Intelligent light control box based on loop light and control method

By designing a loop-based intelligent control box in the lighting control system, using a multi-component sleep and pulse structure to reduce energy consumption, and adjusting data through multi-threaded control parts and programmable computing controllers, the problem of insufficient processing capabilities of existing systems for continuous signal sources is solved, and the accuracy of lighting control and the synergy effect of multi-device is improved.

CN119946950AActive Publication Date: 2025-05-06JINJIANG AOLEILANG LAMP MFG CO LTD
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Patent Information

Application Number
CN202510428504.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-05-06
Estimated Expiration
2045-04-08

AI Technical Summary

Technical Problem

The existing lighting control system lacks detection and processing capabilities of continuous signal sources, resulting in signal missed or delayed response, and the main control board has a time difference asymmetry problem during signal processing, affecting the synergy effect of multiple devices.

Method used

A loop-based light intelligent control box is designed. By setting up a head detection module, a tail detection module and a detection module, a multi-component sleep and pulse structure is adopted to reduce energy consumption, and data adjustment is performed through multi-threaded control parts and programmable computing controllers to improve synchronization effect.

Benefits of technology

It effectively reduces the energy consumption of the control box during sleep, improves the processing capability of the continuous signal source and the detection and adjustment of signal processing time difference, improves the accuracy of lighting control and the synergy effect of multiple devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a light intelligent control box based on loop light and a control method, and relates to the technical field of illumination control equipment, the light intelligent control box comprises a protective shell, a head detection module, a tail detection module and a detection module are arranged, and the energy consumption of the control box during dormancy is effectively reduced by adopting a multi-component dormancy and pulse type structure; meanwhile, a continuous signal source can be processed, the time difference needed by signal processing of the main control board can be detected, data adjustment is conducted through the multi-thread control part and the programmable calculation controller so as to improve the synchronization effect, the average error value of the color and the intensity of lamplight is calculated and compensated, and the lamplight control accurate effect is effectively improved.
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Description

Technical Field

[0001] The invention relates to the technical field of lighting control equipment, and in particular to a loop light-based intelligent control box and a control method. Background Art

[0002] With the rapid development of society, lighting control has become an indispensable aspect of social development, especially in the field of smart home. At present, lighting control on the market mainly adopts manual control, which is not only difficult to adjust the brightness of the light, but also impossible to control the running time of the light. Now the development of electrical appliances tends to be intelligent. With the rapid development of electronic technology, traditional lighting control is updated very quickly. For example, the traditional power switch is replaced by an intelligent switch panel, and the commercial and residential lights are turned on and off, the brightness is adjusted, all turned on, all turned off and combined control are performed using a remote control device, so as to realize a variety of lighting scene effects, thereby achieving the energy-saving, environmental protection, comfort and convenience functions of intelligent lighting. Existing control systems lack the ability to detect and process continuous signal sources (such as long-cycle commands or environmental interference signals), which can easily cause signal omissions or response delays; the main control board has time difference asynchrony problems during signal processing, resulting in deviations between lighting command execution and expectations, affecting the collaborative effect of multiple devices; conventional lighting control systems have a single data adjustment and synchronization mechanism, which cannot optimize real-time response efficiency through dynamic thread allocation, and synchronization accuracy is difficult to guarantee. Summary of the invention

[0003] Therefore, in order to solve the above-mentioned shortcomings, the present invention provides a lighting intelligent control box and control method based on loop light.

[0004] The present invention is implemented as follows: an intelligent control box and control method based on loop light are constructed, the device comprising a protective shell; a limit piece is fixedly installed inside the protective shell by bolts, and the limit piece is specifically composed of an inner and outer sleeve rod, an elastic piece, and a clamping block clamped on the outer sleeve rod; a main control board is fixedly installed on the clamping block on the limit piece; a power connection terminal and a signal terminal are respectively fixedly installed on the left and right sides of the top of the main control board by soldering; a head detection module and a tail detection module are clamped by the clamping blocks on the top of the sleeve rod of the limit piece on the left and right sides inside the protective shell; a detection module is fixedly installed on the top of the inner wall of the protective shell by plugging; a temperature control component is fixedly installed on the bottom of the protective shell.

[0005] Preferably, three groups of power terminals are fixedly provided on the right side of the top of the main control board, and the signal terminal on the left side of the top of the main control board has two connection modes of two-wire and three-wire; the two-wire connection mode of the signal terminal is that two groups of signal terminals are fixedly provided on the left side of the top of the main control board, which are used for power transmission and signal transmission at the same time; the three-wire connection mode of the signal terminal is that three groups of signal terminals are fixedly provided on the left side of the top of the main control board, two groups of signal terminals are used for power transmission, and one group of signal terminals is used for signal transmission.

[0006] Preferably, the head detection module includes a wiring board fixedly mounted on a limit piece clamp by soldering; a power port is fixedly arranged at a corner of the bottom side of the wiring board, and a voltage stabilizing terminal is arranged on the rear side of the power port; a power supply controller with a power supply function is fixedly mounted by soldering on the bottom side of the wiring board; a signal interaction module with a data transmission function is fixedly mounted by soldering on the bottom side of the wiring board; and a data register with a data storage function is fixedly mounted by soldering on the bottom side of the wiring board.

[0007] Preferably, a programmable computing controller with a signal sensing function is fixedly installed on the bottom side of the wiring board by solder; a data processor with a signal processing function is fixedly installed on the bottom side of the wiring board by solder; a multi-threaded control component with a computing control function is fixedly installed on the bottom side of the wiring board by solder; an external interface with a data output function is fixedly installed on the bottom side of the wiring board by solder.

[0008] Preferably, the tail detection module includes a voltage component fixedly mounted on the limiter clamp block; the voltage component is specifically composed of a wiring board and a voltage stabilizing terminal.

[0009] Preferably, a signal line terminal is fixedly installed by soldering at the bottom of the line board of the voltage component, and the signal line terminal is connected to the external interface through a cable; a computing core with computing control function is fixedly installed by soldering at the bottom of the line board of the voltage component.

[0010] Preferably, the detection module includes an adjustment control unit fixedly installed on the top of the protective shell; the adjustment control cylinder is fixedly installed at the through holes around the power supply board; a light sensor with data sensing function is fixedly installed on the top side of the power supply board by solder; an ambient light sensor with data sensing function is fixedly installed on the top side of the power supply board by solder.

[0011] Preferably, a heat source sensor with data sensing function is fixedly installed on the top side of the power supply board by solder; an auxiliary photosensitive element with data sensing function is fixedly installed on the top side of the power supply board by solder; and a comparison module with data processing function is fixedly installed on the top side of the power supply board by solder.

[0012] Preferably, the adjustment control unit includes a magnetic isolation cylinder fixedly installed at the through holes around the power supply board; an electromagnetic block is fixedly installed inside the magnetic isolation cylinder, and an armature is slidably arranged inside the electromagnetic block; and a reset part is fixedly installed around the groove on the top of the protective shell.

[0013] Preferably, the reset member is fixedly mounted on the sides around the bottom of the glass plate; the photosensitive sensor, ambient light sensor, heat source sensor, and auxiliary light sensor are all provided with a protective rubber pad on the top side, and the rubber pad is in contact with the bottom of the glass plate.

[0014] Preferably, the temperature control component includes a fixing seat fixedly installed on the bottom of the protective shell by bolts; air bags are fixedly arranged on the upper and lower sides of the fixing seat body respectively; a circular tube is sleeved on the inner side of the air bag, and the circular tube is a flexible tube structure; the top side connecting tube of the circular tube passes through the inside of the heat conductive layer, and the bottom side connecting tube of the circular tube passes through the inside of the refrigerator; an electromagnetic coil is fixedly installed on the top side of the tube body of the fixing seat by bolts; an extrusion rod is slidably arranged on the lower side of the inside of the tube body of the fixing seat, and the bottom side of the extrusion rod body is extruded by the air bag.

[0015] A control method based on a loop light intelligent control box comprises the following steps: Step 1: Install the ground wire, live wire and neutral wire from top to bottom at the three ports of the power supply end, and install the warm light, positive pole and white light cables from top to bottom at the three ports of the signal end; then check the status of the head detection module, tail detection module and components of the detection module; Step 2: first connect the signal interaction module to the software end of the external terminal device, where the main control board, the tail detection module and the detection module are in a dormant state, the external terminal device interacts with the signal interaction module, and processes the signal source obtained by the signal interaction module through the data register and the data processor to determine whether the signal source is correct, and then wakes up the main control board, the tail detection module and the detection module through the energy supply controller; Step 3: The signal interaction module receives the signal and processes the signal through the data processor and the programmable computing controller, and then processes and calculates the signal source through the main control board and the signal line terminal and the main control board and outputs it. Here, the signal source sensed by the signal end of the main control board and the signal source time difference of the data processor are calculated by the calculation core, and then the data is adjusted through the multi-threaded control component and the programmable computing controller; Step 4: The ambient light data of the equipment is first collected through the ambient light sensor on the power supply board, and the data is processed through the comparison module. Then, when adjusting the light, the light source color and light source intensity are collected through the photosensitive sensor and the auxiliary light sensor, and the abnormal heat source light is discharged under the numerical comparison of the heat source sensor, and the average error value is calculated through the comparison module, and the light source data output is controlled by the main control board to compensate for the light illumination difference; Step 5. During the lighting control process, the electromagnetic coil pushes the squeezing rod to squeeze the airbag so that it keeps expanding to guide the coolant of the refrigerator and control the temperature under the cooling effect of the refrigerator.

[0016] The present invention has the following advantages: The present invention provides a loop light-based intelligent control box and control method through improvement, which has the following improvements compared with similar devices: The intelligent control box and control method based on loop light described in the present invention, by setting a head detection module, a tail detection module and a detection module, adopting a multi-component sleep and pulse structure, effectively reduces the energy consumption of the control box when it is in sleep mode, and can process the continuous signal source and detect the time difference required for signal processing of the main control board, and adjust the data through multi-threaded control components and programmable computing controllers to improve the synchronization effect, and also calculate the average error value of the color and intensity of the light and compensate for it, effectively improving the accuracy of lighting control. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 It is a schematic diagram of the exploded structure of the main control board and the head detection module of the present invention; Figure 3 It is a schematic diagram of the structure of the head detection module of the present invention; Figure 4 It is a schematic diagram of the structure of the tail detection module of the present invention; Figure 5 It is a schematic diagram of the decomposition structure of the detection module of the present invention; Figure 6 It is a schematic diagram of the cross-sectional structure of the adjustment control unit of the present invention; Figure 7 It is a schematic diagram of the three-dimensional structure of the temperature control component of the present invention.

[0018] Among them: protective shell-1, main control board-11, power connection terminal-12, signal terminal-13, limiter-14, head detection module-15, tail detection module-16, detection module-17, temperature control component-18, power connection board-151, voltage stabilizing terminal-152, energy supply controller-153, signal interaction module-154, data register-155, programmable computing controller-156, data processor-157, multi-threaded control component-158, external interface-159, voltage component-161, signal line terminal- 162. Computing core-163. Power supply board-171. Adjustment control unit-172. Photosensor-173. Ambient light sensor-174. Heat source sensor-175. Auxiliary light sensor-176. Comparison module-177. Magnetic isolation tube-1721. Electromagnetic block-1722. Armature-1723. Reset member-1724. Glass plate-1725. Fixing seat-181. Air bag-182. Meandering tube-183. Heat conducting layer-184. Refrigerator-185. Electromagnetic coil-186. Extrusion rod-187. DETAILED DESCRIPTION

[0019] The following is combined with Figure 1 to Figure 7 The principles and features of the present invention are described, and the examples given are only used to explain the present invention and are not used to limit the scope of the present invention. In the following paragraphs, the present invention is described in more detail by way of example with reference to the accompanying drawings. It should be noted that the drawings are all in a very simplified form and are not in precise proportions, and are only used to facilitate and clearly assist in explaining the purpose of the embodiments of the present invention.

[0020] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0021] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", and "set" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal connection of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances. The following is an explanation of the embodiments of the present invention based on its overall structure.

[0022] Embodiment 1:

[0023] See also Figure 1 to Figure 7 The present invention discloses an intelligent control box and control method based on loop light, comprising a protective shell 1; characterized in that: a limit member 14 is fixedly installed inside the protective shell 1 by bolts, and the limit member 14 is specifically composed of an inner and outer sleeve rod, an elastic member, and a clamping block clamped on the outer sleeve rod; a main control board 11 is fixedly installed on the clamping block on the limit member 14; a power connection terminal 12 and a signal terminal 13 are respectively fixedly installed on the left and right sides of the top of the main control board 11 by soldering; a head detection module 15 and a tail detection module 16 are clamped by the clamping blocks on the top of the sleeve rod of the limit member 14 on the left and right sides inside the protective shell 1; a detection module 17 is fixedly installed on the top of the inner wall of the protective shell 1 by plugging; a temperature control member 18 is fixedly installed on the bottom of the protective shell 1.

[0024] Three groups of power terminals 12 are fixedly arranged on the right side of the top of the main control board 11, and the signal terminal 13 on the left side of the top of the main control board 11 has two connection modes of two wires and three wires; the two-wire connection mode of the signal terminal 13 is that two groups of signal terminals 13 are fixedly arranged on the left side of the top of the main control board 11, which are used for power transmission and signal transmission at the same time; the three-wire connection mode of the signal terminal 13 is that three groups of signal terminals 13 are fixedly arranged on the left side of the top of the main control board 11, two groups of signal terminals 13 are used for power transmission, and one group of signal terminals 13 is used for signal transmission.

[0025] The head detection module 15 includes a wiring board 151 fixedly installed on the clamping block of the limit member 14 by soldering; a power connection port is fixedly arranged at a corner of the bottom side of the wiring board 151, and a voltage stabilizing terminal 152 is arranged on the rear side of the power connection port; a power supply controller 153 with a power supply function is fixedly installed by soldering on the bottom side of the wiring board 151; a signal interaction module 154 with a data transmission function is fixedly installed by soldering on the bottom side of the wiring board 151; a data register 155 with a data storage function is fixedly installed by soldering on the bottom side of the wiring board 151; a programmable computing controller 156 with a signal sensing function is fixedly installed by soldering on the bottom side of the wiring board 151; a data processor 157 with a signal processing function is fixedly installed by soldering on the bottom side of the wiring board 151; a multi-threaded control component 158 ​​with a computing control function is fixedly installed by soldering on the bottom side of the wiring board 151; an external interface 159 with a data output function is fixedly installed by soldering on the bottom side of the wiring board 151.

[0026] The tail detection module 16 includes a voltage component 161 fixedly mounted on the clamping block of the limit member 14; the voltage component 161 is specifically composed of a wiring board 151 and a voltage-stabilizing terminal 152; a signal line terminal 162 is fixedly mounted on the bottom of the board of the voltage component 161 by soldering, and the signal line terminal 162 is connected to the external interface 159 through a cable; a computing core 163 with computing control function is fixedly mounted on the bottom of the board of the voltage component 161 by soldering.

[0027] The detection module 17 includes an adjustment control unit 172 fixedly installed on the top of the protective shell 1; the cylinder of the adjustment control unit 172 is fixedly installed at the through holes around the power supply board 171; a light sensor 173 with a data sensing function is fixedly installed on the top side of the power supply board 171 by soldering; an ambient light sensor 174 with a data sensing function is fixedly installed on the top side of the power supply board 171 by soldering; a heat source sensor 175 with a data sensing function is fixedly installed on the top side of the power supply board 171 by soldering; an auxiliary light sensor 176 with a data sensing function is fixedly installed on the top side of the power supply board 171 by soldering; a comparison module 177 with a data processing function is fixedly installed on the top side of the power supply board 171 by soldering.

[0028] The adjustment control unit 172 includes a magnetic isolation tube 1721 fixedly installed at the through holes around the power supply board 171; an electromagnetic block 1722 is fixedly installed inside the magnetic isolation tube 1721, and an armature 1723 is slidably arranged inside the electromagnetic block 1722; a reset member 1724 is fixedly installed around the top groove of the protective shell 1; the reset member 1724 is fixedly installed around the bottom of the glass plate 1725; a rubber pad layer for protection is arranged on the top side of the photosensitive sensor 173, the ambient light sensor 174, the heat source sensor 175, and the auxiliary light sensor 176, and the rubber pad layer is in contact with the bottom of the glass plate 1725.

[0029] Embodiment 2:

[0030] See also Figure 1 to Figure 7 Compared with the first embodiment, the present invention is a kind of intelligent control box and control method based on loop light. The present embodiment further includes: the temperature control component 18 includes a fixing seat 181 fixedly installed at the bottom of the protective shell 1 by bolts; the upper and lower sides of the fixing seat 181 are respectively fixedly provided with air bags 182; the inner side of the air bag 182 is sleeved with a round tube 183, and the round tube 183 is a flexible tube structure; the top side connecting tube of the round tube 183 passes through the inside of the heat conductive layer 184, and the bottom side connecting tube of the round tube 183 passes through the inside of the refrigerator 185; the top side of the tube body of the fixing seat 181 is fixedly installed with an electromagnetic coil 186 by bolts; the lower side of the tube body of the fixing seat 181 is slidably provided with an extrusion rod 187, and the bottom side of the rod body of the extrusion rod 187 is extruded with the air bag 182.

[0031] The working principle of the above-mentioned intelligent control box and control method based on loop light is: First, when using this device, first place the device in the working area, and then connect the device to an external power source to provide the device with the power required for operation; Second, install the ground wire, live wire and neutral wire from top to bottom at the three ports of the power terminal 12, and install the warm light, positive and white light cables from top to bottom at the three ports of the signal terminal 13. This is a three-wire connection method. If it is a two-wire connection method, connect the positive and negative cables to the two groups of signal terminals 13; then check the component status of the head detection module 15, the tail detection module 16 and the detection module 17; Third, first connect the signal interaction module 154 to the software end of the external terminal device, and then the external control terminal exits the software end first. Here, the main control board 11, the tail detection module 16, and the detection module 17 are in a dormant state. The wiring board 151 and the voltage stabilizing terminal 152 provide stable power for the energy supply controller 153, and provide pulsed power for the signal interaction module 154 through the energy supply controller 153, so that it can emit a pulsed signal source to the outside world. The multi-component dormancy and pulsed structure effectively reduce the energy consumption of the control box when it is dormant; when the software end of the external terminal device enters the control page, the external terminal device here will send a signal source to the device and interact with the signal interaction module 154, and process the signal source obtained by the interaction of the signal interaction module 154 through the data register 155 and the data processor 157 to determine whether the signal source is correct. Since the data register has a data overwriting and replacement function, the need for data storage is reduced. Then, the data processor 157 controls the energy supply controller 153 to switch the control mode, wake up the main control board 11, the tail detection module 16, and the detection module 17, and put them in a working state; Fourth, when the software end of the external terminal device sends a signal to adjust the light, the signal interaction module 154 receives the signal and outputs it in the data register 155 and the data processor 157. Since the signal sent by the software end of the external control terminal may be a continuous signal source, the data is input into the data processor 157 at this time, and the continuous signal source is processed by the data processor 157, and then the data is integrated into the programmable computing controller 156 for total data processing. Segmented data processing can minimize the load of the data processing device, thereby improving the heat dissipation and use efficiency of the data processing device. The signal is then transmitted to the main control board 11 and the signal line terminal 162, and is filtered through the filter on the main control board 11. The signal source is first processed, and then the value of the signal source is calculated by the core chip on the main control board 11, and then output to the external light source through the signal terminal 13 on the main control board 11. Here, the signal line terminal 162 senses the signal source output through the cable, and then the signal line terminal 162 respectively senses the signal source from the signal terminal 13 on the main control board 11 and the signal source time difference of the data processor 157 through the calculation core 163. When the data does not meet the limited value, the central processing unit on the main control board 11 controls the data input calculation assembly to calculate the difference. Here, the time difference is the time difference required for the signal processing of the main control board 11, and then the data is adjusted through the multi-threaded control component 158 ​​and the programmable computing controller 156; Fifth, during the test control process, the ambient light data of the equipment is first collected through the ambient light sensor 174 on the power supply board 171, and the data is processed through the comparison module 177. Then, when the light is adjusted, the light source color and light source intensity are collected through the photosensitive sensor 173 and the auxiliary light sensor 176. The conductive strength of the electromagnetic block 1722 is adjusted to push the armature 1723 to slide, thereby adjusting the overall up and down movement of the detection module 17. Here, the electrical device on the detection module 17 squeezes the glass plate 1725 and extends out of the protective housing 1, and discharges abnormal heat source light under the numerical comparison of the heat source sensor 175, and compares the collected illuminance value sent by the collected data with the standard value through the comparison module 177, calculates the error between each test illuminance value and the collected illuminance value, and then superimposes multiple error values ​​to calculate the average error value, and sets the average error value as the compensation illuminance value, and controls the output light source data through the main control board 11 to compensate for the light illuminance difference; Sixth, during the lighting control process, the electromagnetic coil 186 receives electrical energy so that it can push the squeezing degree of the airbag 182 by the squeezing rod 187 through the strength of the electromagnetic field, and then the airbag 182 provides pressure to the body of the circular tube 183. By intermittently supplying power to the electromagnetic coil 186, the liquid inside the refrigerator 185 flows under the expansion action of the circular tube 183, and the temperature is controlled under the cooling effect of the refrigerator 185.

[0032] The present invention provides an intelligent control box and control method based on loop light through improvements. By setting a head detection module 15, a tail detection module 16 and a detection module 17, a multi-component sleep and pulse structure is adopted to effectively reduce the energy consumption of the control box when it is in sleep mode. At the same time, it can process the continuous signal source and detect the time difference required for signal processing of the main control board 11, and adjust the data through the multi-threaded control component 158 ​​and the programmable computing controller 156 to improve the synchronization effect. It also calculates the average error value of the color and intensity of the light and compensates for it, effectively improving the accuracy of the light control effect.

[0033] The above shows and describes the basic principles, main features and advantages of the present invention, and the standard parts used in the present invention can be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt the conventional means such as mature bolts, rivets, welding, etc. in the prior art. The machinery, parts and equipment all adopt the conventional models in the prior art, and the circuit connection adopts the conventional connection method in the prior art, which will not be described in detail here.

[0034] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A loop light based intelligent control box for lighting, comprising a protective housing (1); characterized in that: A limit piece (14) is fixedly installed inside the protective shell (1) by means of bolts, and the limit piece (14) specifically comprises an inner and outer sleeve rod, an elastic piece, and a clamping block clamped on the outer sleeve rod; a main control board (11) is fixedly installed on the clamping block on the limit piece (14); a power connection terminal (12) and a signal terminal (13) are respectively fixedly installed on the left and right sides of the top of the main control board (11) by means of soldering; a head detection module (15) and a tail detection module (16) are clamped and installed on the top clamping blocks of the sleeve rods of the limit pieces (14) on the left and right sides inside the protective shell (1); a detection module (17) is fixedly installed on the top of the inner wall of the protective shell (1) by means of plugging; a temperature control component (18) is fixedly installed on the bottom of the inner wall of the protective shell (1); The head detection module (15) comprises a connection board (151) fixedly mounted on a clamping block of a limiter (14) by solder; a connection port is fixedly arranged at a corner of the bottom side of the connection board (151), and a voltage stabilizing terminal (152) is arranged at the rear side of the connection port; a power supply controller (153) having a power supply function is fixedly mounted on the bottom side of the connection board (151) by solder; a signal interaction module (154) having a data transmission function is fixedly mounted on the bottom side of the connection board (151) by solder; and a data register (155) having a data storage function is fixedly mounted on the bottom side of the connection board (151) by solder.

2. According to claim 1, the intelligent control box for lighting based on loop light is characterized by: The main control board (11) is fixedly provided with three groups of power terminals (12) on the right side of the top, and the signal terminal (13) on the left side of the top of the main control board (11) has two connection modes: two-wire and three-wire. The two-wire connection mode of the signal terminal (13) is that two groups of signal terminals (13) are fixedly provided on the left side of the top of the main control board (11), which are used for power transmission and signal transmission at the same time. The three-wire connection mode of the signal terminal (13) is that three groups of signal terminals (13) are fixedly provided on the left side of the top of the main control board (11), of which two groups of signal terminals (13) are used for power transmission and one group of signal terminals (13) is used for signal transmission.

3. According to claim 2, the intelligent control box for lighting based on loop light is characterized in that: A programmable computing controller (156) having a signal sensing function is fixedly installed on the bottom side of the wiring board (151) by solder; a data processor (157) having a signal processing function is fixedly installed on the bottom side of the wiring board (151) by solder; a multi-threaded control component (158) having a computing control function is fixedly installed on the bottom side of the wiring board (151) by solder; and an external interface (159) having a data output function is fixedly installed on the bottom side of the wiring board (151) by solder.

4. According to claim 3, the intelligent control box for lighting based on loop light is characterized in that: The tail detection module (16) comprises a voltage assembly (161) fixedly mounted on a clamping block of a stopper (14); the voltage assembly (161) specifically comprises a connection board (151) and a voltage stabilizing terminal (152); a signal line terminal (162) is fixedly mounted on the bottom of the board of the voltage assembly (161) by soldering, and the signal line terminal (162) is connected to an external interface (159) via a cable; and a computing core (163) having a computing control function is fixedly mounted on the bottom of the board of the voltage assembly (161) by soldering.

5. According to claim 4, the intelligent control box for lighting based on loop light is characterized in that: The detection module (17) comprises an adjustment control unit (172) fixedly mounted on the top of the protective housing (1); a cylinder of the adjustment control unit (172) is fixedly mounted at through holes around the power supply board (171); a light sensor (173) having a data sensing function is fixedly mounted on the top side of the power supply board (171) by soldering; and an ambient light sensor (174) having a data sensing function is fixedly mounted on the top side of the power supply board (171) by soldering.

6. According to claim 5, the intelligent control box for lighting based on loop light is characterized in that: A heat source sensor (175) having a data sensing function is fixedly mounted on the top side of the energy supply board (171) by soldering; an auxiliary light sensor (176) having a data sensing function is fixedly mounted on the top side of the energy supply board (171) by soldering; and a comparison module (177) having a data processing function is fixedly mounted on the top side of the energy supply board (171) by soldering.

7. According to claim 6, the intelligent control box for lighting based on loop light is characterized by: The control unit (172) comprises a magnetic isolation cylinder (1721) fixedly mounted at the through holes around the power supply plate (171); an electromagnetic block (1722) is fixedly mounted inside the magnetic isolation cylinder (1721), and an armature (1723) is slidably arranged inside the electromagnetic block (1722); and a reset member (1724) is fixedly mounted around the top groove of the protective housing (1).

8. According to claim 7, the intelligent control box for lighting based on loop light is characterized in that: The reset member (1724) is fixedly mounted on the sides of the bottom of the glass plate (1725); a rubber cushion layer for protection is provided on the top side of the sensor head of the light sensor (173), the ambient light sensor (174), the heat source sensor (175), and the auxiliary light sensor (176), and the rubber cushion layer is in contact with the bottom of the glass plate (1725).

9. According to claim 8, the intelligent control box for lighting based on loop light is characterized in that: The temperature control component (18) comprises a fixing seat (181) fixedly mounted on the inner bottom of the protective housing (1) by means of bolts; air bags (182) are fixedly mounted on the upper and lower sides of the fixing seat (181); a circular tube (183) is sleeved on the inner side of the air bag (182), and the circular tube (183) is a flexible tube structure; a connecting tube on the top side of the circular tube (183) passes through the interior of the heat conductive layer (184), and a connecting tube on the bottom side of the circular tube (183) passes through the interior of the refrigerator (185); an electromagnetic coil (186) is fixedly mounted on the top side of the tube body of the fixing seat (181) by means of bolts; an extrusion rod (187) is slidably mounted on the lower side of the interior of the tube body of the fixing seat (181), and the bottom side of the rod body of the extrusion rod (187) is extruded by the air bag (182).

10. A control method based on a loop light intelligent control box, used to implement the loop light intelligent control box as claimed in claim 9, characterized in that: The following steps are involved: Step 1: Install the ground wire, live wire and neutral wire from top to bottom at three ports of the power supply end (12), and install the warm light, positive pole and white light cables from top to bottom at three ports of the signal end (13); then check the component status of the head detection module (15), the tail detection module (16) and the detection module (17); Step 2: first connect the signal interaction module (154) to the software end of the external terminal device, wherein the main control board (11), the tail detection module (16) and the detection module (17) are in a dormant state, the external terminal device interacts with the signal interaction module (154) and processes the signal source obtained by the interaction of the signal interaction module (154) through the data register (155) and the data processor (157) to determine whether the signal source is correct, and then wakes up the main control board (11), the tail detection module (16) and the detection module (17) through the energy supply controller (153); Step 3, the signal interaction module (154) receives the signal and performs data processing through the data processor (157) and the programmable computing controller (156), and then processes and calculates the signal source through the main control board (11) and the signal line terminal (162) and the main control board (11) and then outputs it. Here, the computing core (163) calculates the time difference between the signal source sensed by the signal line terminal (162) from the signal end (13) on the main control board (11) and the signal source of the data processor (157), and then adjusts the data through the multi-threaded control component (158) and the programmable computing controller (156); Step 4: first collect the ambient light data of the device through the ambient light sensor (174) on the power supply board (171), and process the data through the comparison module (177). Then, when adjusting the light, collect the light source color and light source intensity data through the photosensitive sensor (173) and the auxiliary light sensor (176), and discharge the abnormal heat source light under the comparison of the value of the heat source sensor (175). The average error value is calculated through the comparison module (177), and the output light source data is controlled by the main control board (11) to compensate for the light intensity difference. Step 5: During the lighting control process, the electromagnetic coil (186) pushes the squeezing rod (187) to squeeze the airbag (182) so that the airbag (182) is kept expanding to guide the coolant of the refrigerator (185), and the temperature is controlled under the cooling effect of the refrigerator (185).

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