding music (selecting the music data tag) in the human-computer interaction interface of a smart terminal, in which music built into the APP can be selected, or music downloaded by the user can be imported.

[0067] The scene data stored in the controlled device can also be downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of ​​the controlled device through the burning software: before any of the scenes is triggered, the controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records a number of corresponding scene tags, and pre-builds a combination mapping relationship with the lighting data tags and music data tags (for example: the scene tag "scene one" corresponds to the lighting data tag "lighting A" + music data tag "music C", the scene tag "scene two" corresponds to the lighting data tag "lighting B" + music data tag "music C", and the scene tag "scene three" corresponds to the lighting data tag "lighting D" + music data tag "music F"). In this way, as long as the user is clear about this combination mapping relationship, when the sound and light effect of lighting B + music C is needed, the scene tag "scene two" can be triggered. It can be recognized that in this case, the smart terminal APP may not have the function of editing and issuing scene data.

[0068] The specific method of generating scene data can also be: generating through other APPs or computer software.

[0069] There are various ways to trigger a scene, such as triggering a specific scene or a default scene through the human-computer interaction interface of a smart terminal application. Furthermore, the smart terminal application can also support setting the number of times or duration of playback when a scene is triggered. Another example is triggering a scene or a default scene through a remote control, human infrared sensor, or radar sensor. The triggering mechanism for the remote control, human infrared sensor, or radar sensor is pre-configured in the smart terminal application.

[0070] In an optional embodiment, the smart terminal application may further support calling the audio acquisition module of the smart terminal to acquire the first audio data, and use the acquired first audio data as a music file for selection.

[0071] In an optional embodiment, the intelligent terminal further obtains rhythm change data by calculating the frequency spectrum of the music, adaptively adjusts the specific lighting effects according to the rhythm change data, and generates final running scene data.

[0072] From the perspective of the controlled device, as shown in FIG5 , in one embodiment, a method for linking lighting effects with music is provided, including:

[0073] Receive a play instruction sent by a smart terminal, wherein the play instruction includes a scene tag;

[0074] Load and run the scene data that matches the scene tag, call the lighting processing module and the sound effect processing module, and jointly present and play the lighting effects and music combination of the corresponding scene;

[0075] The play instruction is generated by the intelligent terminal when any scene is triggered, and each scene and its scene label correspond to a set of pre-set lighting effects and music.

[0076] Similarly, the currently loaded and running scene data can come from the smart terminal, or can be downloaded from a third-party terminal, read from a mobile storage medium, or directly burned into the local storage area of ​​the controlled device through burning software.

[0077] The currently loaded and running scene data comes from the smart terminal; the controlled device pre-receives a number of lighting effect data and their lighting data tags, a number of music data and their music data tags issued by the smart terminal; or, the smart terminal issues the current playback instruction and the corresponding scene data at the same time.

[0078] The currently loaded and running scene data is downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of ​​the controlled device through the burning software; the controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records the corresponding number of scene tags, and pre-builds a combined mapping relationship with the lighting data tags and music data tags.

[0079] The controlled device is used to present lighting effects and play music directly or indirectly. The indirect music playback here can be connected to the controlled device through a smart terminal. The controlled device detects the signal of a nearby Bluetooth speaker. After the smart terminal selects the speaker to be connected, the controlled device connects and matches with the speaker and plays the music on the controlled device. At the same time, the controlled device presents lighting effects.

[0080] In an optional embodiment, the controlled device is further configured with a microphone for collecting second audio data, saving the obtained second audio data to a local storage area, and uploading the music data tag to the smart terminal for user selection. A potential application scenario of this setting is that the user needs to import a recording file as a music file to be selected, but if the recording file is large, the data transmission process will be longer. Therefore, the controlled device can also be configured with a microphone, and the second audio data (such as a larger recording file) is collected by the microphone of the controlled device and saved directly to the local storage area, and the audio data tag is uploaded to the smart terminal. The smart terminal can choose whether to require the controlled device to upload the data file to the smart terminal. Since the audio data is directly generated locally on the controlled device, it only needs to trigger the scene to start playing.

[0081] In an optional embodiment, the controlled device further obtains rhythm variation data by calculating the frequency spectrum of the music, and adaptively adjusts specific lighting effects according to the rhythm variation data to generate the scene data.

[0082] The following briefly introduces a typical interactive workflow.

[0083] As the transmitter of data and instructions, the intelligent terminal mainly performs the following steps as shown in Figure 6:

[0084] Step 1: Select the controlled device in the smart terminal application (APP);

[0085] Step 2: Add a scene in the app and select lighting effects and / or audio files in the scene mode. Some scenes may not require lighting, so you only need to select the audio file (in this case, the lighting data field in the scene tag is empty). Some scenes may not require music, so you only need to select the lighting effect file (in this case, the music data field in the scene tag is empty).

[0086] Step 3: Send data to the controlled device via WIFI or Bluetooth mode.

[0087] There are many ways to trigger different scenes or switches, such as by pressing a button, using a smartphone app, using a remote control, or using a human infrared sensor or radar sensor. Users can also set the number of times or duration to play each scene when it is triggered.

[0088] Smart terminal apps can set default trigger mechanisms and playback strategies. For example, if you have created "Game Scene 1," "Game Scene 2," "Street Dance Scene 1," "Midsummer Night Scene," and "Glorious Scene," and the last scene played was "Game Scene 2," then even if the user hasn't directly triggered "Game Scene 2" but has simply activated the "switch," the last scene will continue to play by default. Users can also pre-set the default playback of the most recently generated scene data.

[0089] Accordingly, the controlled device, as the receiving end of data and instructions, mainly performs the following steps as shown in Figure 7:

[0090] Step 1: The controlled device receives data sent by the smart terminal. The data includes control commands and / or scene data. The scene data includes lighting effect data and / or music data. If the controlled device has previously saved the scene data (which can be from the smart terminal or generated by other apps or computer software), the smart terminal only needs to send a control command (play instruction). The control command usually includes a scene tag. The controlled device can search for the corresponding lighting effect data and / or music data based on the scene tag (lighting data tag, music data tag).

[0091] Step 2: The controlled device saves the scene data to the local storage area;

[0092] Step 3: The controlled device calls the lighting processing module to play lighting effects and uses the sound processing module to play music according to the control command.

[0093] Among them, if the current smart terminal only issues a play instruction, the controlled device obtains the previously downloaded scene data from the local storage area and plays it; if the current smart terminal simultaneously issues a play instruction and new scene data (and the play instruction indicates that the new scene data is to be played), it will be played directly while saving the scene data.

[0094] In one embodiment, a smart terminal is also provided, including a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the steps of the control method for linking the above-mentioned lighting effects with music (executed by the smart terminal) are implemented.

[0095] In one embodiment, a controlled device is also provided, including a memory and a processor, wherein the memory is divided into a program storage area and a data storage area, and when the processor executes the computer program in the program storage area, the steps of the method for linking the above-mentioned lighting effects with music (executed by the controlled device) are implemented.

[0096] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

Claims

1. A control method for the linkage between lighting effects and music, characterized in that, Applied to a smart terminal, the smart terminal is in communication with a controlled device, the controlled device is used to present lighting effects and directly or indirectly play music; the control method includes: Generate a custom scene management page on the human-computer interaction interface, allowing users to freely combine lighting effects and music; each set of lighting effects and music constitutes a scene, which can be customized by the user or pre-configured with corresponding scene labels according to set rules; When any scene is triggered, a corresponding play instruction is generated and sent to the controlled device. The play instruction contains a scene tag, so that the controlled device loads and runs the scene data matching the scene tag, and jointly presents and plays the lighting effects and music combination of the corresponding scene.

2. The control method for the linkage between lighting effects and music according to claim 1, wherein The content of each set of scene data includes a set of lighting effect data and music data, and the content of each scene tag includes a set of lighting data tags and music data tags; the lighting data tags correspond one-to-one to the lighting effect data, and the music data corresponds one-to-one to the music data tags.

3. The method for controlling the linkage between lighting effects and music according to claim 2, characterized in that: Before any of the scenes is triggered, several sets of scene data and corresponding scene tags are generated in advance according to user input; Then, a number of lighting effect data and their lighting data tags, a number of music data and their music data tags are sent to the controlled device, so that the controlled device loads and runs them; or, when the play instruction is sent to the controlled device, the corresponding scene data is sent at the same time.

4. The control method for the linkage between lighting effects and music according to claim 2, characterized in that, Before any of the scenes is triggered, the controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records a number of corresponding scene tags, and pre-builds a combination mapping relationship with the lighting data tags and the music data tags; the number of lighting effect data and the number of music data are downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of the controlled device through burning software.

5. The control method for the linkage between lighting effects and music according to claim 1, wherein Any of the scenarios is triggered by triggering the scenario or defaulting to a switch in the scenario through the human-computer interaction interface of the smart terminal application.

6. The control method for the linkage between lighting effects and music according to claim 5, characterized in that, The smart terminal application supports setting the number of times or duration of playback when triggering a scene.

7. The control method for the linkage between lighting effects and music according to claim 1, characterized in that Any of the above scenarios is triggered by a remote control, a human infrared sensor or a radar sensor, or by a default switch in the scenario; wherein the triggering mechanism of the remote control, the human infrared sensor or the radar sensor is pre-configured in the smart terminal application.

8. The control method for the linkage between lighting effects and music according to claim 1, characterized in that, The custom scene management page supports custom editing and importing of lighting effect data and music data; the user can freely combine lighting effects and music by combining the lighting data tags corresponding to the lighting effect data and the music data tags corresponding to the music data to obtain a scene and generate corresponding scene tags.

9. The control method for the linkage between lighting effects and music according to claim 5, characterized in that, The smart terminal application further supports calling the audio acquisition module of the smart terminal to acquire first audio data, and using the acquired first audio data as a music file for selection.

10. The control method for the linkage between lighting effects and music according to claim 1, characterized in that, The intelligent terminal also obtains rhythm change data by calculating the frequency spectrum of the music, and adaptively adjusts the specific lighting effect according to the rhythm change data to generate the scene data.

11. A method for the linkage between lighting effects and music, characterized in that, Applied to a controlled device, the controlled device is communicatively connected to a smart terminal, and the controlled device is used to present lighting effects and directly or indirectly play music; the method includes: Receive a play instruction sent by a smart terminal, wherein the play instruction includes a scene tag; Load and run the scene data that matches the scene tag, call the lighting processing module and the sound effect processing module, and jointly present and play the lighting effects and music combination of the corresponding scene; The play instruction is generated by the intelligent terminal when any scene is triggered, and each scene and its scene label correspond to a set of pre-set lighting effects and music.

12. The method for the linkage between the lighting effect and music according to claim 11, wherein The content of each set of scene data includes a set of lighting effect data and music data, and the content of each scene tag includes a set of lighting data tags and music data tags; the lighting data tags correspond one-to-one to the lighting effect data, and the music data corresponds one-to-one to the music data tags.

13. The method for the linkage between the lighting effect and the music according to claim 12, wherein The scene data currently loaded and running comes from the smart terminal; the specific implementation method is: The controlled device receives in advance a number of lighting effect data and lighting data tags, a number of music data and music data tags sent by the smart terminal; or, the smart terminal sends the current play instruction and the corresponding scene data at the same time.

14. The method for the linkage between lighting effects and music according to claim 12, wherein, The currently loaded and running scene data is downloaded from a third-party terminal, read from a mobile storage medium, or directly burned to the local storage area of the controlled device through burning software; the specific implementation method is: The controlled device pre-stores a number of lighting effect data and their lighting data tags, a number of music data and their music data tags, and the smart terminal records a number of corresponding scene tags, and pre-builds a combination mapping relationship with the lighting data tags and music data tags.

15. The method for linking lighting effects with music according to claim 11, characterized in that, The indirect music playback is to connect the controlled device through the smart terminal. The controlled device detects the signal of the nearby Bluetooth speaker. After the smart terminal selects the speaker to be connected, the controlled device connects and matches with the speaker and plays the music on the controlled device. At the same time, the controlled device presents a lighting effect.

16. The method for linking lighting effects with music according to claim 11, wherein The controlled device is further configured with a microphone for collecting second audio data, saving the obtained second audio data to a local storage area and uploading the music data tag to the smart terminal for user selection.

17. The method for the linkage between lighting effects and music according to claim 11, wherein The controlled device also obtains rhythm change data by calculating the frequency spectrum of the music, and adaptively adjusts the specific lighting effect according to the rhythm change data to generate the scene data.

18. An intelligent terminal, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, the steps of the method for controlling the linkage of lighting effects and music as described in any one of claims 1 to 10 are implemented.

19. A controlled device, comprising a memory and a processor, wherein the memory is divided into a program storage area and a data storage area, characterized in that, When the processor executes the computer program in the program storage area, the steps of the method for linking lighting effects with music as described in any one of claims 11 to 17 are implemented.

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