Automatic control device for power grid dispatching

By designing dehumidification and heat dissipation mechanisms in the power grid scheduling automation control device, the problem of low operating efficiency of equipment in the existing technology under high temperature and humidity environments is solved, and more efficient dehumidification and heat dissipation effects are achieved, and internal components of the equipment are protected.

CN119944970APending Publication Date: 2025-05-06QINGHAI ELECTRIC POWER DESIGN INST
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Patent Information

Application Number
CN202510214314.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When existing electrical secondary equipment operates in high temperature and humidity environments, the dehumidification and heat dissipation efficiency are low, which affects the normal operation of the device.

Method used

An automatic control device for power grid dispatching is designed, including a dehumidification mechanism and a heat dissipation mechanism. The dehumidification mechanism replaces humid gas through a heater and a fan, and the heat dissipation mechanism replaces hot gas through a cooler and a fan, combining the sealing assembly and the exhaust chamber to further improve the dehumidification and heat dissipation effect.

Benefits of technology

It effectively improves the dehumidification and heat dissipation efficiency of electrical secondary equipment, prevents moisture and dust from entering, protects internal components, and ensures the stable operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of power grid dispatching, in particular to a power grid dispatching automatic control device which comprises a control device whole, a dehumidification mechanism is installed at the top of the control device whole, a heat dissipation mechanism is installed at the bottom of the control device whole, the dehumidification mechanism comprises a metal outer frame, and a dehumidification cavity and a first exhaust cavity are formed in the metal outer frame; a first sealing assembly is installed at the position, close to the bottom, in the dehumidification cavity, a heater is fixedly connected to the upper portion of the first sealing assembly, and a first air supply fan is fixedly connected to the upper portion of the heater; a second sealing assembly is fixedly connected to the position, close to the bottom, in the first exhaust cavity, a first dustproof net is fixedly connected to the top of the metal outer frame, a first dust removal assembly is installed at the top of the first dustproof net, and first power assemblies are installed at the bottoms of the two sides of the first dust removal assembly and located on the two sides of the top of the metal outer frame; the dehumidification and heat dissipation efficiency can be effectively enhanced through the dehumidification mechanism and the heat dissipation mechanism, and the service life of the device is prolonged.
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Description

Technical Field

[0001] The present application relates to the technical field of power grid dispatching, and in particular to a power grid dispatching automation control device. Background Art

[0002] Power dispatching is an effective management method adopted to ensure the safe and stable operation of the power grid, reliable external power supply, and orderly progress of various power production tasks. The specific work content of power dispatching is to judge the safety and economic operation status of the power grid based on the data information fed back by various information collection equipment, or the information provided by monitoring personnel, combined with the actual operation parameters of the power grid, such as voltage, current, frequency, load, etc., and comprehensively consider the progress of various production tasks, issue operating instructions through telephone or automatic system, and command on-site operators or automatic control systems to make adjustments, such as adjusting generator output, adjusting load distribution, switching capacitors and reactors, etc., so as to ensure the continuous safe and stable operation of the power grid.

[0003] In the prior art, grid dispatching is an important means to ensure that the grid can continue to operate safely and stably, and the grid dispatching system is composed of many devices, among which electrical secondary equipment is an auxiliary equipment used to monitor, measure, control, adjust and protect the primary equipment of the power system. In order to better and more comprehensively assist the primary equipment of the power system, many devices are installed in the existing electrical secondary equipment. These devices will generate heat during operation. If they are not discharged in time, they will affect the operation of the device; when the electrical secondary equipment is installed in a humid environment, the humid air will also affect the device. The problems of excessive heat and heavy humidity can be solved by dehumidification and heat dissipation components, but the existing dehumidification and heat dissipation components have low dehumidification and heat dissipation efficiency when dissipating heat from electrical secondary equipment. For this reason, technicians in this field have proposed a grid dispatching automation control device. Summary of the invention

[0004] The purpose of this application is to provide a power grid dispatching automation control device to solve the problems raised in the above background technology.

[0005] To achieve the above objectives, this application adopts the following technical solutions:

[0006] A power grid dispatching automation control device, comprising a control device as a whole, a cabinet door is connected to the front of the control device as a whole through a hinge, a control mechanism is fixedly connected to the front of the cabinet door near the top, and a dehumidification mechanism is installed on the top of the control device as a whole;

[0007] The dehumidification mechanism includes a metal outer frame, a dehumidification chamber is opened inside the metal outer frame near the left side, a first sealing component is installed inside the dehumidification chamber near the bottom, a heater is fixedly connected above the first sealing component and inside the dehumidification chamber, and a first supply fan is fixedly connected above the heater and inside the dehumidification chamber; a first exhaust chamber is opened inside the metal outer frame and on the right side of the dehumidification chamber, a second sealing component is fixedly connected inside the first exhaust chamber near the bottom, a first dustproof net is fixedly connected inside the metal outer frame near the top and at the top of the dehumidification chamber and the first exhaust chamber, a first dust removal component is installed on the top of the first dustproof net, and a first power component is installed at the bottom of both sides of the first dust removal component and on both sides of the top of the metal outer frame.

[0008] Furthermore, the device also includes a heat dissipation mechanism, which is installed at the bottom of the control device as a whole, and the heat dissipation mechanism includes a base, a heat dissipation cavity is opened inside the base near the right side, a third sealing component is installed inside the heat dissipation cavity near the top, a refrigerator is fixedly connected below the third sealing component and inside the heat dissipation cavity, a second supply fan is fixedly connected below the refrigerator and also inside the heat dissipation cavity, a second exhaust cavity is opened inside the base near the left side, a fourth sealing component is fixedly connected inside the second exhaust cavity near the top, a second dustproof net is fixedly connected inside the base near the bottom and at the bottom of the heat dissipation cavity and the second exhaust cavity, a second dust removal component is installed at the bottom of the second dustproof net, and a second power component is installed at the tops on both sides of the second dust removal component and on both sides of the bottom of the base.

[0009] As a preferred solution of the present invention, the first sealing assembly includes a first sealing plate rotatably connected to the metal outer frame, a first drive motor is installed on the front side of the first sealing plate near the left side, the output end of the first drive motor is fixedly connected to the rotating shaft of the first sealing plate, and the first drive motor is fixedly connected to the metal outer frame; the second sealing assembly includes a second sealing plate rotatably connected to the metal outer frame, a second drive motor is installed on the front side of the second sealing plate near the right side, the output end of the second drive motor is fixedly connected to the rotating shaft of the second sealing plate, and the second drive motor is fixedly connected to the metal outer frame.

[0010] As a preferred solution of the present invention, the first power assembly includes a symmetrically installed first power box, a first linear guide rail is opened on the top of the first power box, a first screw rod is internally rotatably connected to the first linear guide rail, a first screw rod slider is intersected by the outer thread of the first screw rod, the first screw rod slider is slidably connected to the first linear guide rail, and the top of the first screw rod slider is fixedly connected to the first fixed roller, a first power motor is fixedly connected to the back of the first power box, and the output end of the first power motor is fixedly connected to the first screw rod.

[0011] As a preferred solution of the present invention, the third sealing assembly includes a third sealing plate rotatably connected to the base, a third drive motor is installed on the front side of the third sealing plate near the right side, the output end of the third drive motor is fixedly connected to the rotating shaft of the third sealing plate, and the third drive motor is fixedly connected to the base.

[0012] As a preferred solution of the present invention, the fourth sealing assembly includes a fourth sealing plate rotatably connected to the base, a fourth drive motor is installed on the front side of the fourth sealing plate near the right side, the output end of the fourth drive motor is fixedly connected to the rotating shaft of the fourth sealing plate, and the fourth drive motor is fixedly connected to the base.

[0013] As a preferred solution of the present invention, a power grid dispatching automation control device according to claim 2 is characterized in that: the first dust removal component includes a first dust removal brush, and the top of the first dust removal brush is fixedly connected to a first fixed roller; the second dust removal component includes a second dust removal brush, and the bottom of the second dust removal brush is fixedly connected to a second fixed roller.

[0014] As a preferred solution of the present invention, the second power assembly includes a symmetrically installed second power box, a second linear guide rail is provided at the bottom of the second power box, a second screw rod is rotatably connected to the inside of the second linear guide rail, a second screw rod slider is intersected by the outer thread of the second screw rod, the second screw rod slider is slidably connected to the second linear guide rail, and the bottom of the second screw rod slider is fixedly connected to the second fixed roller, a second power motor is fixedly connected to the back of the second power box, and the output end of the second power motor is fixedly connected to the second screw rod.

[0015] As a preferred solution of the present invention, connection ports are provided inside the control device as a whole near the top and the bottom, and the metal outer frame and the base are connected to the interior of the control device as a whole through the connection ports. A temperature sensor and a humidity sensor are arranged inside the control device as a whole, and the temperature sensor and the humidity sensor are electrically connected to the control mechanism.

[0016] Compared with the prior art, the power grid dispatching automation control device of the present application has the following beneficial effects:

[0017] 1. Through the arrangement of the dehumidification mechanism and the heat dissipation mechanism, in the dehumidification mechanism, the heater can effectively heat the external air, and the first supply fan can effectively transport the heated air to the interior of the control device as a whole. In this way, the heated air can effectively replace the moisture inside the control device as a whole, and the moisture will sink in the air. Therefore, the dehumidification mechanism is arranged above the control device as a whole to effectively enhance the dehumidification efficiency and effectively ensure the dehumidification efficiency.

[0018] 2. Through the setting of the dehumidification mechanism and the heat dissipation mechanism, in the heat dissipation mechanism, the refrigerator can effectively cool the external air, and the second supply fan can effectively transport the cooled air to the interior of the control device as a whole. In this way, the heated air can effectively replace the hot air inside the control device as a whole, and the hot air will rise in the air, so the heat dissipation mechanism is set below the control device as a whole to effectively enhance the heat dissipation efficiency and effectively ensure the heat dissipation efficiency.

[0019] 3. Through the arrangement of the first sealing component and the second sealing component as well as the third sealing component and the fourth sealing component, a sealing effect can be achieved. In this way, when the temperature and humidity detected by the temperature sensor and the humidity sensor do not reach the set values, external moisture and dust can be prevented from entering the interior of the entire control device, thereby effectively protecting the internal components of the entire control device.

[0020] 4. Through the setting of the first exhaust chamber and the second exhaust chamber, the first exhaust chamber can be opened synchronously when the cooler in the heat dissipation chamber is turned on, so as to facilitate the replacement of hot air from the top, and the second exhaust chamber can be opened synchronously when the heater in the dehumidification chamber is turned on, so as to facilitate the discharge of humid air from the bottom, so as to ensure the dehumidification and heat dissipation effects.

[0021] 5. Through the arrangement of the first dust removal component and the second dust removal component, the first dust removal component and the second dust removal component can respectively clean the dust on the surface of the first dustproof net and the second dustproof net, which can effectively ensure that the meshes of the first dustproof net and the second dustproof net will not be blocked by dust, thereby ensuring that air can circulate during dehumidification and heat dissipation, thereby ensuring the effect and efficiency of dehumidification and heat dissipation. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the overall structure of this application;

[0023] Figure 2 This is a schematic diagram of the heat dissipation mechanism of the present application from a bottom up view;

[0024] Figure 3 This is a schematic diagram of the internal planar structure of the dehumidification mechanism of this application;

[0025] Figure 4 This is a schematic diagram of the internal planar structure of the heat dissipation mechanism of this application;

[0026] Figure 5 This is a schematic diagram of the internal plan structure of the control mechanism of this application;

[0027] Figure 6 This is a schematic diagram of the overall internal planar structure of the control device of this application.

[0028] Legend: 1. Control device as a whole; 2. Dehumidification mechanism; 3. Heat dissipation mechanism; 4. Cabinet door; 5. Control mechanism; 11. Connection port; 12. Temperature sensor; 13. Humidity sensor; 14. Insulation monitoring device; 15. Relay protection device; 16. Automatic device; 17. Measuring meter; 21. Metal frame; 22. Dehumidification chamber; 231. First sealing plate; 232. First drive motor; 24. Heater; 25. First blow fan; 26. First exhaust chamber; 271. Second sealing plate; 272. Second drive motor; 28. First dust net; 29. ​​First dust removal assembly; 291. First dust removal brush; 292. First fixed roller; 210. First power assembly; 2101. First power box; 2102. First straight Linear guide rail; 2103, first screw rod; 2104, first screw rod slider; 2105, first power motor; 31, base; 32, heat dissipation chamber; 331, third sealing plate; 332, third drive motor; 34, refrigerator; 35, second supply fan; 36, second exhaust chamber; 371, fourth sealing plate; 372, fourth drive motor; 38, second dustproof net; 391, second dust brush; 392, second fixed roller; second power box; 3102, second linear guide rail; 3103, second screw rod; 3104, second screw rod slider; 3105, second power motor; 51, controller; 52, display screen; 53, operation button; 54, control main board; 55, control module; 56, heat dissipation fan; 57, electric lifting door. DETAILED DESCRIPTION

[0029] To facilitate understanding of the present application, a more comprehensive description of the present application will be given below with reference to the relevant information. Several embodiments of the present application are given. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.

[0030] It should be noted that when an element is referred to as being "fixed on" another element, it may be directly on the other element or there may also be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this article are for illustrative purposes only.

[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by technicians in the technical field to which this application belongs. The terms used in this document and in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application.

[0032] Example 1

[0033] Example 1

[0034] like Figure 1-4 As shown, a power grid dispatching automation control device includes a control device as a whole 1, a dehumidification mechanism 2 is installed on the top of the control device as a whole 1, a heat dissipation mechanism 3 is installed on the bottom of the control device as a whole 1, a cabinet door 4 is connected to the front of the control device as a whole 1 through a hinge, a control mechanism 5 is fixedly connected to the front of the cabinet door 4 near the top, the dehumidification mechanism 2 includes a metal outer frame 21, a dehumidification chamber 22 is opened near the left side of the metal outer frame 21, a first sealing component 23 is installed near the bottom of the dehumidification chamber 22, a heater 24 is fixedly connected above the first sealing component 23 and located in the dehumidification chamber 22, a first supply fan 25 is fixedly connected above the heater 24 and also located in the dehumidification chamber 22, a first exhaust chamber 26 is opened inside the metal outer frame 21 and located on the right side of the dehumidification chamber 22, a second sealing component 27 is fixedly connected inside the first exhaust chamber 26 near the bottom, a first dustproof net 28 is fixedly connected inside the metal outer frame 21 near the top and located at the top of the dehumidification chamber 22 and the first exhaust chamber 26, and the top of the first dustproof net 28 A first dust removal component 29 is installed in the part, and a first power component 210 is installed at the bottom of both sides of the first dust removal component 29 and at both sides of the top of the metal outer frame 21; the heat dissipation mechanism 3 includes a base 31, a heat dissipation cavity 32 is opened inside the base 31 near the right side, a third sealing component 33 is installed inside the heat dissipation cavity 32 near the top, a refrigerator 34 is fixedly connected below the third sealing component 33 and located inside the heat dissipation cavity 32, and a second supply fan 35 is fixedly connected below the refrigerator 34 and also located inside the heat dissipation cavity 32, a second exhaust cavity 36 is opened inside the base 31 near the left side, and a fourth sealing component is fixedly connected inside the second exhaust cavity 36 near the top, a second dustproof net 38 is fixedly connected inside the base 31 near the bottom and located at the bottom of the heat dissipation cavity 32 and the second exhaust cavity 36, a second dust removal component is installed at the bottom of the second dust removal component, and a second power component is installed at the top of both sides of the second dust removal component and at both sides of the bottom of the base 31, and the second power component can effectively provide power for the second dust removal component.

[0035] Example 2

[0036] like Figure 1-6As shown, the first sealing component includes a first sealing plate 231 rotatably connected to the metal outer frame 21, a first drive motor 232 is installed on the front of the first sealing plate 231 near the left side, the first drive motor 232 is electrically connected to the control mechanism, the output end of the first drive motor 232 is fixedly connected to the rotating shaft of the first sealing plate 231, and the first drive motor 232 is fixedly connected to the metal outer frame 21, and the first sealing component can effectively isolate the dehumidification chamber 22 from the inside of the control device as a whole 1. The second sealing component includes a second sealing plate 271 rotatably connected to the metal outer frame 21, a second drive motor 272 is installed on the front of the second sealing plate 271 near the right side, the second drive motor 272 is electrically connected to the control mechanism, the output end of the second drive motor 272 is fixedly connected to the rotating shaft of the second sealing plate 271, and the second drive motor 272 is fixedly connected to the metal outer frame 21, and the second sealing component conveniently isolates the first exhaust chamber 26 from the inside of the control device as a whole 1.

[0037] The first dust removal component 29 includes a first dust removal brush 291 , and a first fixed roller 292 is fixed to the top of the first dust removal brush 291 . The first dust removal component 29 can effectively remove dust on the surface of the first dustproof net 28 when driven by the first power component 210 . Specifically, the first power assembly 210 includes a symmetrically installed first power box 2101, and a first linear guide 2102 is provided on the top of the first power box 2101. The first linear guide 2102 is internally rotatably connected to a first screw rod 2103, and the outer thread of the first screw rod 2103 intersects with a first screw slider 2104. The first screw slider 2104 is slidably connected to the first linear guide 2102, and the top of the first screw slider 2104 is fixedly connected to the first fixed roller 292. A first power motor 2105 is fixedly connected to the back of the first power box 2101. The first power motor 2105 is electrically connected to the control mechanism, and the output end of the first power motor 2105 is fixedly connected to the first screw rod 2103. The first power motor 2105 can effectively drive the first screw rod 2103 to rotate, so that when the first screw rod 2103 rotates, it can drive the first screw slider 2104 to slide inside the first linear guide 2102, thereby driving the first dust removal assembly 29 to remove dust.

[0038] The third sealing assembly includes a third sealing plate 331 rotatably connected to the base 31, a third driving motor 332 is installed on the front of the third sealing plate 331 near the right side, the output end of the third driving motor 332 is fixedly connected to the rotating shaft of the third sealing plate 331, and the third driving motor 332 is fixedly connected to the base 31, which can effectively isolate the heat dissipation cavity 32 from the interior of the control device 1. The fourth sealing assembly includes a fourth sealing plate 371 rotatably connected to the base 31, a fourth driving motor 372 is installed on the front of the fourth sealing plate 371 near the right side, the output end of the fourth driving motor 372 is fixedly connected to the rotating shaft of the fourth sealing plate 371, and the fourth driving motor 372 is fixedly connected to the base 31, which can effectively isolate the second exhaust cavity 36 from the interior of the control device 1, and the third driving motor 332 and the fourth driving motor 372 are both electrically connected to the control mechanism.

[0039] The second dust removal component 39 includes a second dust removal brush 391, and the bottom of the second dust removal brush 391 is fixedly connected to a second fixed roller 392, which can effectively cooperate with the second power component to remove dust. The second power component includes a symmetrically installed second power box 3101, and the bottom of the second power box 3101 is provided with a second linear guide 3102, and the second linear guide 3102 is internally rotatably connected to a second screw rod 3103, and the outer thread of the second screw rod 3103 intersects with a second screw slider 3104, the second screw slider 3104 is slidably connected to the second linear guide 3102, and the bottom of the second screw slider 3104 is fixedly connected to the second fixed roller 392, and the back of the second power box 3101 is fixedly connected to a second power motor 3105, the second power motor 3105 is electrically connected to the control mechanism, and the output end of the second power motor 3105 is fixedly connected to the second screw rod 3103, which can effectively provide power for the second dust removal component.

[0040] The control device 1 is provided with connection ports 11 near the top and bottom. The metal frame 21 and the base 31 are connected to the interior of the control device 1 through the connection ports 11. The control device 1 is provided with a temperature sensor 12 and a humidity sensor 13. The temperature sensor 12 and the humidity sensor 13 are electrically connected to the control mechanism.

[0041] The control mechanism 5 includes a controller 51, a display screen 52 is fixedly connected to the front of the controller 51 near the top, an operation button 53 is fixedly connected to the front of the controller 51 near the bottom, a control mainboard 54 is fixedly connected to the center of the controller 51, a plurality of control modules 55 are fixedly connected to the top of the control mainboard 54, cooling fans 56 are fixedly connected to both sides of the control module 55, and electric lifting doors 57 are fixedly connected to the opposite side of the cooling fan 56 and on both sides of the controller 51, which can effectively play a control role. An insulation monitoring device 14 is arranged inside, and a relay protection device 15 is fixedly connected to the right side of the insulation monitoring device 14, and the temperature sensor 12 and the humidity sensor 13 as well as the insulation monitoring device 14 and the relay protection device 15 are all electrically connected to the control mainboard 54.

[0042] Workflow of the present invention:

[0043] When in use, first, when the internal temperature of the control device 1 as a whole reaches the set value, the temperature sensor 12 detects it and will open the third sealing component, the refrigerator 34, the second supply fan 35 and the second sealing component in a linked manner. When the third sealing component is opened, the heat dissipation cavity 32 will be connected to the inside of the control device 1 as a whole. At the same time, the opening of the second sealing component will connect the first exhaust cavity 26 with the outside. After the connection, the inside of the control device 1 as a whole will be connected to the outside, which is convenient for air circulation and for the rising and discharge of hot air. At the same time, the refrigerator 34 cools the surrounding air, and the second supply fan 35 delivers the cooled air to the inside of the control device 1 as a whole to replace the internal hot air, so as to speed up the heat dissipation efficiency and ensure the safety of internal components. When the temperature sensor 12 detects that the temperature has returned to normal, it can be restored. When the humidity sensor 13 detects that the humidity has reached the set value, it will link the first sealing component and the fourth sealing component as well as the heater 24 and the first supply fan 25 to turn on. After turning on, the control device 1 will be connected to the dehumidification chamber 22 and the second exhaust chamber 36. After the connection, the humid air will sink and be discharged through the second exhaust chamber 36. At the same time, the heater 24 heats the surrounding air. After heating, it is transported to the interior of the control device 1 by the second supply fan 35 to replace the humid air, further speeding up the discharge of the humid air, so as to avoid the humid air from damaging the internal components. Similarly, when the humidity sensor 13 detects that the humidity is normal, it can be restored. The present application can effectively enhance the dehumidification and heat dissipation efficiency of electrical secondary equipment through design, thereby effectively avoiding the influence of moisture and heat on the operation of the device in the electrical secondary equipment.

[0044] It should be noted that all components in this application are universal standard parts or components known to technical personnel in this field, and their structures and principles can be known to technical personnel through technical manuals or through conventional experimental methods. At the same time, the standard parts used in this application can be purchased from the market, and the specific connection methods of each part adopt mature conventional means such as bolts, rivets, welding, etc. in the prior art. Machinery, parts and equipment all adopt conventional models in the prior art. The control method is automatic control through a controller. The control circuit of the controller can be realized through simple programming by technical personnel in this field, which is common knowledge in this field. In addition, this application document is mainly used to protect mechanical devices, so this application document no longer explains the control method and circuit connection in detail, and no specific description is made here.

[0045] Although the present application has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A power grid dispatching automation control device, comprising a control device as a whole, characterized in that: The front of the control device as a whole is connected to a cabinet door through a hinge, the front of the cabinet door is fixedly connected to a control mechanism near the top, and the top of the control device as a whole is installed with a dehumidification mechanism; The dehumidification mechanism includes a metal outer frame, a dehumidification chamber is opened inside the metal outer frame near the left side, a first sealing component is installed inside the dehumidification chamber near the bottom, a heater is fixedly connected above the first sealing component and inside the dehumidification chamber, and a first supply fan is fixedly connected above the heater and inside the dehumidification chamber; a first exhaust chamber is opened inside the metal outer frame and on the right side of the dehumidification chamber, a second sealing component is fixedly connected inside the first exhaust chamber near the bottom, a first dustproof net is fixedly connected inside the metal outer frame near the top and at the top of the dehumidification chamber and the first exhaust chamber, a first dust removal component is installed on the top of the first dustproof net, and a first power component is installed at the bottom of both sides of the first dust removal component and on both sides of the top of the metal outer frame.

2. A power grid dispatching automation control device according to claim 1, characterized in that: It also includes a heat dissipation mechanism, which is installed at the bottom of the control device as a whole. The heat dissipation mechanism includes a base, a heat dissipation cavity is opened inside the base near the right side, a third sealing component is installed inside the heat dissipation cavity near the top, a refrigerator is fixedly connected below the third sealing component and inside the heat dissipation cavity, a second supply fan is fixedly connected below the refrigerator and also inside the heat dissipation cavity, a second exhaust cavity is opened inside the base near the left side, a fourth sealing component is fixedly connected inside the second exhaust cavity near the top, a second dustproof net is fixedly connected inside the base near the bottom and at the bottom of the heat dissipation cavity and the second exhaust cavity, a second dust removal component is installed at the bottom of the second dustproof net, and a second power component is installed at the tops on both sides of the second dust removal component and on both sides of the bottom of the base.

3. A power grid dispatching automation control device according to claim 1, characterized in that: The first sealing assembly includes a first sealing plate rotatably connected to the metal outer frame, a first drive motor is installed on the front side of the first sealing plate near the left side, the first drive motor is electrically connected to the control mechanism, the output end of the first drive motor is fixedly connected to the rotating shaft of the first sealing plate, and the first drive motor is fixedly connected to the metal outer frame.

4. A power grid dispatching automation control device according to claim 1, characterized in that: The second sealing assembly includes a second sealing plate rotatably connected to the metal outer frame, a second drive motor is installed on the front side of the second sealing plate near the right side, the second drive motor is electrically connected to the control mechanism, the output end of the second drive motor is fixedly connected to the rotating shaft of the second sealing plate, and the second drive motor is fixedly connected to the metal outer frame.

5. A power grid dispatching automation control device according to claim 1, characterized in that: The first power assembly includes a symmetrically installed first power box, a first linear guide rail is opened on the top of the first power box, a first screw rod is internally rotatably connected to the first linear guide rail, a first screw rod slider is intersected by the outer thread of the first screw rod, the first screw rod slider is slidably connected to the first linear guide rail, and the top of the first screw rod slider is fixedly connected to the first fixed roller, a first power motor is fixedly connected to the back of the first power box, the first power motor is electrically connected to the control mechanism, and the output end of the first power motor is fixedly connected to the first screw rod.

6. A power grid dispatching automation control device according to claim 2, characterized in that: The third sealing assembly includes a third sealing plate rotatably connected to the base, a third drive motor is installed on the front side of the third sealing plate near the right side, the third drive motor is electrically connected to the control mechanism, the output end of the third drive motor is fixedly connected to the rotating shaft of the third sealing plate, and the third drive motor is fixedly connected to the base.

7. A power grid dispatching automation control device according to claim 2, characterized in that: The fourth sealing assembly includes a fourth sealing plate rotatably connected to the base, a fourth drive motor is installed on the front side of the fourth sealing plate near the right side, the fourth drive motor is electrically connected to the control mechanism, the output end of the fourth drive motor is fixedly connected to the rotating shaft of the fourth sealing plate, and the fourth drive motor is fixedly connected to the base.

8. A power grid dispatching automation control device according to claim 2, characterized in that: According to a power grid dispatching automation control device according to claim 2, it is characterized in that: the first dust removal component includes a first dust removal brush, and the top of the first dust removal brush is fixedly connected to a first fixed roller; the second dust removal component includes a second dust removal brush, and the bottom of the second dust removal brush is fixedly connected to a second fixed roller.

9. A power grid dispatching automation control device according to claim 2, characterized in that: The second power assembly includes a symmetrically installed second power box, a second linear guide rail is provided at the bottom of the second power box, a second screw rod is rotatably connected to the inside of the second linear guide rail, a second screw rod slider is intersected by the outer thread of the second screw rod, the second screw rod slider is slidably connected to the second linear guide rail, and the bottom of the second screw rod slider is fixedly connected to the second fixed roller, a second power motor is fixedly connected to the back of the second power box, the second power motor is electrically connected to the control mechanism, and the output end of the second power motor is fixedly connected to the second screw rod.

10. A power grid dispatching automation control device according to claim 1, characterized in that: The control device 1 is provided with connection ports near the top and bottom, and the metal frame and the base are connected to the interior of the control device through the connection ports. The control device is provided with a temperature sensor and a humidity sensor, and the temperature sensor and the humidity sensor are electrically connected to the control mechanism.