Low-voltage reactive capacitor control assembly structure
By designing a low-voltage reactive capacitor control component that integrates a wireless communication module and signal filtering functions, the problems of inconvenient design and maintenance in the existing technology are solved, remote monitoring and signal optimization are achieved, and the operating stability and utilization efficiency of the equipment are improved.
Patent Information
- Application Number
- CN202422774004.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-14
AI Technical Summary
The existing low-voltage reactive power control component structures vary in style due to different performances, which makes design, manufacturing and maintenance inconvenient, difficult to achieve normalization and standardization, requires a lot of manpower to operate, and cannot control the low-voltage reactive capacitors in a timely manner.
A low-voltage reactive capacitor control component is designed, which includes a main body, a control data transmission component and a display component. It adopts a wireless communication module for remote control, integrates a single-chip microcomputer, a data analysis module, a current sensing unit, a voltage sensing unit, a filtering unit and an anti-interference unit, realizes remote monitoring and signal filtering, and has remote monitoring functions and dynamic filtering capabilities.
It realizes remote monitoring and optimized management of low-voltage reactive capacitors, improves operational stability and safety, reduces the occurrence of failures, enhances equipment utilization efficiency and signal quality, and simplifies maintenance processes.
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Figure CN223378877U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of low-voltage reactive capacitors, in particular to a low-voltage reactive capacitor control component structure. Background Art
[0002] Low-voltage reactive power control components are mainly used for reactive power compensation at the low-voltage end of the power supply and utilization, and to improve the power factor at the low-voltage end of the power supply and utilization. They are the main technical means to reduce losses and save energy at the low-voltage end of the power supply and utilization. At the same time, they have the function of improving the power transmission capacity of the power supply and utilization grid and improving the level of safe operation and power quality of the power supply and utilization grid.
[0003] The existing low-voltage reactive power control component structures have various styles due to different performances, which causes inconvenience to the design, manufacture, selection of low-voltage reactive power control component structures and the design, manufacture and operation and maintenance of low-voltage reactive power control systems. It is difficult to achieve the standardization and standardization of low-voltage reactive power control component structures and low-voltage reactive power control systems. There are inconveniences in internal control, and a large amount of manpower is required for operation. The low-voltage reactive capacitor cannot be controlled in a timely manner. Therefore, a low-voltage reactive capacitor control component structure is needed to improve the above problems. Utility Model Content
[0004] In order to solve the problem that the existing low-voltage reactive power control component structure has a variety of styles due to different performances, it causes inconvenience to the design, manufacture, selection of the low-voltage reactive power control component structure and the design, manufacture and operation and maintenance of the low-voltage reactive power control system, it is difficult to achieve the normalization and standardization of the low-voltage reactive power control component structure and the low-voltage reactive power control system, there is inconvenience in internal control, a large amount of manpower operation is required, and the low-voltage reactive capacitor cannot be controlled in time, the purpose of the present utility model is to provide a low-voltage reactive capacitor control component structure to solve the problems raised in the above background technology.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] A low-voltage reactive capacitor control component structure comprises a main body, wherein a control data transmission component and a display component are fixedly connected to the interior of the main body;
[0007] The main body includes a base, the top of the base is fixedly connected to a shell, and the interior of the shell is fixedly connected to a power supply;
[0008] The control data transmission component includes a circuit board, and the side of the circuit board is fixedly connected with a single-chip microcomputer, a wireless communication module, a data analysis module, a current sensing unit, a voltage sensing unit, a filtering unit, an anti-interference unit and a signal amplification unit.
[0009] As a preferred solution of the present invention, a mounting hole is provided inside the circuit board, and there are several mounting holes.
[0010] As a preferred solution of the present invention, the single chip microcomputer, wireless communication module, data analysis module and current sensing unit are all electrically connected.
[0011] As a preferred solution of the present invention, the current sensing unit, the voltage sensing unit, the filtering unit, the anti-interference unit and the signal amplifying unit are all electrically connected.
[0012] As a preferred solution of the present invention, a top compartment is fixedly connected to the top of the housing, a telescopic rod is installed inside the top compartment, and a signal transceiver is fixedly connected to the top of the telescopic rod.
[0013] As a preferred solution of the present invention, a control box is fixedly connected to the top of the shell, and a touch display screen is fixedly connected to the top of the control box.
[0014] As a preferred solution of the present invention, an integrated port is provided on the side of the housing, a radiator is fixedly connected to the side of the housing, and two radiators are provided.
[0015] As a preferred solution of the present invention, the display assembly includes a mounting plate, and a light debugger and a light bar are fixedly connected to the side of the mounting plate, and the light bar is provided with several.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] 1. In the present invention, the low-voltage reactive capacitor is remotely controlled by utilizing a wireless communication module. The remote control system has a remote monitoring function, which monitors the operation of the low-voltage reactive capacitor in real time and issues an alarm in time when an abnormality is found. This can ensure the operational stability and safety of the low-voltage reactive capacitor and effectively reduce the occurrence of faults. At the same time, remote monitoring can improve the utilization efficiency of the low-voltage reactive capacitor and realize the optimized management of the low-voltage reactive capacitor.
[0018] 2. In the utility model, by utilizing the filtering unit to filter and eliminate the working signal that interferes with the low-voltage reactive capacitor, the interference signal is suppressed, the modular working process of the low-voltage reactive capacitor can be improved, the frequency and gain of the signal can be controlled, unnecessary frequencies can be filtered out, electromagnetic interference in the power grid can be suppressed, the quality of the signal can be improved, dynamic filtering can be achieved, and the changing harmonic currents in the power grid can be automatically tracked and compensated. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0020] Figure 2This is a schematic diagram of the control component structure of the utility model;
[0021] Figure 3 This is a schematic diagram of the display assembly structure of the present utility model;
[0022] Figure 4 It is a side structural schematic diagram of the utility model.
[0023] In the figure: 1. Main body; 101. Base; 102. Shell; 103. Power supply; 104. Top compartment; 105. Telescopic rod; 106. Signal transceiver; 107. Control box; 108. Touch screen; 109. Integrated port; 110. Radiator; 2. Control data transmission component; 201. Circuit board; 202. Mounting hole; 203. Single chip microcomputer; 204. Wireless communication module; 205. Data analysis module; 206. Current sensing unit; 207. Voltage sensing unit; 208. Filter unit; 209. Anti-interference unit; 210. Signal amplification unit; 3. Display component; 301. Mounting plate; 302. Light debugger; 303. Light strip. DETAILED DESCRIPTION
[0024] The following will combine the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0025] Example: See Figures 1-4 The structure of a low-voltage reactive capacitor control component shown in the figure includes a main body 1, wherein a control data transmission component 2 and a display component 3 are fixedly connected to the interior of the main body 1;
[0026] In this embodiment, reference Figure 1 、 Figure 2 and Figure 4As shown, the main body 1 includes a base 101, the top of the base 101 is fixedly connected to a shell 102, the interior of the shell 102 is fixedly connected to a power supply 103, the control data transmission component 2 includes a circuit board 201, the side of the circuit board 201 is fixedly connected to a single-chip computer 203, a wireless communication module 204, a data analysis module 205, a current sensing unit 206, a voltage sensing unit 207, a filtering unit 208, an anti-interference unit 209 and a signal amplification unit 210, and the wireless communication module 204 is used to remotely control the low-voltage reactive capacitor. The remote control system has a remote monitoring function, which monitors the operation of the low-voltage reactive capacitor in real time and promptly issues an alarm when an abnormal situation is found, thereby ensuring the operating stability and safety of the low-voltage reactive capacitor and effectively reducing the occurrence of faults. At the same time, remote monitoring can improve the utilization efficiency of the low-voltage reactive capacitor and achieve optimized management of the low-voltage reactive capacitor.
[0027] Among them, the circuit board 201 is provided with a mounting hole 202, and several mounting holes 202 are provided. The single-chip computer 203, the wireless communication module 204, the data analysis module 205 and the current sensing unit 206 are all electrically connected. The current sensing unit 206, the voltage sensing unit 207, the filtering unit 208, the anti-interference unit 209 and the signal amplification unit 210 are all electrically connected. The top of the shell 102 is fixedly connected to the top compartment 104, and the top of the top compartment 104 is installed with a telescopic rod 105. The top of the telescopic rod 105 is fixedly connected to the signal transceiver 106. The filtering unit 208 is used to filter and eliminate the working signal that interferes with the low-voltage reactive capacitor, suppress the interference signal, improve the modular working process of the low-voltage reactive capacitor, control the frequency and gain of the signal, filter out unnecessary frequencies, suppress electromagnetic interference in the power grid, improve the quality of the signal, realize dynamic filtering, and automatically track and compensate for the changing harmonic currents in the power grid.
[0028] In this embodiment, reference Figure 1 、 Figure 3 and Figure 4 As shown, the top of the shell 102 is fixedly connected to the control box 107, the top of the control box 107 is fixedly connected to the touch display screen 108, the side of the shell 102 is provided with an integrated port 109, the side of the shell 102 is fixedly connected to a radiator 110, two radiators 110 are provided, the display component 3 includes a mounting plate 301, the side of the mounting plate 301 is fixedly connected to a light debugger 302 and a light bar 303, and several light bar 303 are provided. The advantages of the touch display screen 108 are low price, easy installation, and no card or any other controller. In addition, since there is no capacitor charging and discharging process, the response speed is faster than the capacitive type, but the resolution is lower. The function of the radiator 110 is to absorb this heat and then dissipate it into or outside the chassis to ensure that the temperature of the internal components of the equipment is normal.
[0029] In this solution, a low-voltage reactive capacitor control component structure uses a single-chip microcomputer 203 and a wireless communication module 204 to remotely control the low-voltage reactive capacitor when in use. The low-voltage reactive capacitor remote control system has a remote monitoring function, which monitors the operation of the low-voltage reactive capacitor in real time and promptly issues an alarm when an abnormality is found. This monitoring security is unmatched by traditional equipment control, which can ensure the stability and safety of equipment operation and effectively reduce the occurrence of equipment failures. At the same time, remote monitoring can improve the efficiency of equipment use and achieve optimized equipment management. The data analysis module 205 is used to perform intelligent data analysis on the data, and intelligent analysis is performed on the low-voltage reactive capacitor operation data to provide equipment maintenance suggestions. Intelligent data analysis not only improves the equipment operation efficiency, but also can discover problems with the equipment by mining and analyzing the data and provide corresponding solutions, thereby effectively improving the service life and production efficiency of the low-voltage reactive capacitor. When interference signals intervene, the filtering unit 208 is used to filter and eliminate the working signals of the low-voltage reactive capacitor, thereby suppressing electromagnetic interference in the power grid, improving the signal quality, and achieving dynamic filtering.
[0030] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A low-voltage reactive capacitor control assembly structure, comprising a main body (1), characterized in that: A control data transmission component (2) and a display component (3) are fixedly connected inside the main body (1); The main body (1) comprises a base (101), the top of the base (101) is fixedly connected to a housing (102), and the interior of the housing (102) is fixedly connected to a power supply (103); The control data transmission component (2) comprises a circuit board (201), and a single-chip computer (203), a wireless communication module (204), a data analysis module (205), a current sensing unit (206), a voltage sensing unit (207), a filtering unit (208), an anti-interference unit (209), and a signal amplification unit (210) are fixedly connected to the side of the circuit board (201).
2. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The circuit board (201) is provided with a mounting hole (202) inside, and a plurality of mounting holes (202) are provided.
3. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The single chip computer (203), the wireless communication module (204), the data analysis module (205) and the current sensing unit (206) are all electrically connected.
4. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The current sensing unit (206), the voltage sensing unit (207), the filtering unit (208), the anti-interference unit (209) and the signal amplifying unit (210) are all electrically connected.
5. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The top of the housing (102) is fixedly connected to a top compartment (104), a telescopic rod (105) is installed inside the top compartment (104), and the top of the telescopic rod (105) is fixedly connected to a signal transceiver (106).
6. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The top of the housing (102) is fixedly connected to a control box (107), and the top of the control box (107) is fixedly connected to a touch display screen (108).
7. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: An integrated port (109) is provided on the side of the housing (102), and a radiator (110) is fixedly connected to the side of the housing (102), with two radiators (110) being provided.
8. The low-voltage reactive capacitor control assembly structure according to claim 1, characterized in that: The display assembly (3) comprises a mounting plate (301), a light debugger (302) and a light bar (303) being fixedly connected to the side of the mounting plate (301), and a plurality of light bars (303) are provided.