Power grid monitoring device based on WAPI communication
By introducing fans and scrapers into the power grid monitoring device, the heat accumulation and dust accumulation problems of the device during long-term use are solved, and higher stability and maintenance efficiency are achieved.
Patent Information
- Application Number
- CN202411613900.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-06-24
AI Technical Summary
The existing power grid monitoring device will generate more heat during long-term use, resulting in unstability and easy accumulation of dust inside the equipment, requiring frequent maintenance.
A power grid monitoring device based on WAPI communication is designed, using a combination of fan and filter network to achieve a larger range of heat dissipation through the rotation of the fan, and the filter network is cleaned through the sliding of the scraper to ensure the stable operation of the equipment.
Through improved heat dissipation and cleaning mechanisms, the stability and practicality of the device are improved, maintenance frequency is reduced, and the service life of the device is extended.
Smart Images

Figure CN120201681A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power grid monitoring devices, and particularly to a power grid monitoring device based on WAPI communication. Background Art
[0002] WAPI is a wireless local area network security protocol, mainly used for the wireless network security standard in China. Its design purpose is to provide stronger security than WEP and WPA, especially in authentication and encryption. WAPI adopts an authentication mechanism based on public key infrastructure (PKI) to ensure the authentication of connected devices. WAPI uses symmetric and asymmetric encryption algorithms to protect the security of data transmission. WAPI is designed to have the ability to resist various network attacks, such as replay attacks, eavesdropping, etc. With the advancement of the company's digital transformation and the construction of digital power grids and smart power grids, new intelligent services represented by robot patrol inspection, intelligent safety supervision, and mobile office have emerged in substations. The existing wired communication methods in substations cannot meet the mobility requirements.
[0003] However, when using WAPI wireless local area networks, it is usually necessary to perform power system monitoring and data transmission on wireless network technologies. Such devices are usually used to monitor the status, operating parameters, and fault information of the power grid in real time to improve the efficiency and security of power grid management. Usually, according to the power grid requirements, the detection devices need to be installed in various positions for monitoring. However, this device is usually used continuously throughout the day, resulting in a large amount of heat generation during use. However, many existing ones adopt a passive heat dissipation method, resulting in instability during use and easy dust accumulation inside the device, and it needs to be maintained regularly. Therefore, it is necessary to solve the above problems. Summary of the Invention
[0004] Based on the technical problems existing in the background art, the present invention proposes a power grid monitoring device based on WAPI communication.
[0005] The power grid monitoring device based on WAPI communication proposed by the present invention includes a box body, a fan and a cable. A detection controller is installed inside the box body. The detection controller is horizontally slidably connected inside the box body. A sliding mechanism for sliding the detection controller is provided inside the box body. A bottom plate is horizontally and fixedly connected to the inner bottom of the box body. Two filter nets are installed on the surface of the bottom plate. The fan is rotatably connected inside the box body. The fan is arranged between the bottom plate and the detection controller. A rotating mechanism for rotating the two fans is provided inside the box body. A cleaning mechanism for the other two filter nets is provided inside the box body. There are multiple cables. All the multiple cables are fixedly connected inside the detection controller and are electrically connected to the inside of the detection controller. A storage mechanism for the cables is provided on the surface of the detection controller. By rotating the fan, when blowing air to dissipate heat inside the box body, the fan will rotate back and forth, so that the blowing range can be larger. At the same time, it will also improve the heat dissipation effect inside the box body. At the same time, it will also drive two scraping plates to slide, so as to facilitate the cleaning of the surfaces of the two filter nets.
[0006] Preferably, the sliding mechanism includes two first sliding strips. The two first sliding strips are respectively horizontally and fixedly connected to the symmetric two sides of the surface of the detection controller. Two second sliding strips are horizontally and fixedly connected to the bottom of the detection controller. Both opposite ends of the inner bottom of the box body are horizontally and fixedly connected with a first sliding track. The two first sliding strips are respectively slidably connected inside the two first sliding tracks. Two second sliding tracks are horizontally and fixedly connected inside the box body. The two second sliding tracks are both arranged at the bottom of the detection controller. The two second sliding strips are respectively slidably connected inside the two second sliding tracks, which are used to limit the horizontal sliding of the detection controller, so as to facilitate the maintenance of the detection controller.
[0007] Further, the rotating mechanism includes a first gear. A fixing ring is sleeved on the surface of the fan. Two fixing shafts are horizontally and fixedly connected to the arc surface of the fixing ring. The two fixing shafts are respectively rotatably connected to the opposite sides inside the box body. An arc-shaped strip is arranged at the bottom of the fan. Both ends of the top of the arc-shaped strip are fixedly connected to the surface of the fixing ring. A plurality of tooth blocks are arranged on the surface of the arc-shaped strip. A fixing seat is fixedly connected inside the bottom plate. The first gear is rotatably connected inside the fixing seat. The first gear meshes with the plurality of tooth blocks. Two side plates are vertically and fixedly connected to the bottom of the bottom plate. Clamping strips are horizontally and fixedly connected to the opposite sides of the two side plates. A circular frame is horizontally slidably connected to the bottom of the bottom plate. Slots are horizontally formed on both symmetric sides of the surface of the circular frame. The two clamping strips are respectively arranged inside the two slots. A second rack is horizontally and fixedly connected to the top of the circular frame. The second rack meshes with the first gear. First racks are horizontally and fixedly connected to both the upper and lower ends inside the circular frame. A missing gear is rotatably connected to the center inside the circular frame. The missing gear cooperates with the two first racks. A first rotating shaft is sleeved at the center inside the missing gear. Both ends of the first rotating shaft are respectively rotatably sleeved inside the two side plates. A motor is installed on the surface of one of the side plates. The output end of the motor is fixedly connected to one end of the first rotating shaft and is used to rotate the missing gear. Under the limitation of the two first racks, the circular frame will slide horizontally back and forth. Under the connection of the first gear, the arc-shaped strip and the fixing ring will rotate back and forth, thereby rotating the fan as well.
[0008] Preferably, the cleaning mechanism includes scraping plates. There are two scraping plates. The two scraping plates are both slidably connected to the bottom of the bottom plate. The two bottom plates are respectively arranged on the surfaces of the two filter meshes. Fixing rods are fixedly connected to the bottoms of the two scraping plates. The two fixing rods are respectively fixedly connected to both ends of the top of the circular frame and are used to slide the two scraping plates back and forth, thereby scraping the surfaces of the two filter meshes.
[0009] Further, the storage mechanism includes a round roller. A plurality of placement grooves are vertically formed on the surface of the detection controller. The plurality of cables are respectively arranged inside the plurality of placement grooves. The plurality of cables all penetrate through the surface of the box body. A plurality of round rollers are provided. The plurality of round rollers are all vertically slidably connected to the surface of the detection controller. The plurality of round rollers are respectively arranged on the surfaces of the plurality of placement grooves. Two second vertical grooves are vertically formed on one side of the surface of the detection controller. Two first vertical grooves are vertically formed at both ends of the surface of the detection controller. The two first vertical grooves are respectively communicated with the two second vertical grooves. A third rack is vertically slidably connected inside each of the two first vertical grooves. A slider is vertically slidably connected inside each of the two second vertical grooves. The two sliders are respectively fixedly connected to the tops of the two third racks. A second rotating shaft is rotatably connected between the two sliders. The two ends of the second rotating shaft are respectively rotatably sleeved inside the two sliders. The plurality of round rollers are respectively rotatably sleeved on the surface of the second rotating shaft. Two connecting blocks are fixedly connected to the bottom of the detection controller. A second gear is rotatably connected to the surface of each of the two connecting blocks. The two second gears are respectively meshed with the two third racks. Fourth racks are horizontally fixedly connected to the opposite ends inside the box body. The two second gears are respectively meshed with the two fourth racks, which are used to slide the two scrapers back and forth, so as to scrape the surfaces of the two filter meshes.
[0010] Preferably, a plurality of heat dissipation holes are provided at both the upper and lower ends of the detection controller. A plurality of exhaust holes are provided at the inner top of the box body. A top plate is fixedly connected to the top of the box body. Both ends of the top plate are communicated with the plurality of exhaust holes. Two door panels are installed on one side of the surface of the box body. Handles are fixedly connected to the surfaces of the two door panels, which are used to slide the second rotating shaft and the plurality of round rollers up and down, so that the plurality of cables can be restricted inside the plurality of placement grooves.
[0011] In the present invention, during use, through the setting of the fan, the inside of the box body can be ventilated. At the same time, through the setting of the two filter meshes, the dust in the air can be filtered, so as to provide a better protection effect for the inside of the box body.
[0012] When dissipating heat inside the device, while swinging the fan, the blowing range inside the box body can be made larger, so as to improve the heat dissipation effect. At the same time, it will also drive the two scrapers to slide horizontally, so as to slide the bottom of the two filter meshes, so as to remove the dust adsorbed on the surface of the filter meshes, thereby improving the practicability of the device.
[0013] When maintenance of the device is required, by sliding the detection controller outwards, it will also drive the plurality of round rollers to slide downwards, so that the plurality of cables can be stretched. When sliding the detection controller into the box body, it will drive the plurality of round rollers to slide upwards, so that the stretched plurality of cables are stored inside each placement groove, thereby improving the use effect. Description of the Drawings
[0014] Figure 1 The front view of the power grid monitoring device based on WAPI communication proposed by the present invention;
[0015] Figure 2 The schematic diagram of the surface structure of the power grid monitoring device based on WAPI communication proposed by the present invention;
[0016] Figure 3 The cross-sectional view of the internal structure of the power grid monitoring device based on WAPI communication proposed by the present invention;
[0017] Figure 4 is Figure 3 The enlarged view of part A of;
[0018] Figure 5 The schematic diagram of the rotating mechanism of the power grid monitoring device based on WAPI communication proposed by the present invention;
[0019] Figure 6 The cross-sectional view of the internal structure of the power grid monitoring device based on WAPI communication proposed by the present invention;
[0020] Figure 7 The schematic diagram of the storage mechanism of the power grid monitoring device based on WAPI communication proposed by the present invention.
[0021] In the figure: 1. Box body; 11. Top plate; 12. First slideway; 13. Second slideway; 14. Bottom plate; 15. Fixed seat; 16. Filter screen; 17. Side plate; 18. Card strip; 19. Exhaust hole; 110. Fourth rack; 2. Door panel; 21. Handle; 3. Detection controller; 31. Heat dissipation hole; 32. First vertical groove; 33. Second vertical groove; 34. Placing groove; 35. First slide bar; 36. Second slide bar; 37. Connecting block; 4. Fan; 41. Fixed ring; 42. Fixed shaft; 43. Arc bar; 44. First gear; 5. Ring frame; 51. Card slot; 52. First rack; 53. Second rack; 54. Scraper; 55. Fixed rod; 6. Defective gear; 61. First rotating shaft; 62. Motor; 7. Round roller; 71. Second rotating shaft; 72. Slide block; 73. Third rack; 74. Second gear; 8. Cable. Detailed implementation manners
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.
[0023] Refer to Figures 1-7, A power grid monitoring device based on WAPI communication, including a box body 1, a fan 4 and a cable 8. Inside the box body 1, a detection controller 3 is installed. The detection controller 3 is horizontally slidably connected inside the box body 1. A sliding mechanism for sliding the detection controller 3 is provided inside the box body 1. The bottom of the box body 1 is horizontally fixedly connected with a bottom plate 14. Two filter nets 16 are installed on the surface of the bottom plate 14. The fan 4 is rotatably connected inside the box body 1. The fan 4 is arranged between the bottom plate 14 and the detection controller 3. A rotating mechanism for rotating the two fans 4 is provided inside the box body 1. A cleaning mechanism for the other two filter nets 16 is provided inside the box body 1. There are multiple cables 8. The multiple cables 8 are all fixedly connected inside the detection controller 3 and are all electrically connected to the inside of the detection controller 3. A receiving mechanism for the cables 8 is provided on the surface of the detection controller 3. By rotating the fan 4, when blowing air for heat dissipation inside the box body 1, the fan 4 will rotate back and forth, so that the blowing range can be larger. At the same time, it will also improve the heat dissipation effect inside the box body 1. At the same time, it will also drive two scraping plates 54 to slide, so as to facilitate the cleaning of the surfaces of the two filter nets 16.
[0024] Refer to Figure 2 and Figure 7 , In a preferred embodiment, the sliding mechanism includes two first sliding strips 35. The two first sliding strips 35 are respectively horizontally fixedly connected to the symmetric two sides of the surface of the detection controller 3. Two second sliding strips 36 are horizontally fixedly connected to the bottom of the detection controller 3. Both ends of the opposite sides of the bottom of the box body 1 are horizontally fixedly connected with first sliding channels 12. The two first sliding strips 35 are respectively slidably connected inside the two first sliding channels 12. Two second sliding channels 13 are horizontally fixedly connected inside the box body 1. The two second sliding channels 13 are both arranged at the bottom of the detection controller 3. The two second sliding strips 36 are respectively slidably connected inside the two second sliding channels 13, which are used to limit the horizontal sliding of the detection controller 3, so as to facilitate the maintenance of the detection controller 3.
[0025] Refer to Figures 2-5, in a preferred embodiment, the rotating mechanism includes a first gear 44. A fixing ring 41 is sleeved on the surface of the fan 4. Two fixing shafts 42 are horizontally and fixedly connected to the arc surface of the fixing ring 41. The two fixing shafts 42 are respectively rotatably connected to the opposite sides inside the box body 1. An arc-shaped strip 43 is arranged at the bottom of the fan 4. Both ends of the top of the arc-shaped strip 43 are fixedly connected to the surface of the fixing ring 41. A plurality of tooth blocks are arranged on the surface of the arc-shaped strip 43. A fixing seat 15 is fixedly connected inside the bottom plate 14. The first gear 44 is rotatably connected inside the fixing seat 15. The first gear 44 meshes with the plurality of tooth blocks. Two side plates 17 are vertically and fixedly connected to the bottom of the bottom plate 14. Clamping strips 18 are horizontally and fixedly connected to the opposite sides of the two side plates 17. A circular frame 5 is horizontally slidably connected to the bottom of the bottom plate 14. Card slots 51 are horizontally opened on the symmetric two sides of the surface of the circular frame 5. The two clamping strips 18 are respectively arranged inside the two card slots 51. A second rack 53 is horizontally and fixedly connected to the top of the circular frame 5. The second rack 53 meshes with the first gear 44. First racks 52 are horizontally and fixedly connected to the upper and lower ends inside the circular frame 5. An eccentric gear 6 is rotatably connected to the center inside the circular frame 5. The eccentric gear 6 cooperates with the two first racks 52. A first rotating shaft 61 is sleeved at the center inside the eccentric gear 6. Both ends of the first rotating shaft 61 are respectively rotatably sleeved inside the two side plates 17. A motor 62 is installed on the surface of one of the side plates 17. The output end of the motor 62 is fixedly connected to one end of the first rotating shaft 61 for rotating the eccentric gear 6. Under the restriction of the two first racks 52, the circular frame 5 will slide horizontally back and forth. Under the connection of the first gear 44, the arc-shaped strip 43 and the fixing ring 41 will rotate back and forth, thereby also rotating the fan 4.
[0026] Referring to Figure 3 and Figure 5 , in a preferred embodiment, the cleaning mechanism includes scraping plates 54. There are two scraping plates 54. The two scraping plates 54 are both slidably connected to the bottom of the bottom plate 14. The two bottom plates 14 are respectively arranged on the surfaces of the two filter meshes 16. Fixing rods 55 are fixedly connected to the bottoms of the two scraping plates 54. The two fixing rods 55 are respectively fixedly connected to the two ends of the top of the circular frame 5 for sliding the two scraping plates 54 back and forth, thereby scraping the surfaces of the two filter meshes 16.
[0027] Referring to Figure 6 and Figure 7, in a preferred embodiment, the storage mechanism includes a circular roller 7. A plurality of placement grooves 34 are vertically formed on the surface of the detection controller 3. A plurality of cables 8 are respectively arranged inside the plurality of placement grooves 34. The plurality of cables 8 all penetrate through the surface of the box body 1. There are a plurality of circular rollers 7, and the plurality of circular rollers 7 are all vertically slidably connected to the surface of the detection controller 3. The plurality of circular rollers 7 are respectively arranged on the surfaces of the plurality of placement grooves 34. Two second vertical grooves 33 are vertically formed on one side of the surface of the detection controller 3. Two first vertical grooves 32 are vertically formed at both ends of the surface of the detection controller 3. The two first vertical grooves 32 are respectively communicated with the two second vertical grooves 33. Third racks 73 are vertically slidably connected inside the two first vertical grooves 32. Sliders 72 are vertically slidably connected inside the two second vertical grooves 33. The two sliders 72 are respectively fixedly connected to the tops of the two third racks 73. A second rotating shaft 71 is rotatably connected between the two sliders 72. The two ends of the second rotating shaft 71 are respectively rotatably sleeved inside the two sliders 72. The plurality of circular rollers 7 are respectively rotatably sleeved on the surface of the second rotating shaft 71. Two connecting blocks 37 are fixedly connected to the bottom of the detection controller 3. Second gears 74 are rotatably connected to the surfaces of the two connecting blocks 37. The two second gears 74 are respectively engaged with the two third racks 73. Fourth racks 110 are horizontally fixedly connected to the opposite ends inside the box body 1. The two second gears 74 are respectively engaged with the two fourth racks 110, which are used to slide the two scraping plates 54 back and forth, so as to scrape the surfaces of the two filter meshes 16.
[0028] Referring to Figure 1 and Figure 6 , in a preferred embodiment, a plurality of heat dissipation holes 31 are provided at both the upper and lower ends of the detection controller 3. A plurality of exhaust holes 19 are provided at the inner top of the box body 1. A top plate 11 is fixedly connected to the top of the box body 1. Both ends of the top plate 11 are communicated with the plurality of exhaust holes 19. Two door panels 2 are installed on one side of the surface of the box body 1. Handles 21 are fixedly connected to the surfaces of the two door panels 2, which are used to slide the second rotating shaft 71 and the plurality of circular rollers 7 up and down, so that the plurality of cables 8 can be restricted inside the plurality of placement grooves 34, and are used to slide the second rotating shaft 71 and the plurality of circular rollers 7 up and down, so that the plurality of cables 8 can be restricted inside the plurality of placement grooves 34.
[0029] In the present invention, during actual use, by rotating the fan 4, when blowing air for heat dissipation inside the box body 1, the fan 4 will rotate back and forth, so that the blowing range can be larger. At the same time, due to the heat dissipation effect inside the box body 1, it will also drive the two scraping plates 54 to slide, thereby facilitating the cleaning of the surfaces of the two filter nets 16. When the device is in use, more heat will be generated inside the device. At this time, the temperature sensor installed inside the device monitors the temperature inside the box body 1. When the preset temperature is reached, it will drive the fan 4 to rotate, so that the fan 4 takes in external air through the bottom of the box body 1 and enters the inside of the box body 1. At the same time, the air will pass through the surfaces of the two filter nets 16, thereby dissipating heat inside the box body 1, and then discharging through the multiple exhaust holes 19 at the top of the box body 1. The top plate 11 provided at the top shields the multiple exhaust holes 19 at the top of the box body 1 from rain. At the same time, it is necessary to drive the motor 62 to drive the first rotating shaft 61 and the missing gear 6. With the arrangement of the two first racks 52 inside the annular frame 5, the annular frame 5 will slide back and forth. Through the connection of the second rack 53, the first gear 44 will rotate forward and backward. Also, with the arrangement of the arc-shaped strip 43 and the teeth on its surface, the fixed ring 41 and the fan 4 will swing back and forth, thereby increasing the area of blowing air inside the box body 1, and thus improving the heat dissipation effect of the device. When the annular frame 5 slides horizontally, it will also drive the two scraping plates 54 to slide horizontally, thereby cleaning the bottoms of the two filter nets 16, so as to prevent the two filter nets 16 from being blocked during use. When maintenance of the device is required, the two door panels 2 can be opened, and then the detection controller 3 is slid outwards. At this time, with the cooperation of the two fourth racks 110, the two second gears 74 will rotate, driving the two third racks 73 to slide downwards. At the same time, the two sliders 72 and the second rotating shaft 71 will also slide downwards together. Under the action of the multiple rollers 7, the multiple cables 8 will not be blocked. When the detection controller 3 is slid into the box body 1, with the arrangement of the multiple rollers 7, the multiple cables 8 will be restricted inside each placement groove 34, thus preventing the cables 8 from being wound or folded inside the box body 1, and further improving the use effect of the device.
[0030] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A power grid monitoring device based on WAPI communication, comprising a box (1), a fan (4) and a cable (8), characterized in that: A detection controller (3) is installed inside the box (1), and the detection controller (3) is horizontally slidably connected to the inside of the box (1). A sliding mechanism for sliding the detection controller (3) is provided inside the box (1). A bottom plate (14) is horizontally fixedly connected to the bottom of the box (1), and two filter screens (16) are installed on the surface of the bottom plate (14); The fan (4) is rotatably connected to the inside of the box (1); the fan (4) is arranged between the bottom plate (14) and the detection controller (3); a rotating mechanism for rotating the two fans (4) is arranged inside the box (1); and a cleaning mechanism for the other two filter screens (16) is arranged inside the box (1); There are a plurality of cables (8), and the plurality of cables (8) are all fixedly connected to the inside of the detection controller (3). The plurality of cables (8) are all electrically connected to the inside of the detection controller (3), and a storage mechanism for the cables (8) is provided on the surface of the detection controller (3).
2. The power grid monitoring device based on WAPI communication according to claim 1, characterized in that: The sliding mechanism comprises a first slide bar (35), wherein two first slide bars (35) are provided, and the two first slide bars (35) are respectively fixedly connected horizontally to two symmetrical sides of the surface of the detection controller (3), and the bottom of the detection controller (3) is fixedly connected horizontally to two second slide bars (36), and the opposite ends of the bottom of the box body (1) are both fixedly connected horizontally to a first slideway (12), and the two first slide bars (35) are respectively slidably connected to the inside of the two first slideways (12), and the inside of the box body (1) is fixedly connected horizontally to two second slideways (13), and the two second slideways (13) are both arranged at the bottom of the detection controller (3), and the two second slide bars (36) are respectively slidably connected to the inside of the two second slideways (13).
3. The power grid monitoring device based on WAPI communication according to claim 1, characterized in that: The rotating mechanism comprises a first gear (44); a fixing ring (41) is sleeved on the surface of the fan (4); two fixing shafts (42) are horizontally fixedly connected to the arc surface of the fixing ring (41); the two fixing shafts (42) are rotatably connected to opposite sides of the inside of the box (1); an arc strip (43) is provided at the bottom of the fan (4); both ends of the top of the arc strip (43) are fixedly connected to the surface of the fixing ring (41); a plurality of tooth blocks are provided on the surface of the arc strip (43); a fixing seat (15) is fixedly connected to the inside of the bottom plate (14); the first gear (44) is rotatably connected to the inside of the fixing seat (15); and the first gear (44) is meshed with the plurality of tooth blocks.
4. The power grid monitoring device based on WAPI communication according to claim 3 is characterized in that: The bottom of the bottom plate (14) is vertically fixedly connected to two side plates (17), and the two opposite sides of the two side plates (17) are horizontally fixedly connected to clamping strips (18). The bottom of the bottom plate (14) is horizontally slidably connected to an annular frame (5), and the surface of the annular frame (5) is horizontally provided with clamping grooves (51) on both sides symmetrically, and the two clamping strips (18) are respectively arranged in the two clamping grooves (51). The top of the annular frame (5) is horizontally fixedly connected to a second rack (53), and the second rack (53) is meshed with the first gear (44).
5. The power grid monitoring device based on WAPI communication according to claim 4, characterized in that: The upper and lower ends of the annular frame (5) are horizontally fixedly connected with first racks (52); the center of the annular frame (5) is rotatably connected with a missing gear (6); the missing gear (6) cooperates with the two first racks (52); the center of the missing gear (6) is sleeved with a first rotating shaft (61); the two ends of the first rotating shaft (61) are respectively rotatably sleeved inside two side plates (17); a motor (62) is installed on the surface of one of the side plates (17); the output end of the motor (62) is fixedly connected to one end of the first rotating shaft (61).
6. The power grid monitoring device based on WAPI communication according to claim 5, characterized in that: The cleaning mechanism comprises a scraper (54), wherein two scrapers (54) are provided, and the two scrapers (54) are both slidably connected to the bottom of a base plate (14), and the two base plates (14) are respectively arranged on the surfaces of two filter screens (16), and the bottoms of the two scrapers (54) are both fixedly connected to fixing rods (55), and the two fixing rods (55) are respectively fixedly connected to the two ends of the top of the annular frame (5).
7. The power grid monitoring device based on WAPI communication according to claim 1, characterized in that: The storage mechanism comprises a round roller (7), a plurality of placement grooves (34) are vertically opened on the surface of the detection controller (3), a plurality of the cables (8) are respectively arranged inside the plurality of placement grooves (34), and a plurality of the cables (8) are all inserted into the surface of the box body (1), a plurality of the round rollers (7) are provided, and a plurality of the round rollers (7) are vertically slidably connected to the surface of the detection controller (3), and a plurality of the round rollers (7) are respectively arranged on the surfaces of the plurality of placement grooves (34).
8. The power grid monitoring device based on WAPI communication according to claim 7, characterized in that: Two second vertical grooves (33) are vertically provided on one side of the surface of the detection controller (3), and two first vertical grooves (32) are vertically provided on both ends of the surface of the detection controller (3). The two first vertical grooves (32) are respectively connected to the two second vertical grooves (33), and the two first vertical grooves (32) are vertically slidably connected to the inside of the third racks (73). The two second vertical grooves (33) are vertically slidably connected to the inside of the sliders (72), and the two sliders (72) are respectively fixedly connected to the top of the two third racks (73). A second rotating shaft (71) is rotatably connected between the two sliders (72), and the two ends of the second rotating shaft (71) are respectively rotatably sleeved inside the two sliders (72), and the plurality of round rollers (7) are respectively rotatably sleeved on the surface of the second rotating shaft (71).
9. The power grid monitoring device based on WAPI communication according to claim 8, characterized in that: The detection controller (3) is fixedly connected to two connection blocks (37) at the bottom, and the surfaces of the two connection blocks (37) are rotatably connected to second gears (74), and the two second gears (74) are respectively meshed with two third racks (73). The box body (1) has fourth racks (110) fixedly connected horizontally at both opposite ends thereof, and the two second gears (74) are respectively meshed with the two fourth racks (110).
10. The power grid monitoring device based on WAPI communication according to claim 1, characterized in that: The detection controller (3) is provided with a plurality of heat dissipation holes (31) at both upper and lower ends; a plurality of exhaust holes (19) are provided at the top of the box body (1); a top plate (11) is fixedly connected to the top of the box body (1); both ends of the top plate (11) are connected to the plurality of exhaust holes (19); two door panels (2) are installed on one side of the surface of the box body (1); handles (21) are fixedly connected to the surfaces of the two door panels (2).