Adjustable power transmission line video image on-line monitoring device
By designing an adjustable online video image monitoring device for power transmission lines, the combination of water spraying, extrusion of moisture and dust cleaning is solved, and the clarity of the video image and the normal use of the monitor are ensured.
Patent Information
- Application Number
- CN202510357457.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing online monitoring equipment for transmission line video images is prone to dust adhesion and damage to cleaning structure caused by rainy weather, affecting the normal use of the monitor.
An adjustable transmission line video image online monitoring device is designed, including a water storage tank, a protective box, ashproof component, a water squeezing component and ash cleaning component. Through multiple combination measures of water spraying, extrusion of moisture and cleaning of dust, the problems of dust adhesion, moisture accumulation and cleaning structure damage are solved.
Effectively prevent dust adhesion and moisture accumulation, protect the monitor lens, ensure the clarity of the video image and the normal use of the monitor.
Smart Images

Figure CN120054924A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of transmission line monitoring, and specifically relates to an adjustable on-line monitoring device for transmission line video images. Background Technique
[0002] The on-line monitoring device for transmission line video images is a system for real-time monitoring of the operating status of transmission lines. With the rapid development of the power system, higher requirements are put forward for the safe and stable operation of transmission lines. This monitoring device mainly collects data through cameras and other sensors installed on the transmission lines, and uses wireless communication technology to transmit the data to a remote monitoring center, thereby preventing people from approaching the transmission lines and being able to quickly locate the damaged positions of the transmission lines.
[0003] Publication No. CN118381879A discloses a monitoring device for transmission line video images, including: a monitor, a lighting device, a control box, and is characterized in that it further includes: the monitor and the lighting device are arranged on the left and right sides of the control box; a fixing plate is fixedly connected between the front and rear sides of the inner wall of the control box; a driving cylinder is fixedly connected to the lower surface of the fixing plate; a slide rail is fixedly connected to the output end of the driving cylinder; a protection component is arranged inside the control box.
[0004] Although the above application and the prior art can prevent rainwater and other impurities from adhering to the output ends of the monitor and the lighting device, when the above application and the prior art are actually used, since the detector is in the external environment, when the device encounters windy and rainy weather, external dust will gradually adhere to the surface of the monitor, resulting in a blurred image captured by the monitor. Moreover, when cleaning the dust on the surface of the monitor, the rainwater on the detector surface will adhere to the surface or inside of the cleaning structure. Since the rainwater contains acid, it will cause damage to the cleaning structure, and the dust after cleaning will accumulate on the surface of the cleaning structure. After long-term use, the lens of the monitor will be scratched by the dust, thus affecting the normal use of the monitor. Therefore, we propose an adjustable on-line monitoring device for transmission line video images. Summary of the Invention
[0005] (1) Technical Problems to be Solved
[0006] In view of the deficiencies of the prior art, the present invention provides an adjustable on-line monitoring device for video images of transmission lines, which has the advantages of dust treatment, prevention of water accumulation and prevention of dust adhesion, and solves the problems in the above application and the prior art during actual use. Since the detector is in the external environment, when the device encounters windy and rainy weather, external dust will gradually adhere to the surface of the monitor, resulting in a blurred image captured by the monitor. Moreover, when cleaning the dust on the surface of the monitor, the rainwater on the detector surface will adhere to the surface or inside of the cleaning structure. Since the rainwater contains acid, it will cause damage to the cleaning structure, and the cleaned dust will accumulate on the surface of the cleaning structure. After long-term use, the lens of the monitor will be scratched by dust, thus affecting the normal use of the monitor.
[0007] (2) Technical solution
[0008] To achieve the above purposes of dust treatment, prevention of water accumulation and prevention of dust adhesion, the present invention provides the following technical solution: an adjustable on-line monitoring device for video images of transmission lines, including: a water storage tank and a camera probe arranged on the top of the water storage tank,
[0009] A protective box, fixedly connected to the top of the water storage tank. An adjustment component is arranged inside the protective box. The adjustment component includes a first motor fixedly connected to the inner wall of the protective box. The output end of the first motor is fixedly connected to a driving rod. An installation platform is fixedly connected to the surface of the driving rod. The top of the installation platform is fixedly connected to the bottom of the camera probe. An observation window is arranged on the surface of the protective box;
[0010] A dust-proof component, arranged on the surface of the protective box, used for treating the dust on the surface of the observation window to prevent dust from blocking the observation window and thus affecting the monitoring of the camera probe;
[0011] A water squeezing component, arranged on the surface of the dust-proof component, used for squeezing out the water inside the dust-proof component to prevent water accumulation;
[0012] A dust cleaning component, arranged on the surface of the dust-proof component, used for treating the dust accumulated on the surface of the dust-proof component to prevent the accumulated dust from affecting subsequent use.
[0013] Further, a water inlet is fixedly communicated with the top of the water storage tank. Two water guide plates are fixedly connected to the top of the protective box. A plurality of solar panels and a plurality of inclined blocks are fixedly connected inside each of the two water guide plates. A water guide pipe is fixedly communicated with one side of each of the two water guide plates.
[0014] Further, a suction pump is arranged inside the water storage tank. One end of the suction pump is fixedly communicated with a water delivery pipe. The end of the water delivery pipe away from the suction pump is fixedly communicated with a water spraying pipe.
[0015] Further, a driving shell and an auxiliary shell are fixedly connected to the top of the water storage tank. The dust prevention component includes a second motor fixedly connected inside the driving shell and an auxiliary rod rotatably connected inside the auxiliary shell. The output end of the second motor is fixedly connected to a driving screw rod. A driving screw block is threadedly connected to the surface of the driving screw rod. The driving screw block is slidably connected inside the driving shell. One end of the driving screw block is rotatably connected to a rotating rod. A fixed disk and a cleaning sponge are fixedly connected to the surface of the rotating rod. One end of the rotating rod is rotatably connected to an auxiliary block. The auxiliary block is slidably connected to the surface of the auxiliary rod.
[0016] Further, the dust prevention component further includes a driving toothed plate fixedly connected to the surface of the protection box. A driving gear is fixedly connected to the surface of the rotating rod. The driving gear and the driving toothed plate are in meshing transmission.
[0017] Further, the water squeezing component includes a driving cylinder fixedly connected inside the auxiliary block. The output end of the driving cylinder is differentially connected to a telescopic rod. One end of the telescopic rod away from the driving cylinder is fixedly connected to a U-shaped frame. One end of the U-shaped frame away from the telescopic rod is fixedly connected to an extrusion disk. A magnetic block is fixedly connected inside one end of the extrusion disk away from the U-shaped frame. The cleaning sponge is arranged between the fixed disk and the extrusion disk.
[0018] Further, the inside of the rotating rod is hollow. A moving groove for the movement of the U-shaped frame is provided on the surface of the rotating rod. The telescopic rod and the U-shaped frame are slidably connected inside the rotating rod.
[0019] Further, the dust cleaning component includes an auxiliary disk fixedly connected to the surface of the rotating rod. One end of the auxiliary disk is fixedly connected to two fixed cylinders. Springs are fixedly connected inside both of the two fixed cylinders. Extension cylinders are slidably connected inside both of the two fixed cylinders. One end of the extension cylinder is fixedly connected to one end of the spring.
[0020] Further, a cleaning ring is fixedly connected to the end of the extension cylinder away from the spring. The cleaning ring is arranged on the surface of the cleaning sponge. A number of bristles are arranged inside the cleaning ring. An iron block is fixedly connected inside one end of the cleaning ring away from the extension cylinder.
[0021] Further, a storage battery is arranged inside the protection box. The storage battery and the solar panel are connected by a wire. A locator is arranged inside the protection box. The locator is electrically connected to the camera probe.
[0022] (III) Beneficial Effects
[0023] Compared with the prior art, the present invention provides an adjustable on-line monitoring device for video images of transmission lines, having the following beneficial effects:
[0024] 1. For this adjustable on-line monitoring device for video images of transmission lines, through the combined use of a water spray pipe and an anti-dust component, a suction pump conveys the water in the water storage tank to the water spray pipe through a water delivery pipe. The water sprayed from the water spray pipe sprays water on the observation window, enabling the dust to be fully mixed with the water. Then, a second motor drives the driving screw to rotate, and the driving screw drives the rotating rod to move through a driving screw block. During the movement of the rotating rod, the driving tooth plate drives the driving gear to rotate, and the driving gear drives the cleaning sponge to rotate through the rotating rod. Thus, during the rotation of the cleaning sponge, the dust and water are cleaned, and the dust on the surface of the observation window is thus processed, enabling the camera probe to monitor the external transmission lines through the observation window, thereby achieving the effect of dust treatment.
[0025] 2. For this adjustable on-line monitoring device for video images of transmission lines, through the use of a water squeezing component, when the cleaning sponge moves to the bottom and is not in contact with the observation window, the driving cylinder is started. The driving cylinder drives the U-shaped frame to move through a telescopic rod, causing the U-shaped frame to drive the extrusion disc to slide on the surface of the rotating rod. Thus, the extrusion disc squeezes the cleaning sponge, and the water absorbed inside the cleaning sponge is extruded, preventing the water from accumulating inside the cleaning sponge and causing damage to it, thereby achieving the effect of preventing water accumulation.
[0026] 3. For this adjustable on-line monitoring device for video images of transmission lines, through the combined use of the water squeezing component and the dust cleaning component, when the U-shaped frame pushes the extrusion disc to continuously slide on the surface of the rotating rod, the magnetic block inside the extrusion disc adsorbs the iron block inside the cleaning ring. Then, the driving cylinder drives the telescopic rod to retract, causing the extrusion disc to drive the cleaning ring to move through the magnetic block and the iron block. During the movement of the cleaning ring, the cleaning ring stretches the spring through the extension tube, causing the spring to deform. When the U-shaped frame returns to its initial state, the magnetic block and the iron block are separated from each other, and then the spring returns to its initial state, driving the cleaning ring to start moving. The bristles inside the cleaning ring brush off the dust on the surface of the cleaning sponge, thereby preventing the dust from adhering to the surface of the cleaning sponge, and achieving the effect of preventing dust adhesion.
[0027] Other features and advantages of the present invention will be described in the following specification, and some of them will become obvious from the specification or be understood by implementing the present invention. The objectives and other advantages of the present invention can be achieved and obtained through the structures specifically pointed out in the written specification and the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 is a three-dimensional structural schematic diagram of the present invention;
[0029] Figure 2 is a three-dimensional sectional structural schematic diagram of the protective box of the present invention;
[0030] Figure 3 Schematic diagram of the three-dimensional structure of another perspective of the present invention;
[0031] Figure 4 Schematic diagram of the three-dimensional structure of the water guide plate of the present invention;
[0032] Figure 5 Schematic diagram of the three-dimensional structure of the drive housing and the auxiliary housing of the present invention;
[0033] Figure 6 Schematic diagram of the sectional three-dimensional structure of the drive housing and the auxiliary housing of the present invention;
[0034] Figure 7 Schematic diagram of the three-dimensional structure of the rotating rod of the present invention;
[0035] Figure 8 Schematic diagram of the partial three-dimensional structure of the dust-proof component of the present invention;
[0036] Figure 9 Schematic diagram of the three-dimensional structure of the water squeezing component of the present invention;
[0037] Figure 10 Schematic diagram of the three-dimensional structure of the extrusion disc of the present invention;
[0038] Figure 11 Schematic diagram of the sectional three-dimensional structure of the auxiliary block of the present invention;
[0039] Figure 12 Schematic diagram of the three-dimensional structure of the dust cleaning component of the present invention;
[0040] Figure 13 Schematic diagram of the sectional three-dimensional structure of the fixing cylinder of the present invention;
[0041] Figure 14 Schematic diagram of the working process of the present invention.
[0042] In the figure: 1. Water storage tank; 11. Water inlet; 12. Water delivery pipe; 121. Water spraying pipe; 13. Drive housing; 14. Auxiliary housing; 2. Protection box; 21. Battery; 22. Adjusting component; 221. First motor; 222. Drive rod; 223. Installation table; 224. Camera probe; 23. Positioning instrument; 24. Water guide plate; 241. Solar panel; 242. Tilt block; 243. Water guide pipe; 25. Observation window; 3. Dust-proof component; 31. Second motor; 311. Drive screw; 312. Drive nut; 32. Rotating rod; 321. Driving gear; 322. Fixed disk; 323. Cleaning sponge; 324. Auxiliary block; 33. Auxiliary rod; 34. Driving toothed plate; 4. Water squeezing component; 41. Driving cylinder; 411. Telescopic rod; 412. U-shaped frame; 42. Extrusion disc; 421. Magnetic block; 5. Dust cleaning component; 51. Auxiliary disc; 511. Fixing cylinder; 512. Spring; 513. Extension cylinder; 52. Cleaning ring; 521. Iron block. Specific embodiments
[0043] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to 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 the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0044] In the embodiments of the present application, the devices or components indicated by or implied must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the embodiments of the present application. In the description of the embodiments of the present application, the meaning of "a plurality" is two or more, unless otherwise specifically and precisely defined.
[0045] For the specific first embodiment, please refer to Figures 1 to 2 , an adjustable on-line monitoring device for video images of transmission lines, comprising: a water storage tank 1 and a camera probe 224 arranged on the top of the water storage tank 1,
[0046] a protection box 2 fixedly connected to the top of the water storage tank 1. An adjustment component 22 is arranged inside the protection box 2. The adjustment component 22 includes a first motor 221 fixedly connected to the inner wall of the protection box 2. The output end of the first motor 221 is fixedly connected to a driving rod 222. The surface of the driving rod 222 is fixedly connected to a mounting table 223. The top of the mounting table 223 is fixedly connected to the bottom of the camera probe 224. An observation window 25 is arranged on the surface of the protection box 2;
[0047] a dust-proof component 3 arranged on the surface of the protection box 2 for treating the dust on the surface of the observation window 25 to prevent the dust from blocking the observation window 25 and thus affecting the monitoring of the camera probe 224;
[0048] a water squeezing component 4 arranged on the surface of the dust-proof component 3 for squeezing out the moisture inside the dust-proof component 3 to prevent the moisture from accumulating;
[0049] a dust cleaning component 5 arranged on the surface of the dust-proof component 3 for treating the dust accumulated on the surface of the dust-proof component 3 to prevent the accumulated dust from affecting subsequent use;
[0050] It should be noted that one end of the driving rod 222 away from the first motor 221 is rotatably connected to the inner wall of the protection box 2;
[0051] When it is necessary to adjust the monitoring angle of the camera probe 224, start the first motor 221. The first motor 221 drives the mounting table 223 to rotate through the driving rod 222, so that the mounting table 223 drives the camera probe 224 to rotate, and thus the camera probe 224 can monitor the external transmission line through the observation window 25;
[0052] For specific embodiment 2, please refer to Figures 1 to 4 According to a specific implementation of an adjustable transmission line video image online monitoring device provided in the first embodiment, this embodiment provides a further technical solution:
[0053] The top of the water storage tank 1 is fixedly connected to the water inlet 11, and the top of the protection box 2 is fixedly connected to two water guide plates 24, the interiors of the two water guide plates 24 are fixedly connected to a plurality of solar panels 241 and a plurality of tilting blocks 242, and one side of the two water guide plates 24 is fixedly connected to a water guide pipe 243;
[0054] It should be noted that a filter screen is provided at the connection between the water inlet 11 and the water tank 1, and the water conduit 243 can also be directly connected to the water tank 1, thereby preventing foreign matter from entering the water tank 1 through the water inlet 11, so it is not limited here;
[0055] When it is necessary to store water in the water tank 1, when it rains, rainwater falls into the water guide plate 24, flows into the bottom of the water guide plate 24 through the gap between the solar panels 241, and then is guided into the water guide pipe 243 through the inclined block 242, and then flows into the water tank 1 through the water inlet 11 for storage;
[0056] For specific embodiment 3, please refer to Figures 1 to 8 According to the adjustable transmission line video image online monitoring device provided in the second embodiment, this embodiment provides a further technical solution:
[0057] A suction pump is arranged inside the water storage tank 1, one end of the suction pump is fixedly connected to a water pipe 12, and the end of the water pipe 12 away from the suction pump is fixedly connected to a water spray pipe 121, the top of the water storage tank 1 is fixedly connected to a driving shell 13 and an auxiliary shell 14, the dust prevention component 3 includes a second motor 31 fixedly connected to the inside of the driving shell 13 and an auxiliary rod 33 rotatably connected to the inside of the auxiliary shell 14, the output end of the second motor 31 is fixedly connected to a driving screw 311, and the surface of the driving screw 311 is threadedly connected to a driving screw block 312, the driving screw 311 is fixedly connected to the driving screw block 312, and the driving screw 311 is fixedly connected to the driving screw block 312. The screw block 312 is slidably connected to the inside of the driving shell 13, one end of the driving screw block 312 is rotatably connected to the rotating rod 32, the surface of the rotating rod 32 is fixedly connected to the fixed disk 322 and the cleaning sponge 323, one end of the rotating rod 32 is rotatably connected to the auxiliary block 324, the auxiliary block 324 is slidably connected to the surface of the auxiliary rod 33, the dust prevention component 3 also includes an active toothed plate 34 fixedly connected to the surface of the protection box 2, the surface of the rotating rod 32 is fixedly connected to the active gear 321, and the active gear 321 is meshed with the active toothed plate 34 for transmission;
[0058] It should be noted that a number of water spray nozzles are provided on the surface of the water spray pipe 121. The water spray nozzles can spray water on the observation window 25. When the sprayed water contacts the observation window 25, the splashed water flow can wet the cleaning sponge 323, thereby preventing the cleaning sponge 323 from drying out due to long-term non-use and affecting the subsequent cleaning of the observation window 25. One end of the driving screw 311 away from the second motor 31 is rotatably connected inside the driving housing 13;
[0059] When it is necessary to process the dust on the surface of the observation window 25, the suction pump conveys the water in the water storage tank 1 to the water spray pipe 121 through the water delivery pipe 12. The water sprayed by the water spray pipe 121 sprays the surface of the observation window 25, so that the dust on the surface of the observation window 25 is fully mixed with the water. Then, the second motor 31 drives the driving screw 311 to rotate, and the driving screw 311 drives the rotating rod 32 to move through the driving screw block 312. During the movement of the rotating rod 32, the driving tooth plate 34 drives the driving gear 321 to rotate, and the driving gear 321 drives the cleaning sponge 323 to rotate through the rotating rod 32. Thus, the cleaning sponge 323 cleans the dust and water during rotation, so that the dust on the surface of the observation window 25 is processed, and the camera probe 224 can monitor the external power transmission line through the observation window 25;
[0060] Specific embodiment four, please refer to Figures 1 to 11 , according to an adjustable on-line monitoring device for video images of power transmission lines provided in specific embodiment three, the present embodiment provides a further technical solution:
[0061] The water squeezing assembly 4 includes a driving cylinder 41 fixedly connected inside the auxiliary block 324. The output end of the driving cylinder 41 is differentially connected with a telescopic rod 411. One end of the telescopic rod 411 away from the driving cylinder 41 is fixedly connected with a U-shaped frame 412. One end of the U-shaped frame 412 away from the telescopic rod 411 is fixedly connected with an extrusion disc 42. A magnetic block 421 is fixedly connected inside one end of the extrusion disc 42 away from the U-shaped frame 412. The cleaning sponge 323 is arranged between the fixed disc 322 and the extrusion disc 42. The inside of the rotating rod 32 is hollow, and a moving groove for the U-shaped frame 412 to move is formed on the surface of the rotating rod 32. The telescopic rod 411 and the U-shaped frame 412 are slidably connected inside the rotating rod 32;
[0062] When it is necessary to squeeze out the water inside the cleaning sponge 323, when the cleaning sponge 323 moves to the bottom and does not contact the observation window 25, the driving cylinder 41 is started. The driving cylinder 41 drives the U-shaped frame 412 to move through the telescopic rod 411, so that the U-shaped frame 412 drives the extrusion disc 42 to slide on the surface of the rotating rod 32. Thus, the extrusion disc 42 squeezes the cleaning sponge 323, and then squeezes out the water absorbed inside the cleaning sponge 323, preventing the water from accumulating inside the cleaning sponge 323 and causing it to be damaged;
[0063] Specific Embodiment Five. Please refer to Figures 1 to 13 , based on an adjustable on-line monitoring device for video images of transmission lines provided in Specific Embodiment Four, the present embodiment provides a further technical solution:
[0064] The dust cleaning component 5 includes an auxiliary disk 51 fixedly connected to the surface of the rotating rod 32. One end of the auxiliary disk 51 is fixedly connected to two fixed cylinders 511. Springs 512 are fixedly connected to the interiors of the two fixed cylinders 511. Extension cylinders 513 are slidably connected to the interiors of the two fixed cylinders 511. One end of the extension cylinder 513 is fixedly connected to one end of the spring 512. The end of the extension cylinder 513 away from the spring 512 is fixedly connected to a cleaning ring 52. The cleaning ring 52 is arranged on the surface of the cleaning sponge 323. A number of bristles are arranged inside the cleaning ring 52. An iron block 521 is fixedly connected to the interior of the end of the cleaning ring 52 away from the extension cylinder 513;
[0065] It should be noted that when the extrusion disk 42 squeezes the cleaning sponge 323, the contraction of the cleaning sponge 323 will not affect the adsorption between the magnetic block 421 and the iron block 521. And to avoid the above situation, a magnetic block 421 can also be fixedly connected to the surface of the extrusion disk 42, and an iron block 521 is fixedly connected to the surface of the cleaning ring 52. Therefore, when the cleaning sponge 323 contracts, the magnetic block 421 pulling the iron block 521 will not damage the cleaning sponge 323. Therefore, the positions of the magnetic block 421 and the iron block 521 are not limited;
[0066] When it is necessary to prevent dust from adhering to the surface of the cleaning sponge 323, when the U-shaped frame 412 pushes the extrusion disk 42 to continuously slide on the surface of the rotating rod 32, the magnetic block 421 inside the extrusion disk 42 adsorbs the iron block 521 inside the cleaning ring 52. Then, the driving cylinder 41 drives the telescopic rod 411 to retract, so that the extrusion disk 42 drives the cleaning ring 52 to move through the magnetic block 421 and the iron block 521. During the movement of the cleaning ring 52, the cleaning ring 52 stretches the spring 512 through the extension cylinder 513, causing the spring 512 to deform. When the U-shaped frame 412 returns to the initial state, the magnetic block 421 and the iron block 521 are separated from each other, and then the spring 512 returns to the initial state, thereby driving the cleaning ring 52 to start moving, so that the bristles inside the cleaning ring 52 brush off the dust on the surface of the cleaning sponge 323, thereby avoiding dust from adhering to the surface of the cleaning sponge 323 and affecting subsequent use;
[0067] Specific Embodiment Six. Please refer to Figures 1 to 14 , based on an adjustable on-line monitoring device for video images of transmission lines provided in Specific Embodiment Five, the present embodiment provides a further technical solution:
[0068] Inside the protective box 2, there is a storage battery 21. The storage battery 21 is connected to the solar panel 241 through a wire. Inside the protective box 2, there is a locator 23, and the locator 23 is electrically connected to the camera probe 224;
[0069] It should be noted that on the top of the installation platform 223 and on one side of the camera probe 224, there is a height detector. The electricity generated by the solar panel 241 can be stored in the storage battery 21 through a converter, and the storage battery 21 can provide power for the operation of the first motor 221 and the second motor 31;
[0070] When the height detection instrument detects that there are personnel above the established height at the bottom of the transmission line, the real-time picture is transmitted to the data center through the camera probe 224. At the same time, the locator 23 synchronously transmits the position where the camera probe 224 is located to the data center, so that the data center can compare through the employee database to determine whether the personnel belong to the employees.
[0071] Working principle: When in use, the water storage tank 1 is installed at a designated position. When it is necessary to adjust the monitoring angle of the camera probe 224, the first motor 221 is started. The first motor 221 drives the mounting table 223 to rotate through the driving rod 222, so that the mounting table 223 drives the camera probe 224 to rotate. As a result, the camera probe 224 can monitor the external transmission line through the observation window 25. When it is necessary to store water in the water storage tank 1, in case of rainy weather, the rainwater falls into the water guide plate 24 and flows into the bottom of the water guide plate 24 through the gaps between the solar panels 241. Then, the water flow is guided into the water guide pipe 243 through the inclined block 242 and then flows into the water storage tank 1 through the water inlet 11 for storage. When it is necessary to clean the dust on the surface of the observation window 25, the suction pump transports the water in the water storage tank 1 to the water spray pipe 121 through the water delivery pipe 12. The water sprayed from the water spray pipe 121 sprays water on the surface of the observation window 25, so that the dust on the surface of the observation window 25 is fully mixed with the water. Then, the second motor 31 drives the driving screw 311 to rotate, and the driving screw 311 drives the rotating rod 32 to move through the driving nut 312. During the movement of the rotating rod 32, the driving gear plate 34 drives the driving gear 321 to rotate, so that the driving gear 321 drives the cleaning sponge 323 to rotate through the rotating rod 32. As a result, the cleaning sponge 323 cleans the dust and water during rotation, and thus the dust on the surface of the observation window 25 is processed, enabling the camera probe 224 to monitor the external transmission line through the observation window 25. When it is necessary to squeeze out the water inside the cleaning sponge 323, when the cleaning sponge 323 moves to the bottom and is not in contact with the observation window 25, the driving cylinder 41 is started. The driving cylinder 41 drives the U-shaped frame 412 to move through the telescopic rod 411, so that the U-shaped frame 412 drives the extrusion disc 42 to slide on the surface of the rotating rod 32. As a result, the extrusion disc 42 squeezes the cleaning sponge 323, and thus squeezes out the water absorbed inside the cleaning sponge 323, preventing the water from accumulating inside the cleaning sponge 323 and causing damage to it. When it is necessary to prevent dust from adhering to the surface of the cleaning sponge 323, when the U-shaped frame 412 pushes the extrusion disc 42 to continuously slide on the surface of the rotating rod 32, the magnetic block 421 inside the extrusion disc 42 adsorbs the iron block 521 inside the cleaning ring 52. Then, the driving cylinder 41 drives the telescopic rod 411 to retract, so that the extrusion disc 42 drives the cleaning ring 52 to move through the magnetic block 421 and the iron block 521. During the movement of the cleaning ring 52, the cleaning ring 52 stretches the spring 512 through the extension tube 513, causing the spring 512 to deform. When the U-shaped frame 412 returns to its initial state, the magnetic block 421 and the iron block 521 are separated from each other. As a result, the spring 512 returns to its initial state, and then drives the cleaning ring 52 to start moving, so that the bristles inside the cleaning ring 52 brush off the dust on the surface of the cleaning sponge 323, thus avoiding the dust adhering to the surface of the cleaning sponge 323 and affecting subsequent use.
[0072] Contents not described in detail in this specification belong to the prior art well-known to those skilled in the art.
[0073] It should be noted that, in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0074] Parallel: The parallel defined in this application is not limited to absolute parallel. This definition of parallel can be understood as substantially parallel, allowing for situations where it is not absolutely parallel due to factors such as assembly tolerances, design tolerances, and the influence of structural flatness. Small-angle range errors are allowed. For example, within an assembly error range of within 10 degrees, it can be understood as a parallel relationship.
[0075] Perpendicular: The perpendicular defined in this application is not limited to an absolutely perpendicular intersection (with an included angle of 90 degrees). A relationship where it is not an absolutely perpendicular intersection is allowed due to factors such as assembly tolerances, design tolerances, and the influence of structural flatness. Small-angle range errors are allowed. For example, within an assembly error range within the range of 80 degrees to 100 degrees, it can be understood as a perpendicular relationship.
[0076] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An adjustable transmission line video image online monitoring device, comprising: A water storage tank (1) and a camera probe (224) arranged on the top of the water storage tank (1), characterized in that: A protection box (2) is fixedly connected to the top of the water storage tank (1); an adjustment component (22) is arranged inside the protection box (2); the adjustment component (22) comprises a first motor (221) fixedly connected to the inner wall of the protection box (2); the output end of the first motor (221) is fixedly connected to a driving rod (222); the surface of the driving rod (222) is fixedly connected to a mounting platform (223); the top of the mounting platform (223) is fixedly connected to the bottom of a camera probe (224); and an observation window (25) is arranged on the surface of the protection box (2); A dust prevention component (3) is arranged on the surface of the protection box (2) and is used to process dust on the surface of the observation window (25) to prevent dust from blocking the observation window (25) and thus affecting the monitoring of the camera probe (224); A water squeezing component (4) is arranged on the surface of the dust prevention component (3) and is used to squeeze out the water inside the dust prevention component (3) to prevent water accumulation; The dust cleaning component (5) is arranged on the surface of the dust prevention component (3) and is used to process dust accumulated on the surface of the dust prevention component (3) to prevent the accumulated dust from affecting subsequent use.
2. The adjustable transmission line video image online monitoring device according to claim 1, characterized in that: The top of the water storage tank (1) is fixedly connected to a water inlet (11), the top of the protection box (2) is fixedly connected to two water guide plates (24), the interiors of the two water guide plates (24) are fixedly connected to a plurality of solar panels (241) and a plurality of tilting blocks (242), and one side of the two water guide plates (24) is fixedly connected to a water guide pipe (243).
3. The adjustable transmission line video image online monitoring device according to claim 1 is characterized by: A suction pump is arranged inside the water storage tank (1), one end of the suction pump is fixedly connected to a water delivery pipe (12), and one end of the water delivery pipe (12) away from the suction pump is fixedly connected to a water spray pipe (121).
4. The adjustable transmission line video image online monitoring device according to claim 1 is characterized by: The top of the water storage tank (1) is fixedly connected to a driving shell (13) and an auxiliary shell (14); the dust prevention component (3) comprises a second motor (31) fixedly connected to the inside of the driving shell (13) and an auxiliary rod (33) rotatably connected to the inside of the auxiliary shell (14); the output end of the second motor (31) is fixedly connected to a driving screw (311); the surface of the driving screw (311) is threadedly connected to a driving screw block (312); the driving screw block (312) is slidably connected to the inside of the driving shell (13); one end of the driving screw block (312) is rotatably connected to a rotating rod (32); the surface of the rotating rod (32) is fixedly connected to a fixed disk (322) and a cleaning sponge (323); one end of the rotating rod (32) is rotatably connected to an auxiliary block (324); the auxiliary block (324) is slidably connected to the surface of the auxiliary rod (33).
5. The adjustable transmission line video image online monitoring device according to claim 4 is characterized in that: The dust prevention component (3) also includes an active toothed plate (34) fixedly connected to the surface of the protection box (2); a driving gear (321) is fixedly connected to the surface of the rotating rod (32); and the driving gear (321) is meshed with the active toothed plate (34) for transmission.
6. The adjustable transmission line video image online monitoring device according to claim 4 is characterized by: The water squeezing assembly (4) comprises a driving cylinder (41) fixedly connected to the inside of the auxiliary block (324); the output end of the driving cylinder (41) is differentially connected to a telescopic rod (411); one end of the telescopic rod (411) away from the driving cylinder (41) is fixedly connected to a U-shaped frame (412); one end of the U-shaped frame (412) away from the telescopic rod (411) is fixedly connected to a squeezing plate (42); one end of the squeezing plate (42) away from the U-shaped frame (412) is fixedly connected to a magnetic block (421); and the cleaning sponge (323) is arranged between the fixed plate (322) and the squeezing plate (42).
7. The adjustable transmission line video image online monitoring device according to claim 6 is characterized by: The interior of the rotating rod (32) is hollow, and a moving groove for the U-shaped frame (412) to move is provided on the surface of the rotating rod (32). The telescopic rod (411) and the U-shaped frame (412) are slidably connected inside the rotating rod (32).
8. The adjustable transmission line video image online monitoring device according to claim 4 is characterized by: The dust cleaning component (5) comprises an auxiliary plate (51) fixedly connected to the surface of a rotating rod (32); one end of the auxiliary plate (51) is fixedly connected to two fixed cylinders (511); the interiors of the two fixed cylinders (511) are fixedly connected to springs (512); the interiors of the two fixed cylinders (511) are slidably connected to extension cylinders (513); one end of the extension cylinder (513) is fixedly connected to one end of the spring (512).
9. The adjustable transmission line video image online monitoring device according to claim 8, characterized in that: One end of the extension tube (513) away from the spring (512) is fixedly connected to a cleaning ring (52), the cleaning ring (52) is arranged on the surface of the cleaning sponge (323), a plurality of bristles are arranged inside the cleaning ring (52), and an iron block (521) is fixedly connected inside the end of the cleaning ring (52) away from the extension tube (513).
10. The adjustable transmission line video image online monitoring device according to claim 1, characterized in that: A storage battery (21) is arranged inside the protection box (2), and the storage battery (21) is connected to the solar panel (241) via a wire. A positioning device (23) is arranged inside the protection box (2), and the positioning device (23) is electrically connected to the camera probe (224).
Citation Information
Patent Citations
Power transmission line video image monitoring device
CN118381879A
Cited By
Device and method for analyzing and monitoring movable transformer of distribution line
CN120405508A