LED control regulation management system based on multistage color modulation

By designing a multi-level color tuning LED control and adjustment management system, the precise adjustment of the brightness, color temperature and color of LED lamps is achieved, solving the color tuning limitations of traditional LED lighting systems, and improving user experience and control efficiency.

CN120379092AInactive Publication Date: 2025-07-25合肥寅越信息技术有限公司
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Patent Information

Application Number
CN202510656101.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional LED lighting systems have limitations in color tuning, and cannot achieve multi-level color tuning, which cannot meet users' lighting needs in different scenarios.

Method used

A LED control and adjustment management system based on multi-level color tuning is designed, including a management center, a light acquisition module, a light processing module and a light adjustment module. Through data acquisition, processing and light control signal generation, it realizes precise adjustment of the brightness, color temperature and color of the LED lamp.

Benefits of technology

It realizes accurate adjustment according to the needs of different scenarios, improves user visual experience and comfort, meets the needs of diversified lighting effects, and improves control efficiency and accuracy.

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Patent Text Reader

Abstract

The invention discloses an LED control adjustment management system based on multistage color modulation, and relates to the field of light control, and the system comprises a management center which is in communication connection with a light collection module, a light processing module and a light adjustment module. The light acquisition module is used for performing information acquisition on a target LED lamp to obtain corresponding light information; the light processing module is used for carrying out data processing on the collected light information and generating a corresponding light control signal according to a data processing result; the light adjustment module is used for performing light adjustment on the corresponding LED lamp based on the generated light control signal; through intelligent and refined light adjusting means, the use effect and user experience of the LED lamp are improved, and energy consumption is reduced through energy efficiency optimization.
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Description

Technical Field

[0001] The present invention relates to the field of lighting control, and particularly to an LED control, regulation and management system based on multi-level color adjustment. Background Art

[0002] With the global emphasis on energy conservation and emission reduction and the continuous development of technology, LED lighting has become the mainstream product in the lighting market due to its advantages such as high energy efficiency and long lifespan. LED lighting has become the mainstream choice for modern lighting;

[0003] Compared with the prior art, traditional LED lighting systems have some limitations in color adjustment, unable to achieve multi-level color adjustment and meet the lighting needs of users in different scenarios; these are the problems we need to solve. For this reason, we provide an LED control, regulation and management system based on multi-level color adjustment. Summary of the Invention

[0004] The purpose of the present invention is to provide an LED control, regulation and management system based on multi-level color adjustment.

[0005] The purpose of the present invention can be achieved through the following technical solutions: an LED control, regulation and management system based on multi-level color adjustment, including a management center, characterized in that the management center is communicatively connected to a lighting acquisition module, a lighting processing module and a lighting adjustment module;

[0006] The lighting acquisition module is used to collect information of the target LED lamp to obtain corresponding lighting information;

[0007] The lighting processing module is used to process the collected lighting information and generate corresponding lighting control signals according to the data processing results;

[0008] The lighting adjustment module is used to adjust the lighting of the corresponding LED lamp based on the generated lighting control signals.

[0009] Further, the process of the lighting acquisition module collecting information of the target LED lamp to obtain corresponding lighting information includes:

[0010] Data acquisition nodes are arranged in the lighting acquisition module; position data and basic data of the corresponding LED lamp are obtained;

[0011] Based on the position data and basic data, the lighting area corresponding to the corresponding LED lamp is obtained;

[0012] Based on the data acquisition nodes, information of the target lighting area is collected to obtain corresponding environmental data, and the environmental data includes environmental brightness and environmental color;

[0013] The data acquisition node is also used to collect the light of the target LED lamp to obtain corresponding light data, where the light data includes light brightness, light color temperature, and light color.

[0014] Summarize the collected position data, basic data, environmental data, and light data to obtain corresponding light information.

[0015] Further, the process of processing the collected light information and generating corresponding light control signals based on the data processing results includes:

[0016] Construct a scene database, which stores the light brightness, light color temperature, and light color corresponding to the same type of LED lamps under different event scenarios; the event scenarios include but are not limited to home lighting scenarios and event lighting scenarios.

[0017] Obtain the light scene required by the user, perform scene retrieval in the corresponding scene database based on it, and obtain the light brightness, light color temperature, and light color under the required light scene based on the retrieval result; and mark them as standard brightness, standard color, and standard color temperature.

[0018] Obtain the real-time light data corresponding to the target LED lamp based on the light information; compare the obtained standard brightness, standard color, and standard color temperature with the real-time light data respectively, and formulate corresponding color adjustment tasks according to the comparison results. The color adjustment tasks include brightness adjustment, color temperature adjustment, and color adjustment.

[0019] Obtain the basic data of the target LED lamp, obtain the arrangement mode of the lamp beads in the corresponding LED lamp based on the basic data, and build a corresponding light spectrum based on the arrangement mode. Several light nodes are set in the light spectrum.

[0020] Furthermore, perform light adjustment on the corresponding LED lamp based on the light spectrum and the corresponding color adjustment tasks.

[0021] Obtain the lamp bead data corresponding to each lamp bead under the corresponding arrangement mode, and record it as the adjusted light data. The adjusted light data includes the adjusted light color, light brightness, and light color temperature.

[0022] Obtain the light type of the corresponding LED lamp based on the light information, obtain the expected power supply corresponding to the corresponding arrangement mode based on the light type, and compare them; select the adjusted light data corresponding to the arrangement mode with the lowest expected power supply and use it as the control light data; at the same time, generate corresponding light control signals and feedback them to the management center.

[0023] Further, the corresponding brightness adjustment process is as follows:

[0024] Obtain the corresponding standard brightness and real-time light brightness, calculate their deviation values to obtain the corresponding brightness deviation; adjust the individual brightness of the lamp beads in the corresponding LED lamp based on the brightness deviation; furthermore, when the light brightness of the corresponding LED lamp meets the corresponding standard brightness based on the adjustment result, obtain the number of lit lamp beads in the corresponding LED lamp and the lamp bead brightness corresponding to all individual lamp beads; at the same time, obtain the arrangement mode of the lamp beads in the corresponding LED lamp under the corresponding standard brightness.

[0025] Furthermore, the corresponding color temperature adjustment process is as follows:

[0026] Read the obtained color temperature deviation, and respectively obtain the corresponding R deviation value, G deviation value, and B deviation value of the corresponding LED lamp under the RGB three primary color channels based on the color temperature deviation;

[0027] Furthermore, adjust the individual primary colors corresponding to each lamp bead in the corresponding LED lamp based on the R deviation value, G deviation value, and B deviation value until the color temperature of the corresponding LED lamp meets the standard color temperature;

[0028] Obtain the arrangement positions of the lamp beads in the corresponding arrangement mode; mark the light nodes in the corresponding light spectrum based on the arrangement positions to obtain the corresponding color adjustment nodes, where the color adjustment nodes refer to the light nodes corresponding to the lit lamp beads in the corresponding arrangement mode.

[0029] Furthermore, the corresponding color adjustment process is as follows:

[0030] Construct corresponding different color adjustment tasks based on the color deviation and assign them to the corresponding color adjustment nodes; the color adjustment nodes can perform different color adjustment functions based on the assigned color adjustment tasks;

[0031] After the assignment is completed, adjust the arrangement positions of the color adjustment nodes in the corresponding light spectrum. After the adjustment is completed, obtain the corresponding color deviation, and construct a corresponding color grading unit based on the color deviation. The color grading unit is used for the exposure, contrast, hue, etc. corresponding to the adjusted color adjustment nodes;

[0032] Apply the color grading unit to the color adjustment nodes, and adjust the exposure, contrast, and hue corresponding to the corresponding color adjustment nodes based on the color grading unit, and perform grading and superposition until the current lamp bead data of the corresponding LED lamp meets the standard brightness, standard color, and standard color temperature, and end the above adjustment process.

[0033] Furthermore, the process of the lighting adjustment module adjusting the corresponding LED lamp based on the generated lighting control signal includes:

[0034] Set up monitoring nodes. After receiving the light control signal, the monitoring nodes monitor the data of the corresponding LED lights, and the monitoring data includes the light voltage and light current of the corresponding LED lights;

[0035] Read the obtained monitoring data, and obtain the real-time power supply power of the corresponding LED lights based on the monitoring data, and calculate the deviation value with the obtained expected power supply power to obtain the corresponding power deviation;

[0036] If the power deviation is zero, do not perform any other operations;

[0037] If the power deviation is not zero, obtain the light voltage corresponding to the target LED light, and compare it with the preset voltage threshold;

[0038] If the corresponding light voltage is within the voltage threshold, do not perform any other operations;

[0039] If the corresponding light voltage is outside the voltage threshold, read the obtained expected power supply power, and adjust the light current in the corresponding LED light based on the expected power supply power to make the corresponding light voltage meet the requirements;

[0040] After the adjustment is completed, obtain the real-time light data corresponding to the target LED light after adjustment, compare the real-time light data with the corresponding control light data, and judge whether the current light adjustment meets the requirements according to the comparison result. If it meets the requirements, do not perform any other operations;

[0041] If it does not meet the requirements, feedback the obtained real-time light data to the management center, and the management center performs secondary light adjustment on the corresponding LED lights based on the real-time light data.

[0042] Compared with the prior art, the beneficial effects of the present invention are:

[0043] 1. By precisely adjusting the brightness, color temperature and color of the LED lights, it can provide a more comfortable and suitable lighting environment for users according to different scene requirements, significantly improving the visual experience and comfort of users;

[0044] 2. Adopting an intelligent control strategy, it can automatically retrieve the standard parameters in the scene database according to the light scene set by the user, and generate the corresponding light control signal to realize the automatic adjustment of the light effect without manual intervention, improving the control efficiency and accuracy;

[0045] 3. Through the multi-level color adjustment function, not only can the brightness and color temperature of the light be adjusted, but also the light color can be finely adjusted to achieve a variety of color effects, meeting the diverse needs of users for light effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] Figure 1 This is the schematic diagram of the present invention. Detailed implementation manners

[0047] As Figure 1 shown, a multi-level color adjustment-based LED control and regulation management system includes a management center, and the management center is communicatively connected to a lighting acquisition module, a lighting processing module, and a lighting adjustment module;

[0048] The lighting acquisition module is used to collect information on the target LED lamp to obtain corresponding lighting information;

[0049] The lighting processing module is used to process the collected lighting information and generate corresponding lighting control signals according to the data processing results;

[0050] The lighting adjustment module is used to adjust the lighting of the corresponding LED lamp based on the generated lighting control signals;

[0051] It should be further noted that, in the specific implementation process, the process of the lighting acquisition module collecting information on the target LED lamp to obtain corresponding lighting information includes:

[0052] Data acquisition nodes are arranged in the lighting acquisition module, and the data acquisition nodes are used to collect relevant information on the target LED lamp;

[0053] Obtain the position data and basic data of the corresponding LED lamp, where the position data includes information such as the floor where the LED lamp is located, the floor area, and the height of the LED lamp from the ground; the basic data includes information such as the type, size, and power of the LED lamp;

[0054] Based on the position data and basic data, obtain the lighting area corresponding to the corresponding LED lamp;

[0055] Furthermore, based on the data acquisition nodes, collect information on the target lighting area to obtain corresponding environmental data, where the environmental data includes environmental brightness and environmental color;

[0056] At the same time, the data acquisition nodes are also used to collect lighting data on the target LED lamp to obtain corresponding lighting data, where the lighting data includes lighting brightness, lighting color temperature, and lighting color;

[0057] Summarize the collected position data, basic data, environmental data, and lighting data to obtain corresponding lighting information.

[0058] It should be further noted that, in the specific implementation process, the process of the lighting processing module processing the collected lighting information and generating corresponding lighting control signals according to the data processing results includes:

[0059] Build a scene database, which stores the light brightness, light color temperature, and light color corresponding to the same type of LED lights under different event scenarios; the event scenarios include but are not limited to home lighting scenarios and event lighting scenarios;

[0060] Obtain the lighting scene required by the user, perform scene retrieval in the corresponding scene database based on it, and obtain the light brightness, light color temperature, and light color under the required lighting scene based on the retrieval result; and mark them as standard brightness, standard color, and standard color temperature;

[0061] Obtain the real-time lighting data corresponding to the target LED light based on the lighting information; compare the obtained standard brightness, standard color, and standard color temperature with the real-time lighting data respectively, and formulate corresponding color adjustment tasks according to the comparison results. The color adjustment tasks include brightness adjustment, color temperature adjustment, and color adjustment;

[0062] Obtain the basic data of the target LED light, obtain the arrangement mode of the lamp beads in the corresponding LED light based on the basic data, build a corresponding lighting map based on the arrangement mode, and several lighting nodes are set in the lighting map. Among them, the arrangement mode of the lighting nodes is the same as the corresponding lamp bead arrangement mode, and one lighting node can be used to represent one lamp bead;

[0063] Read the brightness adjustment of the obtained adjustment task, and obtain the on / off state of the corresponding lamp beads under the lighting scene described by the user based on the brightness adjustment; the corresponding brightness adjustment process is as follows:

[0064] Obtain the corresponding standard brightness and real-time lighting brightness, calculate their deviation values to obtain the corresponding brightness deviation; adjust the individual brightness of the lamp beads in the corresponding LED light based on the brightness deviation; furthermore, when the lighting brightness of the corresponding LED light meets the corresponding standard brightness based on the adjustment result, obtain the number of lit lamp beads in the corresponding LED light and the lamp bead brightness corresponding to all lamp bead individuals; at the same time, obtain the arrangement mode of the lamp beads in the corresponding LED light under the corresponding standard brightness;

[0065] Obtain the corresponding color temperature adjustment, which is used to adjust the color temperature of the lamp beads in the target LED light. The corresponding color temperature adjustment process is as follows:

[0066] Read the obtained color temperature deviation, and respectively obtain the R deviation value, G deviation value, and B deviation value corresponding to the corresponding LED light in the RGB three primary color channels based on the color temperature deviation;

[0067] Furthermore, based on the R deviation value, G deviation value, and B deviation value, the individual primary colors corresponding to each lamp bead in the corresponding LED lamp are obtained for adjustment until the color temperature of the corresponding LED lamp meets the standard color temperature;

[0068] It should be further noted that in the specific implementation process, the actual adjustment process of the individual primary colors of the lamp beads depends on the R deviation value, G deviation value, and B deviation value. For example, if the corresponding deviation value is positive, the corresponding primary color deviation is adjusted downward; if the deviation value is negative, the corresponding primary color deviation is adjusted upward; if the deviation value is zero, no other operations are required;

[0069] Taking a certain arrangement method as an example, the arrangement positions of the lamp beads in the corresponding arrangement method are obtained; based on the arrangement positions, the lighting nodes in the corresponding lighting atlas are marked to obtain the corresponding color adjustment nodes, where the color adjustment nodes refer to the lighting nodes corresponding to the lit lamp beads in the corresponding arrangement method;

[0070] The corresponding color adjustment is obtained, and the color adjustment is used for further color processing of the LED lamp after the color temperature adjustment. The corresponding color adjustment process is as follows:

[0071] Based on the color deviation, corresponding different color adjustment tasks are constructed and assigned to the corresponding color adjustment nodes; the color adjustment nodes can adopt different color adjustment functions based on the assigned color adjustment tasks. For example: one color adjustment node is used for basic color correction, and another color adjustment node is used for color separation or special effects;

[0072] After the assignment is completed, the arrangement positions of the color adjustment nodes in the corresponding lighting atlas are adjusted, thereby affecting the superposition order of the color adjustment results;

[0073] After the adjustment is completed, the corresponding color deviation is obtained, and based on the color deviation, a corresponding color grading unit is constructed. The color grading unit is used for the exposure, contrast, hue, etc. corresponding to the adjusted color adjustment nodes, thereby realizing a more complex color adjustment effect;

[0074] The color grading unit is applied to the color adjustment nodes, and based on the color grading unit, the exposure, contrast, and hue corresponding to the corresponding color adjustment nodes are adjusted and graded and superimposed, thereby realizing more delicate color adjustment control;

[0075] Until the current lamp bead data of the corresponding LED lamp meets the standard brightness, standard color, and standard color temperature, the above adjustment process ends;

[0076] The lamp bead data corresponding to each lamp bead in the corresponding arrangement method is obtained and recorded as the adjusted lighting data, and the adjusted lighting data includes the adjusted lighting color, lighting brightness, and lighting color temperature;

[0077] Using the same method as above, obtain the adjusted lighting data corresponding to different permutations;

[0078] Based on the lighting information, obtain the lighting type of the corresponding LED lamp. Based on the lighting type, respectively obtain the expected power supply corresponding to different permutations, and compare them; select the adjusted lighting data corresponding to the permutation with the lowest expected power supply, and use it as the control lighting data; at the same time, generate the corresponding lighting control signal and feedback it to the management center.

[0079] It should be further noted that in the specific implementation process, the process of the lighting adjustment module adjusting the lighting of the corresponding LED lamp based on the generated lighting control signal includes:

[0080] Set up monitoring nodes. When receiving the lighting control signal, the monitoring nodes monitor the data of the corresponding LED lamp, and the monitoring data includes the lighting voltage and lighting current of the corresponding LED lamp; among them, the monitoring nodes are deployed inside the lighting driver of the LED lamp;

[0081] Read the obtained monitoring data, and obtain the real-time power supply of the corresponding LED lamp from the monitoring data, and calculate the deviation value with the obtained expected power supply to obtain the corresponding power deviation;

[0082] If the power deviation is zero, do not perform any other operations;

[0083] If the power deviation is not zero, obtain the lighting voltage corresponding to the target LED lamp, and compare it with the preset voltage threshold; among them, the voltage threshold refers to the standard voltage range corresponding to the corresponding LED lamp under normal operation, which is determined by the staff based on historical work experience;

[0084] If the corresponding lighting voltage is within the voltage threshold, do not perform any other operations;

[0085] If the corresponding lighting voltage is outside the voltage threshold, read the obtained expected power supply, and adjust the lighting current in the corresponding LED lamp based on the expected power supply to make the corresponding lighting voltage meet the requirements;

[0086] After the adjustment is completed, obtain the real-time lighting data corresponding to the adjusted target LED lamp, compare the real-time lighting data with the corresponding control lighting data, and judge whether the current lighting adjustment meets the requirements based on the comparison result. If it meets the requirements, do not perform any other operations;

[0087] If it does not meet the requirements, feedback the obtained real-time lighting data to the management center, and the management center performs secondary lighting adjustment on the corresponding LED lamp based on the real-time lighting data;

[0088] It should be further noted that, in the specific implementation process, if the real-time power supply of the target LED lamp cannot meet the expected power supply during the corresponding lighting current adjustment process, the lighting adjustment module will read the lighting voltage of the target LED lamp and adjust the power supply voltage of the LED lamp within the range allowed by the voltage threshold; and during the corresponding lighting voltage and lighting current adjustment process, the circuit loss of the target LED lamp needs to be considered.

[0089] The above embodiments are only used to illustrate the technical method of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical method of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical method of the present invention.

Claims

1. An LED control, adjustment and management system based on multi-level color adjustment, including a management center, characterized in that, The management center is communicatively connected to a lighting acquisition module, a lighting processing module, and a lighting adjustment module; The lighting acquisition module is used to collect information from the target LED lamp to obtain corresponding lighting information; The lighting processing module is used to process the collected lighting information and generate corresponding lighting control signals based on the results of the data processing; The lighting adjustment module is used to adjust the lighting of the corresponding LED lamp based on the generated lighting control signals.

2. The LED control, adjustment and management system based on multi-level color adjustment according to claim 1, characterized in that The process by which the lighting acquisition module collects information from the target LED lamp to obtain corresponding lighting information includes: A data acquisition node is provided in the lighting acquisition module; position data and basic data of the corresponding LED lamp are obtained; Based on the position data and the basic data, the lighting area corresponding to the corresponding LED lamp is obtained; Based on the data acquisition node, information is collected from the target lighting area to obtain corresponding environmental data, where the environmental data includes environmental brightness and environmental color; The data acquisition node is also used to collect lighting data from the target LED lamp to obtain corresponding lighting data, where the lighting data includes lighting brightness, lighting color temperature, and lighting color; The collected position data, basic data, environmental data, and lighting data are summarized to obtain corresponding lighting information.

3. A multi - level color - adjustment - based LED control and regulation management system according to claim 2, wherein, The process of processing the collected lighting information and generating corresponding lighting control signals based on the results of the data processing includes: A scene database is constructed, and the scene database stores the lighting brightness, lighting color temperature, and lighting color corresponding to the same type of LED lamp under different event scenarios; The lighting scene required by the user is obtained, and scene retrieval is performed in the corresponding scene database based on it. Based on the retrieval results, the lighting brightness, lighting color temperature, and lighting color under the required lighting scene are obtained; and they are marked as standard brightness, standard color, and standard color temperature; Based on the lighting information, the real-time lighting data corresponding to the target LED lamp is obtained; the obtained standard brightness, standard color, and standard color temperature are respectively compared with the real-time lighting data, and corresponding color adjustment tasks are formulated based on the comparison results. The color adjustment tasks include brightness adjustment, color temperature adjustment, and color adjustment; The basic data of the target LED lamp is obtained. Based on the basic data, the arrangement mode of the lamp beads in the corresponding LED lamp is obtained. Based on the arrangement mode, a corresponding lighting map is built, and a number of lighting nodes are set in the lighting map; Furthermore, based on the lighting map and the corresponding color adjustment tasks, the lighting of the corresponding LED lamp is adjusted; The lamp bead data corresponding to each lamp bead in the corresponding arrangement mode is obtained and recorded as adjusted lighting data. The adjusted lighting data includes the adjusted lighting color, lighting brightness, and lighting color temperature; Based on the lighting information, the lighting type of the corresponding LED lamp is obtained. Based on the lighting type, the expected power supply power corresponding to the corresponding arrangement mode is obtained and compared; the adjusted lighting data corresponding to the arrangement mode with the lowest expected power supply power is selected and used as the control lighting data; at the same time, a corresponding lighting control signal is generated and fed back to the management center.

4. A multi-level color-tuning-based LED control, adjustment and management system according to claim 3, characterized in that, The corresponding brightness adjustment process is as follows: Obtain the corresponding standard brightness and the real-time light brightness, calculate their deviation values to obtain the corresponding brightness deviation; adjust the individual brightness of the lamp beads in the corresponding LED lamp based on the brightness deviation; furthermore, when the light brightness of the corresponding LED lamp meets the corresponding standard brightness based on the adjustment result, obtain the number of lit lamp beads in the corresponding LED lamp and the lamp bead brightness corresponding to all individual lamp beads; at the same time, obtain the arrangement mode of the lamp beads in the corresponding LED lamp under the corresponding standard brightness.

5. A multi-level color-tuning-based LED control, regulation, and management system according to claim 4, wherein The corresponding color temperature adjustment process is as follows: Read the obtained color temperature deviation, and respectively obtain the R deviation value, G deviation value, and B deviation value corresponding to the corresponding LED lamp in the RGB three primary color channels based on the color temperature deviation; Furthermore, adjust the individual primary colors corresponding to each lamp bead in the corresponding LED lamp based on the R deviation value, G deviation value, and B deviation value until the color temperature of the corresponding LED lamp meets the standard color temperature; Obtain the arrangement positions of the lamp beads in the corresponding arrangement mode; mark the light nodes in the corresponding light spectrum based on the arrangement positions to obtain the corresponding color adjustment nodes, where the color adjustment nodes refer to the light nodes corresponding to the lit lamp beads in the corresponding arrangement mode.

6. The LED control, regulation and management system based on multi-level color adjustment according to claim 5, wherein The corresponding color adjustment process is as follows: Construct corresponding different color adjustment tasks based on the color deviation and assign them to the corresponding color adjustment nodes; the color adjustment nodes can perform different color adjustment functions based on the assigned color adjustment tasks; After the assignment is completed, adjust the arrangement positions of the color adjustment nodes in the corresponding light spectrum. After the adjustment is completed, obtain the corresponding color deviation, and construct a corresponding color grading unit based on the color deviation. The color grading unit is used for the exposure, contrast, hue, etc. corresponding to the adjusted color adjustment nodes; Apply the color grading unit to the color adjustment nodes, and adjust the exposure, contrast, and hue corresponding to the corresponding color adjustment nodes based on the color grading unit, and perform grading and superposition until the current lamp bead data of the corresponding LED lamp meets the standard brightness, standard color, and standard color temperature, and end the above adjustment process.

7. A multi - level color - tuning - based LED control, regulation and management system according to claim 3, characterized in that, The process of the light adjustment module adjusting the corresponding LED lamp based on the generated light control signal includes: Set a monitoring node. When receiving the light control signal, the monitoring node monitors the data of the corresponding LED lamp, and the monitoring data includes the light voltage and light current of the corresponding LED lamp; Read the obtained monitoring data, and obtain the real-time power supply power of the corresponding LED lamp from the monitoring data, and calculate the deviation value with the obtained expected power supply power to obtain the corresponding power deviation; If the power deviation is zero, do not perform any other operations; If the power deviation is not zero, obtain the light voltage corresponding to the target LED lamp and compare it with the preset voltage threshold; If the corresponding light voltage is within the voltage threshold, do not perform any other operations; If the corresponding light voltage is outside the voltage threshold, read the obtained expected power supply power, and adjust the light current in the corresponding LED lamp based on the expected power supply power to make the corresponding light voltage meet the requirements; After the adjustment is completed, obtain the real-time lighting data corresponding to the target LED lamp after adjustment, compare the real-time lighting data with the corresponding control lighting data, and determine whether the current lighting adjustment meets the requirements based on the comparison result. If it meets the requirements, no other operations are performed. If it does not meet the requirements, the obtained real-time lighting data is fed back to the management center, and the management center performs secondary lighting adjustment on the corresponding LED lamp based on the real-time lighting data.

8. A multi-level color-tuning-based LED control, adjustment, and management system according to claim 7, characterized in that, If the real-time power supply power of the target LED lamp cannot meet the expected power supply power during the adjustment process of the corresponding lighting current, the lighting adjustment module will read the lighting voltage of the target LED lamp and adjust the power supply voltage of the LED lamp within the range allowed by the voltage threshold.