A cloud-computing-based intelligent lighting management system and a use method thereof
By designing limiters, clamping plates, pole storage structures, and moisture protectors, the problems of unstable, scattered, dust-accumulated, and insufficiently moisture-proof circuits in intelligent lighting management systems have been solved, thereby improving circuit stability, cleanliness, and moisture resistance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-05
- Publication Date
- 2026-04-07
AI Technical Summary
Existing cloud-based intelligent lighting management systems suffer from instability in connection line limits, are prone to loosening, and have messy wiring, dust accumulation on control panels, and insufficient moisture resistance.
The system employs limiters and clamping plates to restrict the connection lines, uses rods and boxes to store excess lines, installs sliding plates and brushes to clean the control panel, and includes a dehumidifier to absorb moisture, thus improving the system's moisture-proof performance.
It effectively prevents loose wiring, maintains wiring stability, avoids messy wiring, cleans the control panel, extends system lifespan, and improves moisture resistance.
Smart Images

Figure CN116634643B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent lighting management system technology, specifically to a cloud-based intelligent lighting management system and its usage method. Background Technology
[0002] A cloud-based intelligent lighting management system is a system that utilizes the Internet and cloud computing technologies to achieve intelligent lighting control and management. It can achieve functions such as automatic lighting adjustment, energy management, remote monitoring, and alarms through technologies such as sensors, network communication, and data analysis. It also has advantages such as scalability and interoperability. It can control the on / off status and brightness of lighting equipment manually or automatically, thereby achieving goals such as energy saving, comfort, and safety. However, most existing cloud-based intelligent lighting management systems are not convenient for limiting the connected lines during use. After long-term use, the lines are prone to loosening due to external factors, which in turn affects the control of the lighting.
[0003] The shortcomings of existing intelligent lighting management systems are:
[0004] 1. Patent document CN112594658A discloses a controller for an emergency lighting central monitoring system. It includes a control cover and a control housing. The control cover and control housing are detachably connected and form a cavity. A control panel is located on one side of the control cover, outside the cavity. A cover plate is detachably connected to the corresponding side of the control cover, located inside the cavity and forming a dust-proof chamber. A main board and a button board are located inside the dust-proof chamber, both detachably connected to the control cover. The main board is located to the side of the button board. A second cover plate is detachably connected to the control housing, located inside the cavity and forming a dust-proof chamber. The control housing forms a second dustproof chamber, within which a power board is housed. The power board is detachably connected to the control housing. Both the first and second cover plates are equipped with heat dissipation components. The beneficial effect of this invention is that it improves the dustproof effect of the main board, button board, and power board, providing a certain degree of protection. However, the aforementioned emergency lighting central monitoring system controller primarily focuses on improving dustproof performance and does not consider improving the stability of the wiring connections. Therefore, it is necessary to research a structure that can improve the stability of the wiring connections in a cloud-based intelligent lighting management system, thereby effectively preventing the occurrence of loose wiring.
[0005] 2. Patent document CN114727448A discloses a non-isolated step-down LED controller for LED lighting, comprising: A box with an opening on the front side, a cover fixedly mounted on the front side of the box, a controller chip fixedly mounted on the inner rear wall of the box, and multiple pins on the top and bottom of the controller chip; two heat-conducting sheets fixedly mounted on the inner top and bottom walls of the box, with heat sinks tightly attached to the sides of the two heat-conducting sheets that are far apart from each other; and the inner left and right walls of the box... All of them have heat dissipation holes to perform graded heat dissipation for the packaged controller chip, which reduces energy consumption and is more energy-efficient. The box and cover are installed with internal hex bolts, which makes it easy to remove the cover and thus facilitate the packaging and maintenance of the controller chip. However, the non-isolated step-down LED controller for LED lighting in the above-mentioned published literature mainly considers the ease of packaging and maintenance of the controller chip, but does not consider the problem of storing excess wires. Therefore, it is necessary to study a structure that can store and clamp the connection wires of the cloud-based intelligent lighting management system, so as to store the connected excess wires and effectively avoid the wires being scattered.
[0006] 3. Patent document CN216491419U discloses a lighting controller, which "has a housing that is detachably connected to the lighting fixture, one side of a scissor rod that is rotatably connected to the housing, the other side of the scissor rod that is slidably connected to the housing, a mounting plate that is rotatably connected to the scissor rod, a control board that is rotatably connected to the mounting plate, a door panel that is rotatably connected to the housing, and a drive mechanism that is located on one side of the scissor rod. When repairing or inspecting the control cabinet, the housing is opened by rotating the door panel, and the drive mechanism drives one side of the scissor rod, causing one side of the scissor rod to slide inside the housing towards the other side of the scissor rod, thereby causing the scissor rod to extend and push the mounting plate and the control board out of the housing. The electrician can then inspect the control board on the mounting plate. The operation is convenient and solves the problem that it is inconvenient to operate the existing lighting control cabinet when the operator needs to reach into it." However, the lighting controller disclosed in the above-mentioned document mainly considers the ease of repair and does not consider the problem of cleaning dust on the surface of the control panel. Therefore, it is necessary to study a structure that can clean dust on the surface of the control panel of a cloud-based intelligent lighting management system, thereby maintaining the cleanliness of the control panel.
[0007] 4. Patent document CN215061925U discloses an LED street light controller, "including a housing, control buttons connected to the surface of the housing, a heat sink frame connected to one side of the housing, a cooling fan connected to one side of the dustproof mesh, a slot connected to one side of the support plate, a drying plate connected inside the housing, bolt holes connected inside the fixing plate, a snap-fit plate connected to one side of the spring, and a snap-fit block connected inside the snap-fit plate. The dustproof mesh can be disassembled and cleaned through the heat sink frame. Through the dustproof mesh and the cooling fan, the housing can be cooled by air while preventing dust from entering, avoiding reduced lifespan of electronic components due to dust, and the drying plate can also be cleaned by using a slot." The drying plate protects the control components from humid air entering the housing and damaging electronic components. The snap-fit plate connects the clips to the slots, linking the support plate to the mounting plate. Springs can snap onto housings of different sizes, facilitating controller maintenance and component replacement. However, the aforementioned LED street light controller primarily focuses on ease of maintenance and component replacement, neglecting to address moisture resistance. Therefore, it is necessary to develop a structure that improves the moisture resistance of cloud-based intelligent lighting management systems, thereby extending their lifespan. Summary of the Invention
[0008] The purpose of this invention is to provide a cloud-based intelligent lighting management system to solve the technical problem mentioned in the background art of the inconvenience of limiting the connection lines of the cloud-based intelligent lighting management system.
[0009] To achieve the above objectives, the present invention provides the following technical solution: a cloud computing-based intelligent lighting management system, comprising:
[0010] The wireless communication module is a wireless communication device used to connect to the controller of the lighting system via a terminal device, and to receive lighting commands sent by the terminal device; wherein...
[0011] The wireless communication device is either a WIFI communication device or a GPRS communication device;
[0012] The data storage module is used to receive lighting instructions, store the lighting control data in the instructions, and control the operation of lighting equipment through the control circuit of the lighting system.
[0013] The cloud computing module is used to perform calculations on the data stored in the data storage module, and after a preset time, it controls the lighting equipment to work and provide illumination through the control circuit.
[0014] Preferably, the data storage module can store the data controlling the lighting for a long time and allow the cloud computing module to read the data. The cloud computing module is a computing resource sharing method based on Internet technology. It allows users to use the computing, storage, network and other infrastructure or application services provided by cloud service providers through network connection. The cloud computing module calculates time and controls the lighting equipment to work for lighting. When the wireless communication module controls the lighting system, the lighting system can also be manually controlled.
[0015] Preferably, the controller has an indicator light on its front side, a display screen on its front side, and connection holes and limiters arranged alternately on its top side.
[0016] The limiter includes a first frame, a knob, and a limiting ring. The first frame is embedded inside the limiter. The knob is disposed on the outer wall of the limiter. A bolt is fixedly connected to the outer wall of the knob, and one end of the bolt extends into the interior of the first frame. A nut is mounted around the outer wall of the bolt. A drive rod is fixedly connected to the outer wall of the nut, and one end of the drive rod extends out of the interior of the first frame. A clamping plate is fixedly connected to one end of the drive rod. Limiting rings are symmetrically connected to the outer wall of the limiter.
[0017] Preferably, the controller is provided with an antenna on its top, and a guide rod corresponding to the limiting ring is fixedly connected to the outer wall of the clamping plate, with one end of the guide rod passing through the inside of the limiting ring.
[0018] Preferably, the top of the controller is provided with a box, and the box is located on one side of the limiter. A rod is provided through the inner wall of the box, and a limit plate is fixedly connected to the top of the rod. A disc is installed around the outer wall of the rod, and a frame is symmetrically connected to the bottom of the disc. A guide rod corresponding to the frame is provided on the inner wall of the box, and one end of the guide rod passes through the inside of the frame.
[0019] Preferably, the inner wall of the box is symmetrically provided with threaded screws, the outer wall of the threaded screws is surrounded by slip rings, the outer wall of the slip rings is fixedly connected to a drive plate, and one end of the drive plate is fixedly connected to the outer wall of the frame. The bottom of the box is provided with a micro motor corresponding to the threaded screws, and one end of the threaded screws is fixedly connected to the output end of the micro motor.
[0020] Preferably, the first frame is square in shape with a width equal to the thickness of the limiter. A magnetic plate is provided at the bottom of the antenna for adsorption and positioning of the antenna. The frame is U-shaped with its top fixedly connected to the disc. Two sets of threaded rods are movably arranged inside the housing.
[0021] Preferably, the controller has a mounting groove on its top, which is located on one side of the limiter. A miniature telescopic rod is provided on the inner wall of the mounting groove, and a sliding groove is provided on the outer wall of the mounting groove. A sliding plate is provided on the top of the sliding groove, and a slider is provided at the bottom of the sliding plate extending into the interior of the sliding groove. The miniature telescopic rod is fixedly connected to the outer wall of the slider to drive the sliding plate to move. The sliding plate is L-shaped, and a second frame is provided on the top of the sliding plate. A fan is provided on the inner wall of the second frame, and the output end of the fan is connected to a conveying pipe. A brush is connected to the outer wall of the sliding plate, and an air jet is embedded in the inner wall of the sliding plate. The input end of the air jet is connected to the conveying pipe.
[0022] Preferably, the bottom of the controller is provided with a desiccant, which includes a ventilation slot, a mounting bracket and a slide bar. The ventilation slot is arranged sequentially on the front of the desiccant, the mounting bracket is arranged on the inner wall of the desiccant, one end of the mounting bracket is connected to a plate, the bottom of the mounting bracket is arranged sequentially with slide bars, the inner wall of the desiccant is provided with a guide groove corresponding to the slide bar, and the bottom end of the guide groove extends into the interior of the guide groove. The inner wall of the mounting bracket is provided with a drying block.
[0023] Preferably, the cloud-based intelligent lighting management system includes a wireless communication module, a data storage module, a cloud computing module, and a control circuit. The steps of the cloud-based intelligent lighting management system to control the lighting include: Step 1: Using a control device to control the lighting system to work through the wireless communication module.
[0024] Step 2: After receiving the instruction, the lighting system stores the set data through the data storage module, or it can directly control the lighting equipment through the control circuit.
[0025] Step 3: The cloud computing module performs calculations on the data stored in the data storage module, and after a preset time, it controls the lighting equipment to work and provide illumination through the control circuit.
[0026] Preferably, the data storage module can store the data controlling the lighting for a long time and allow the cloud computing module to read the data. The cloud computing module is a computing resource sharing method based on Internet technology. It allows users to use the computing, storage, network and other infrastructure or application services provided by cloud service providers through network connection. The cloud computing module calculates the time and controls the lighting equipment to work for lighting. When controlling the lighting system in step 1, the lighting system can also be controlled manually.
[0027] A method for using a cloud-based intelligent lighting management system includes:
[0028] S1. Firstly, when using the cloud-based intelligent lighting management system to control the lighting of the space, the on / off status and brightness of the lighting equipment can be controlled manually or automatically through the switches and buttons on the front, thereby achieving energy saving, comfort and safety. Through the antenna and the internal IoT module, the lighting can be controlled by remote control or smartphone application and smart home system. After the wiring of the lighting is connected to the cloud-based intelligent lighting management system through the connection hole, when the connection wire is limited by the limit switch, turning the knob will drive the bolt to rotate. When the bolt rotates, the position of the nut will move. When the position of the nut moves, the position of the clamping plate will be moved through the drive rod. The movement of the two sets of clamping plates limits and clamps the wire set inside the connection hole, thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection wiring of the cloud-based intelligent lighting management system, effectively preventing the connection wiring from loosening.
[0029] S2. When storing excess connection lines of the cloud-based intelligent lighting management system, the excess connection lines are manually and evenly wound around the surface of the pole. The output end of the micro motor rotates, which drives the threaded screw to rotate. When the threaded screw rotates, the position of the slip ring moves, which drives the frame to slide vertically on the outer wall of the guide rod through the drive plate. When the position of the frame moves, it pushes the disc to slide vertically. When the disc moves upward, it squeezes the lines wound around the outer wall of the pole, clamping the stored and wound lines between the limiting disc and the disc. This can limit and clamp the lines, achieving the purpose of limiting and storing the lines used in the cloud-based intelligent lighting management system, which can effectively prevent the lines from being scattered.
[0030] S3. The cloud-based intelligent lighting management system, exposed to air for extended periods, accumulates dust on its control panel's display screen and buttons. To remove this dust, a miniature telescopic rod pushes a sliding plate horizontally. This movement of the sliding plate moves the brush, one side of which contacts the front of the control panel. As the brush moves, it removes the dust and impurities adhering to the control panel surface. Simultaneously, a fan generates airflow, which flows through a delivery pipe into the nozzle. The nozzle then blows the airflow onto the cleaned control panel surface, removing any remaining dust and achieving the goal of cleaning the cloud-based intelligent lighting management system control panel.
[0031] S4. The desiccant is used to absorb moisture. When water vapor is dispersed to the installation location of the cloud-based intelligent lighting management system, the moisture flows into the interior of the dehumidifier through the ventilation channel. The desiccant can absorb the flowing water vapor, thereby improving the moisture-proof performance of the cloud-based intelligent lighting management system. Pulling the plate will cause the mounting bracket to slide horizontally inside the dehumidifier. After the mounting bracket is moved to the outside, the desiccant placed inside can be replaced.
[0032] Preferably, step S1 further includes the following steps:
[0033] S11. When the clamping plate moves, it will drive the guide rod to slide horizontally inside the limiting ring, which will guide the clamping plate to slide horizontally.
[0034] Step S2 further includes the following steps:
[0035] S21. When the disk moves, the rod can guide the disk so that the disk slides vertically to the desired position.
[0036] Step S3 further includes the following steps:
[0037] S31. The slider connected to the bottom of the sliding plate is U-shaped. The miniature telescopic rod can push the slider to slide horizontally inside the groove, thereby moving the position of the sliding plate.
[0038] Step S4 further includes the following steps:
[0039] S41. When the mounting bracket moves, it will cause the slide bar to slide horizontally inside the guide groove, thereby guiding the mounting bracket and making the mounting bracket slide horizontally.
[0040] Compared with the prior art, the beneficial effects of the present invention are:
[0041] 1. This invention improves the stability of the connection lines of a cloud-based intelligent lighting management system by installing limiters and clamping plates. After the lighting circuit is connected to the cloud-based intelligent lighting management system through the connection hole, the limiter limits the connection line. Turning the knob will cause the bolt to rotate, and the bolt will move the nut. When the nut moves, the drive rod will push the clamping plate to move. The movement of the two sets of clamping plates limits and clamps the wires set inside the connection hole, thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection lines of the cloud-based intelligent lighting management system, effectively preventing the connection lines from loosening.
[0042] 2. This invention facilitates the storage of connection lines for a cloud-based intelligent lighting management system by installing a pole and a housing. When storing excess connection lines, the excess lines are manually and evenly wound around the surface of the pole. The output of the micro motor rotates, which drives the threaded screw to rotate. The rotation of the threaded screw causes the slip ring to move, which in turn drives the frame to slide vertically on the outer wall of the guide rod via the drive plate. As the frame moves, it pushes the disc to slide vertically. When the disc moves upward, it squeezes the lines wound around the outer wall of the pole, clamping the stored and wound lines between the limiting disc and the disc. This limits and clamps the lines, achieving the purpose of limiting and storing the lines used in the cloud-based intelligent lighting management system, effectively preventing the lines from becoming scattered.
[0043] 3. This invention, by installing a sliding plate and a brush, can remove adsorbed substances from the surface of the control panel of a cloud-based intelligent lighting management system. Since cloud-based intelligent lighting management systems are exposed to air for extended periods, the display screen and buttons on the control panel accumulate a significant amount of dust. To remove the dust, a miniature telescopic rod pushes the sliding plate to a horizontal position. As the sliding plate moves, it moves the brush, with one side of the brush contacting the front of the control panel. The movement of the brush removes the dust and impurities adsorbed on the control panel surface. Simultaneously, a fan generates airflow, which flows through a delivery pipe into the nozzle. The nozzle then blows the airflow onto the cleaned control panel surface, further removing any remaining dust, thus achieving the purpose of cleaning the control panel of the cloud-based intelligent lighting management system.
[0044] 4. This invention improves the moisture resistance of a cloud-based intelligent lighting management system by installing a desiccant and a drying block. When water vapor is dispersed to the installation location of the cloud-based intelligent lighting management system, the water vapor flows into the interior of the desiccant through the ventilation channel. The drying block can absorb the flowing water vapor, thereby improving the moisture resistance of the cloud-based intelligent lighting management system. Pulling the plate will cause the mounting bracket to slide horizontally inside the desiccant. After the mounting bracket is moved to the outside, the drying block placed inside can be replaced. Attached Figure Description
[0045] Figure 1 This is a schematic diagram of the overall structure of the lighting system of the present invention;
[0046] Figure 2 This is a schematic diagram of the sliding plate structure of the present invention;
[0047] Figure 3 This is a schematic diagram of the clamping plate structure of the present invention;
[0048] Figure 4 This is a schematic diagram of the limiter structure of the present invention;
[0049] Figure 5 This is a schematic diagram of the box structure of the present invention;
[0050] Figure 6 This is a schematic diagram of the rod structure of the present invention;
[0051] Figure 7 This is a schematic diagram of the moisture-proof device structure of the present invention;
[0052] Figure 8 This is a flowchart of the process of the present invention;
[0053] Figure 9 This is a structural diagram of the lighting controller and lighting system of the present invention.
[0054] In the diagram: 1. Controller; 2. Indicator light; 3. Display screen; 4. Antenna; 5. Connecting hole; 6. Limiter; 7. First frame; 8. Bolt; 9. Knob; 10. Nut; 11. Drive rod; 12. Clamping plate; 13. Limiting ring; 14. Guide rod; 15. Box body; 16. Miniature motor; 17. Threaded screw; 18. Slip ring; 19. Drive plate; 20. Frame body; 21. Guide rod; 22. Rod body; 23. Limiting plate; 24. Disc; 25. Mounting slot; 26. Miniature telescopic rod; 27. Slide groove; 28. Sliding plate; 29. Second frame; 30. Fan; 31. Brush; 32. Conveying pipe; 33. Jet nozzle; 34. Dehumidifier; 35. Ventilation slot; 36. Plate body; 37. Mounting bracket; 38. Sliding strip; 39. Guide groove; 40. Drying block. Detailed Implementation
[0055] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0056] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0057] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" 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 an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0058] Please see Figure 1 and Figure 8 One embodiment of the present invention provides: a cloud-based intelligent lighting management system, comprising:
[0059] The wireless communication module is a wireless communication device used to connect to the controller of the lighting system via a terminal device, and to receive lighting commands sent by the terminal device; wherein...
[0060] The wireless communication device is either a WIFI communication device or a GPRS communication device;
[0061] The data storage module is used to receive lighting instructions, store the lighting control data in the instructions, and control the operation of lighting equipment through the control circuit of the lighting system.
[0062] The cloud computing module is used to perform calculations on the data stored in the data storage module, and after a preset time, it controls the lighting equipment to work and provide illumination through the control circuit.
[0063] Please see Figure 1The cloud-based intelligent lighting management system includes a wireless communication module, a data storage module, a cloud computing module, and a control circuit. The steps for controlling lighting in this system include: using a control device to control the lighting system via the wireless communication module; after receiving instructions, the lighting system stores the pre-set data through the data storage module, or directly controls the lighting equipment via the control circuit; the cloud computing module performs calculations on the data stored in the data storage module, and after a preset time, controls the lighting equipment to illuminate the system via the control circuit; the data storage module can permanently store the data controlling the lighting and allows the cloud computing module to access the data; the cloud computing module provides a computing resource sharing method based on internet technology, allowing users to connect to the network and use computing, storage, network, and other infrastructure or application services provided by cloud service providers. The cloud computing module calculates the time and controls the lighting equipment to illuminate the system. The lighting system can also be manually controlled.
[0064] Preferably, the data storage module can store the data controlling the lighting for a long time and allow the cloud computing module to read the data. The cloud computing module is a computing resource sharing method based on Internet technology. It allows users to use the computing, storage, network and other infrastructure or application services provided by cloud service providers through network connection. The cloud computing module calculates time and controls the lighting equipment to work for lighting. When the wireless communication module controls the lighting system, the lighting system can also be manually controlled.
[0065] The system includes a controller 1, with an indicator light 2 on the front to display the working status of the cloud-based intelligent lighting management system. A display screen 3 is also located on the front of the controller 1. The cloud-based intelligent lighting management system can control the lighting through the controller 1. Connecting holes 5 and limiters 6 are arranged alternately on the top of the controller 1. An antenna 4 is located on the top of the controller 1. A guide rod 14 corresponding to a limit ring 13 is fixedly connected to the outer wall of the clamping plate 12, with one end of the guide rod 14 passing through the inside of the limit ring 13. The first frame 7 is square in shape with a width equal to the thickness of the limiter 6. A magnetic plate is located at the bottom of the antenna 4 for adsorption and positioning. The frame 20 is U-shaped with its top fixedly connected to a disc 24. Two sets of threaded rods 17 are movably arranged inside the housing 15.
[0066] Please see Figure 9 , Figure 3 and Figure 4The limiter 6 includes a first frame 7, a knob 9, and a limiting ring 13. The first frame 7 is embedded inside the limiter 6. The knob 9 is located on the outer wall of the limiter 6. A bolt 8 is fixedly connected to the outer wall of the knob 9, with one end of the bolt 8 extending into the interior of the first frame 7. A nut 10 is mounted around the outer wall of the bolt 8. A drive rod 11 is fixedly connected to the outer wall of the nut 10, with one end of the drive rod 11 extending out of the interior of the first frame 7. A clamping plate 12 is fixedly connected to one end of the drive rod 11. Limiting rings 13 are symmetrically connected to the outer wall of the limiter 6. The wiring for connecting the lighting lamp is connected via... After the connection hole 5 is connected to the cloud-based intelligent lighting management system, when the limiter 6 is used to limit the connection line, turning the knob 9 will drive the bolt 8 to rotate. When the bolt 8 rotates, the position of the nut 10 will move. When the position of the nut 10 moves, the position of the clamping plate 12 will be pushed to move through the drive rod 11. The movement of the two sets of clamping plates 12 limits and clamps the wires set inside the connection hole 5, thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection line of the cloud-based intelligent lighting management system, effectively preventing the connection line from loosening.
[0067] Please see Figure 5 and Figure 6 The top of the controller 1 is provided with a housing 15, which is located on one side of the limiter 6. A rod 22 passes through the inner wall of the housing 15. A limit plate 23 is fixedly connected to the top of the rod 22. A disc 24 is installed around the outer wall of the rod 22. A frame 20 is symmetrically connected to the bottom of the disc 24. A guide rod 21 corresponding to the frame 20 is provided on the inner wall of the housing 15, and one end of the guide rod 21 passes through the inside of the frame 20. Threaded screws 17 are symmetrically arranged on the inner wall of the housing 15. A slip ring 18 is installed around the outer wall of the threaded screw 17. A drive plate 19 is fixedly connected to the outer wall of the slip ring 18, and one end of the drive plate 19 is fixedly connected to the outer wall of the frame 20. A micro motor 16 corresponding to the threaded screw 17 is provided at the bottom of the housing 15, and one end of the threaded screw 17 is connected to the output of the micro motor 16. When storing excess wiring in a cloud-based intelligent lighting management system, the excess wiring is manually and evenly wound around the surface of the pole 22. The output of the micro motor 16 rotates, causing the threaded screw 17 to rotate. The rotation of the threaded screw 17 moves the slip ring 18, which in turn drives the frame 20 to slide vertically on the outer wall of the guide rod 21 via the drive plate 19. The movement of the frame 20 pushes the disc 24 to slide vertically. As the disc 24 moves upward, it compresses the wiring wound around the outer wall of the pole 22, clamping the stored wiring between the limiting disc 23 and the disc 24. This clamping and limiting of the wiring effectively prevents it from becoming tangled.
[0068] Please see Figure 2 The controller 1 has a mounting slot 25 on its top, located on one side of the limiter 6. A miniature telescopic rod 26 is mounted on the inner wall of the mounting slot 25, and a sliding groove 27 is mounted on the outer wall. A sliding plate 28 is mounted on the top of the sliding groove 27, and a slider extending into the interior of the sliding groove 27 is mounted on the bottom of the sliding plate 28. The miniature telescopic rod 26 is fixedly connected to the outer wall of the slider to drive the sliding plate 28 to move. The sliding plate 28 is L-shaped, and a second frame 29 is mounted on its top. A fan 30 is mounted on the inner wall of the second frame 29, and a conveying pipe 32 is connected to the output end of the fan 30. A brush 31 is connected to the outer wall of the sliding plate 28, and a jet nozzle 33 is embedded in the inner wall of the sliding plate 28. The input end of the jet nozzle 33 is connected to the conveying pipe 32. (Based on cloud computing) The intelligent lighting management system is exposed to the air for a long time, and the display screen 3 and buttons on the control panel will accumulate a lot of dust. When cleaning the dust, the miniature telescopic rod 26 is activated to push the sliding plate 28 to a horizontal position. As the sliding plate 28 moves, it will move the brush 31. One side of the brush 31 is in contact with the front of the cloud-based intelligent lighting management system. As the brush 31 moves, it will remove the dust and impurities adsorbed on the surface of the control panel. At the same time, the fan 30 is activated to generate airflow. The airflow flows through the delivery pipe 32 and enters the air jet head 33. The air jet head 33 blows the airflow onto the cleaned control panel surface, thereby removing the dust residue after cleaning, thus achieving the purpose of cleaning the control panel of the cloud-based intelligent lighting management system.
[0069] Please see Figure 7 The controller 1 has a desiccant 34 at its bottom. The desiccant 34 includes a ventilation slot 35, a mounting bracket 37, and a slider 38. The ventilation slot 35 is arranged sequentially on the front of the desiccant 34. The mounting bracket 37 is arranged on the inner wall of the desiccant 34. One end of the mounting bracket 37 is connected to a plate 36. The bottom of the mounting bracket 37 has a slider 38. The inner wall of the desiccant 34 has a guide groove 39 corresponding to the slider 38, and the bottom end of the guide groove 39 extends into the interior of the guide groove 39. The inner wall of the mounting bracket 37 has a drying block 4. 0. The desiccant block 40 is made of desiccant. When water vapor is dispersed to the installation location where the cloud-based intelligent lighting management system is installed, the water vapor flows into the interior of the dehumidifier 34 through the ventilation slot 35. The desiccant block 40 can absorb the flowing water vapor, thereby improving the moisture-proof performance of the cloud-based intelligent lighting management system. Pulling the plate 36 will cause the mounting bracket 37 to slide horizontally inside the dehumidifier 34. After the mounting bracket 37 is moved to the outside, the desiccant block 40 placed inside can be replaced.
[0070] A method for using a cloud-based intelligent lighting management system includes:
[0071] S1. Firstly, when using the cloud-based intelligent lighting management system to control the lighting of the space, the on / off status and brightness of the lighting equipment can be controlled manually or automatically through the switches and buttons on the front, thereby achieving energy saving, comfort and safety. The lighting can be controlled by the antenna 4 and the internal IoT module through a remote control or smartphone application and smart home system. After the lighting circuit is connected to the cloud-based intelligent lighting management system through the connection hole 5, when the limiter 6 limits the connection circuit, turning the knob 9 will drive the bolt 8 to rotate. When the bolt 8 rotates, the position of the nut 10 will move. When the position of the nut 10 moves, the position of the clamping plate 12 will be pushed by the drive rod 11. The movement of the two sets of clamping plates 12 limits and clamps the wires set inside the connection hole 5, thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection circuit of the cloud-based intelligent lighting management system, effectively preventing the connection circuit from loosening.
[0072] S2. When storing excess connection lines of the cloud-based intelligent lighting management system, the excess connection lines are manually and evenly wound around the surface of the pole 22. The output end of the micro motor 16 rotates, which drives the threaded screw 17 to rotate. When the threaded screw 17 rotates, it causes the slip ring 18 to move, which drives the frame 20 to slide vertically on the outer wall of the guide rod 21 via the drive plate 19. When the frame 20 moves, it pushes the disc 24 to slide vertically. When the disc 24 moves upward, it squeezes the lines wound around the outer wall of the pole 22, clamping the stored and wound lines between the limiting disc 23 and the disc 24. This can limit and clamp the lines, achieving the purpose of limiting and storing the lines used in the cloud-based intelligent lighting management system, which can effectively prevent the lines from being scattered.
[0073] S3. The cloud-based intelligent lighting management system is exposed to the air for a long time, and the display screen 3 and buttons on the control panel will accumulate a lot of dust. When cleaning the dust, the miniature telescopic rod 26 is activated to push the sliding plate 28 to a horizontal position. When the sliding plate 28 moves, it will drive the brush 31 to move. One side of the brush 31 contacts the front of the cloud-based intelligent lighting management system. When the brush 31 moves, it will remove the dust and impurities adsorbed on the surface of the control panel. At the same time, the fan 30 is activated to generate airflow. The airflow flows through the delivery pipe 32 into the air jet head 33. The air jet head 33 blows the airflow onto the cleaned control panel surface, thereby removing the dust residue after cleaning, and achieving the purpose of cleaning the control panel of the cloud-based intelligent lighting management system.
[0074] S4. The desiccant block 40 is made of desiccant. When water vapor is dispersed to the installation location where the cloud-based intelligent lighting management system is installed, the water vapor flows into the interior of the dehumidifier 34 through the ventilation slot 35. The desiccant block 40 can absorb the flowing water vapor, thereby improving the moisture-proof performance of the cloud-based intelligent lighting management system. Pulling the plate 36 will cause the mounting bracket 37 to slide horizontally inside the dehumidifier 34. After the mounting bracket 37 is moved to the outside, the desiccant block 40 placed inside can be replaced.
[0075] Step S1 also includes the following steps:
[0076] S11. When the clamping plate 12 moves, it will drive the guide rod 14 to slide horizontally inside the limiting ring 13, thereby guiding the clamping plate 12 to slide horizontally.
[0077] Step S2 also includes the following steps:
[0078] S21. When the position of the disk 24 moves, the rod 22 can guide the disk 24 so that the disk 24 slides vertically.
[0079] Step S3 also includes the following steps:
[0080] S31. The slider connected to the bottom of the sliding plate 28 is U-shaped. The miniature telescopic rod 26 can push the slider to slide horizontally inside the slide groove 27, thereby moving the position of the sliding plate 28.
[0081] Step S4 also includes the following steps:
[0082] S41. When the mounting bracket 37 moves, it will drive the slide bar 38 to slide horizontally inside the guide groove 39, thereby guiding the mounting bracket 37 to slide horizontally.
[0083] Working principle: First, when using a cloud-based intelligent lighting management system to control the lighting, the switches and buttons on the front can be used to manually or automatically control the on / off status and brightness of the lighting equipment, thereby achieving energy saving, comfort, and safety. Through antenna 4 and the internal IoT module, the lighting can be controlled via remote control, smartphone app, or smart home system. After the lighting circuit is connected to the cloud-based intelligent lighting management system through connection hole 5, when limit switch 6 is used to limit the connection circuit, turning knob 9 will cause bolt 8 to rotate. The rotation of bolt 8 will move the position of nut 10, and the movement of nut 10 will push the drive rod 11. The position of the clamping plate 12 moves, and the two sets of clamping plates 12 move to limit and clamp the wires set inside the connection hole 5, thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection line of the cloud-based intelligent lighting management system. It effectively prevents the connection line from loosening. When storing the excess connection line of the cloud-based intelligent lighting management system, the excess connection line is manually and evenly wound around the surface of the pole 22. The output end of the micro motor 16 rotates, which drives the threaded screw 17 to rotate. When the threaded screw 17 rotates, it will cause the slip ring 18 to move, which will drive the frame 20 to slide vertically on the outer wall of the guide rod 21 through the drive plate 19. When the frame 20 moves, it will push the disc 24 to slide vertically. When the disc 24 moves upward, it squeezes the wires wrapped around the outer wall of the rod 22, clamping the wrapped wires between the limiting disc 23 and the disc 24. This clamps and limits the wires, effectively preventing them from becoming tangled. Since the cloud-based intelligent lighting management system is exposed to air for extended periods, dust accumulates on the display screen 3 and buttons on the control panel. To clean the dust, the miniature telescopic rod 26 pushes the sliding plate 28 to a horizontal position. The movement of the sliding plate 28 moves the brush 31, with one side of the brush 31 contacting the front of the cloud-based intelligent lighting management system. As the brush 31 moves, it removes dust and impurities adsorbed on the control panel surface. Simultaneously, the fan 30 operates, generating airflow. This airflow flows through the delivery pipe 32 into the nozzle 33, which then blows the airflow onto the cleaned control panel surface, removing any remaining dust. This achieves the cleaning purpose of the cloud-based intelligent lighting management system control panel. The drying block 40, made of desiccant, absorbs moisture that is dispersed to the installation location of the cloud-based intelligent lighting management system. The moisture flows through the ventilation slot 35 into the desiccant 34, where the drying block 40 adsorbs the moisture, thus improving the moisture-proof performance of the cloud-based intelligent lighting management system.Pulling the plate 36 will cause the mounting bracket 37 to slide horizontally inside the desiccant 34. After the mounting bracket 37 is moved to the outside, the desiccant block 40 placed inside can be replaced.
[0084] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A cloud-based intelligent lighting management system, characterized in that, include: The wireless communication module is a wireless communication device used to connect to the controller (1) of the lighting system via a terminal device, and to receive lighting commands sent by the terminal device; wherein The wireless communication device is either a WIFI communication device or a GPRS communication device; The data storage module is used to receive lighting instructions, store the lighting control data in the instructions, and control the operation of lighting equipment through the control circuit of the lighting system. The cloud computing module is used to perform calculations on the data stored in the data storage module, and after a preset time, it controls the lighting equipment to work and provide illumination through the control circuit. The controller (1) has a mounting groove (25) on its top, which is located on one side of the limiter (6). A miniature telescopic rod (26) is provided on the inner wall of the mounting groove (25), and a sliding groove (27) is provided on the outer wall of the mounting groove (25). A sliding plate (28) is provided on the top of the sliding groove (27), and a slider is provided at the bottom of the sliding plate (28) extending into the interior of the sliding groove (27). The miniature telescopic rod (26) is fixedly connected to the outer wall of the slider for driving. The position of the sliding plate (28) is moved. The sliding plate (28) is L-shaped. A second frame (29) is provided on the top of the sliding plate (28). A fan (30) is provided on the inner wall of the second frame (29). The output end of the fan (30) is connected to the conveying pipe (32). A brush (31) is connected to the outer wall of the sliding plate (28). An air jet (33) is embedded in the inner wall of the sliding plate (28), and the input end of the air jet (33) is connected to the conveying pipe (32). The controller (1) is provided with a desiccant (34) at the bottom. The desiccant (34) includes a ventilation groove (35), a mounting bracket (37) and a slider (38). The ventilation groove (35) is arranged in sequence on the front of the desiccant (34). The mounting bracket (37) is arranged on the inner wall of the desiccant (34). One end of the mounting bracket (37) is connected to a plate (36). The bottom of the mounting bracket (37) is provided with a slider (38). The inner wall of the desiccant (34) is provided with a guide groove (39) corresponding to the slider (38), and the bottom end of the guide groove (39) extends into the interior of the guide groove (39). The inner wall of the mounting bracket (37) is provided with a drying block (40).
2. The cloud-based intelligent lighting management system according to claim 1, characterized in that: The data storage module stores the data controlling the lighting for a long time and allows the cloud computing module to read the data. The cloud computing module is a computing resource sharing method based on Internet technology. Users can use the infrastructure or application services provided by the cloud service provider through network connection. The cloud computing module calculates the time and controls the lighting equipment to work for lighting. When the wireless communication module controls the lighting system, the lighting system can be manually controlled.
3. The cloud-based intelligent lighting management system according to claim 1, characterized in that: The controller (1) has an indicator light (2) on its front side and a display screen (3) on its front side. The top of the controller (1) has a connecting hole (5) and a limiter (6) arranged alternately. The limiter (6) includes a first frame (7), a knob (9), and a limiting ring (13). The first frame (7) is embedded inside the limiter (6). The knob (9) is located on the outer wall of the limiter (6). A bolt (8) is fixedly connected to the outer wall of the knob (9), and one end of the bolt (8) extends into the interior of the first frame (7). A nut (10) is mounted around the outer wall of the bolt (8). A drive rod (11) is fixedly connected to the outer wall of the nut (10), and one end of the drive rod (11) extends out of the interior of the first frame (7). A clamping plate (12) is fixedly connected to one end of the drive rod (11). Limiting rings (13) are symmetrically connected to the outer wall of the limiter (6).
4. The cloud-based intelligent lighting management system according to claim 1, characterized in that: The controller (1) is provided with an antenna (4) on its top. The outer wall of the clamping plate (12) is fixedly connected with a guide rod (14) corresponding to the limiting ring (13), and one end of the guide rod (14) passes through the inside of the limiting ring (13).
5. The cloud-based intelligent lighting management system according to claim 4, characterized in that: The top of the controller (1) is provided with a box (15) and the box (15) is located on one side of the limiter (6). The inner wall of the box (15) is provided with a rod (22). The top of the rod (22) is fixedly connected to a limit plate (23). The outer wall of the rod (22) is surrounded by a disc (24). The bottom of the disc (24) is symmetrically connected to a frame (20). The inner wall of the box (15) is provided with a guide rod (21) corresponding to the frame (20), and one end of the guide rod (21) is inserted inside the frame (20). The inner wall of the housing (15) is symmetrically provided with threaded screws (17), and a slip ring (18) is installed around the outer wall of the threaded screw (17). A drive plate (19) is fixedly connected to the outer wall of the slip ring (18), and one end of the drive plate (19) is fixedly connected to the outer wall of the frame (20). A micro motor (16) corresponding to the threaded screw (17) is provided at the bottom of the housing (15), and one end of the threaded screw (17) is fixedly connected to the output end of the micro motor (16).
6. A cloud-based intelligent lighting management system according to any one of claims 1-5, characterized in that: The first frame (7) is square in shape and the width is equal to the thickness of the limiter (6). The bottom of the antenna (4) is provided with a magnetic plate for adsorption and positioning of the antenna (4). The frame (20) is U-shaped and the top is fixedly connected to the disc (24). There are two sets of threaded rods (17) inside the box (15).
7. A method of using a cloud-based intelligent lighting management system, applicable to the cloud-based intelligent lighting management system described in any one of claims 1-6, characterized in that, include: S1. First, when using the cloud-based intelligent lighting management system to control the lighting work to illuminate the space, the switch and button set on the front can be used to control the switching status and brightness of the lighting equipment manually or automatically, thereby achieving the purpose of energy saving, comfort and safety. Through the antenna (4) and the internal Internet of Things module, the lighting can be controlled by the remote control or smartphone application and smart home system. After the lighting line is connected to the cloud-based intelligent lighting management system through the connection hole (5), when the limiter (6) limits the connection line, turning the knob (9) will drive the bolt (8) to rotate. When the bolt (8) rotates, the position of the nut (10) will move. When the position of the nut (10) moves, the position of the clamping plate (12) will be pushed by the drive rod (11). The two sets of clamping plates (12) move to limit and clamp the wire set in the connection hole (5), thereby improving the stability of the wire connection and achieving the purpose of improving the installation stability of the connection line of the cloud-based intelligent lighting management system, effectively preventing the connection line from loosening. S2. When storing excess connection lines of the cloud-based intelligent lighting management system, the excess connection lines are manually wound evenly on the surface of the pole (22). The output end of the micro motor (16) rotates, which drives the threaded screw (17) to rotate. When the threaded screw (17) rotates, the position of the slip ring (18) moves, which drives the frame (20) to slide vertically on the outer wall of the guide rod (21) through the drive plate (19). When the position of the frame (20) moves, it pushes the disc (24) to slide vertically. When the position of the disc (24) moves upward, it squeezes the lines wound on the outer wall of the pole (22), clamping the stored and wound lines between the limiting disc (23) and the disc (24), thereby limiting and clamping the lines, achieving the purpose of limiting and storing the lines used in the cloud-based intelligent lighting management system, effectively avoiding the lines from being scattered. S3. The cloud-based intelligent lighting management system is exposed to the air for a long time. The display screen (3) and buttons on the control panel will accumulate a lot of dust. When cleaning the dust, the micro telescopic rod (26) is activated to push the sliding plate (28) to a horizontal position. When the sliding plate (28) moves, it will drive the brush (31) to move. One side of the brush (31) contacts the front of the cloud-based intelligent lighting management system. When the brush (31) moves, it will remove the dust and impurities adsorbed on the surface of the control panel. At the same time, the fan (30) is activated to generate wind. The wind flows through the delivery pipe (32) into the inside of the jet head (33). The jet head (33) blows the wind onto the cleaned control panel surface, thereby removing the dust residue after cleaning, and achieving the purpose of cleaning the control panel of the cloud-based intelligent lighting management system. S4. The drying block (40) is made of desiccant. When water vapor is dispersed to the installation location where the cloud-based intelligent lighting management system is installed, the water vapor flows into the interior of the dehumidifier (34) through the ventilation groove (35). The drying block (40) adsorbs the flowing water vapor, thereby improving the moisture-proof performance of the cloud-based intelligent lighting management system. Pulling the plate (36) will drive the mounting bracket (37) to slide horizontally inside the dehumidifier (34). After the mounting bracket (37) moves to the outside, the drying block (40) placed inside can be replaced.
8. The method of using a cloud-based intelligent lighting management system according to claim 7, characterized in that, Step S1 further includes the following steps: S11. When the position of the clamping plate (12) moves, it will drive the guide rod (14) to slide horizontally inside the limiting ring (13), thereby guiding the clamping plate (12) to slide horizontally. Step S2 further includes the following steps: S21. When the disk (24) moves to a new position, the rod (22) guides the disk (24) so that the disk (24) slides vertically to the new position. Step S3 further includes the following steps: S31. The slider connected to the bottom of the sliding plate (28) is U-shaped. The miniature telescopic rod (26) pushes the slider to slide horizontally inside the groove (27), thereby moving the position of the sliding plate (28). Step S4 further includes the following steps: S41. When the mounting bracket (37) moves, it will drive the slide bar (38) to slide horizontally inside the guide groove (39), thereby guiding the mounting bracket (37) to slide horizontally.
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