A new energy photovoltaic power station operation and maintenance platform

CN121036683BActive Publication Date: 2026-08-07GREEN ENERGY CENTRAL (WUHAN) TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GREEN ENERGY CENTRAL (WUHAN) TECHNOLOGY CO LTD
Filing Date
2025-09-16
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]现有的新能源光伏电站运维平台在使用时,当所处区域出现洪涝灾害时,大量涌入的洪水会将新能源光伏电站运维平台淹没浸泡损坏,造成严重的损失,而现有的新能源光伏电站运维平台缺乏应对此类情况的保护措施,不能满足使用所需

Benefits of technology

[0042]1、本发明在平台所处区域被淹没时,能实现包裹袋对平台的包裹以及对包裹袋的封口,使得能将平台封闭在包裹袋内,使得平台不会受到水的浸泡,实现对平台的保护;

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Abstract

The application relates to the technical field of photovoltaic power station operation and maintenance platforms, and discloses a new energy photovoltaic power station operation and maintenance platform, which comprises a platform used for the operation and maintenance of a new energy photovoltaic power station, a wrapping assembly arranged outside the platform and used for wrapping the platform, the wrapping assembly comprising a sleeve plate arranged outside the platform, a wrapping bag connected to the top of the sleeve plate and a support symmetrically arranged on the two sides of the sleeve plate. When the area where the platform is located is flooded, the wrapping bag can wrap the platform and seal the wrapping bag, so that the platform can be enclosed in the wrapping bag, the platform cannot be soaked by water, the protection of the platform is realized, the two sides of the wrapping bag can be straightened when the wrapping bag is sealed, so that the two sides of the wrapping bag cannot collapse inward, and the clamping plate can better clamp and close the bag opening of the wrapping bag.
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Description

Technical Field

[0001] This invention belongs to the field of photovoltaic power plant operation and maintenance platform technology, and specifically relates to a new energy photovoltaic power plant operation and maintenance platform. Background Technology

[0002] The new energy photovoltaic power plant operation and maintenance platform is a management system that provides comprehensive solutions for the operation and maintenance of photovoltaic power plants based on technologies such as the Internet of Things, the Internet, big data, cloud computing, and artificial intelligence.

[0003] When existing new energy photovoltaic power plant operation and maintenance platforms are in use, they are often submerged and damaged by floods in the area, causing serious losses. The existing new energy photovoltaic power plant operation and maintenance platforms lack protective measures to deal with such situations and cannot meet the needs of use.

[0004] Therefore, it is necessary to invent a new energy photovoltaic power plant operation and maintenance platform to solve the above problems. Summary of the Invention

[0005] To address the aforementioned problems, this invention provides a new energy photovoltaic power plant operation and maintenance platform to solve the issues raised in the background section.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a new energy photovoltaic power plant operation and maintenance platform, comprising:

[0007] The platform is used for the operation and maintenance of new energy photovoltaic power plants;

[0008] A wrapping component, disposed on the outside of the platform, is used to wrap the platform;

[0009] The package component includes:

[0010] A sleeve plate is fitted over the outside of the platform; a package bag is attached to the top of the sleeve plate; a bracket is symmetrically arranged on both sides of the sleeve plate; a clamping plate is symmetrically arranged on both sides of the sleeve plate, the clamping plate is slidably mounted on the bracket, and the inner side of the clamping plate is connected to the outer side of the package bag; a housing is fixedly mounted at both ends of the bracket; a push plate is slidably disposed inside the housing; a connecting rod connects the push plate to the clamping plate; and a spring connects the side of the push plate away from the clamping plate to the inner wall of the housing.

[0011] A limiting component for limiting the position of the pair of clamps;

[0012] A drive component for driving the support to rise;

[0013] A plug, inserted into the back of the platform, is used to power the platform;

[0014] A pull-out assembly, located on the back of the platform, is used to pull out the plug.

[0015] Furthermore, the driving component includes:

[0016] The motor is connected to the sleeve plate;

[0017] A lead screw is fixedly connected to the end of the output shaft of the motor, and the bracket is threaded onto the outside of the lead screw;

[0018] A liquid level sensor is located at the bottom of the sleeve.

[0019] The controller is located on top of the sleeve plate;

[0020] A storage battery is located on top of the casing.

[0021] Both the controller and the battery are located inside the package.

[0022] Furthermore, the limiting component includes:

[0023] A limiting plate is disposed between the pair of clamping plates;

[0024] An arc-shaped groove is formed on the inner side of the clamping plate;

[0025] The two ends of the limiting plate are respectively located in the corresponding arc-shaped grooves, the limiting plate is sleeved on the outside of the lead screw, and the limiting plate is made of iron;

[0026] A first magnet is fixedly connected to the top of the lead screw. The magnetic force of the first magnet can overcome the elastic force of the spring and attract the limiting plate to rise until it leaves the arc-shaped groove.

[0027] Furthermore, the pull-out component includes:

[0028] A sliding rod is attached to the back of the platform;

[0029] The second magnet is sleeved on the outside of the slide bar;

[0030] A pusher frame is fixedly connected to one side of the second magnet. The pusher frame is U-shaped and located between the plug and the platform.

[0031] An electromagnet is fixedly sleeved on the outside of the slide bar. When the electromagnet is energized, the direction of its magnetic poles is the same as that of the second magnet. The magnetic force generated by the electromagnet when energized is sufficient to push the second magnet to separate the plug from the platform along with the push frame.

[0032] Furthermore, the support has a notch in the middle, and an adsorption component for adsorbing the package bag is provided in the notch;

[0033] The adsorption component includes:

[0034] A cavity, wherein the cavity is formed inside the support;

[0035] Air holes are evenly spaced from top to bottom on the bracket. The air holes communicate with the cavity, face the package bag, and are located within the notch.

[0036] A conduit connects the housing to the cavity;

[0037] A sealing ring is fitted around the outside of the push plate, and the sealing ring abuts against the inner wall of the housing.

[0038] Furthermore, the package bag is a PE flat bag, and the top of the package bag is above the clamp.

[0039] Furthermore, the controller can control the motor to start and the electromagnet to be energized, and the battery supplies power to the controller, the liquid level sensor, the motor, and the electromagnet.

[0040] Furthermore, the motor is specifically configured as a submersible motor.

[0041] The technical effects and advantages of this invention are as follows:

[0042] 1. When the area where the platform is located is flooded, the present invention can wrap the platform with a package bag and seal the package bag, so that the platform can be sealed inside the package bag and the platform will not be soaked in water, thus protecting the platform.

[0043] 2. This invention can straighten the two sides of the package when sealing it, so as to prevent the two sides of the package from collapsing inward, and allow the clamp to better hold and seal the opening of the package. Attached Figure Description

[0044] Figure 1 This invention illustrates the structure of a new energy photovoltaic power plant operation and maintenance platform according to an embodiment of the present invention. Figure 1 ;

[0045] Figure 2 This invention illustrates the structure of a new energy photovoltaic power plant operation and maintenance platform according to an embodiment of the present invention. Figure 2 ;

[0046] Figure 3 An embodiment of the present invention is shown. Figure 2 Enlarged structural diagram at point A in the middle;

[0047] Figure 4 This invention illustrates the structure of a new energy photovoltaic power plant operation and maintenance platform according to an embodiment of the present invention. Figure 3 ;

[0048] Figure 5 An embodiment of the present invention is shown. Figure 4 Enlarged structural diagram at point B;

[0049] Figure 6 A cross-sectional structural schematic diagram of the operation and maintenance platform for a new energy photovoltaic power station according to an embodiment of the present invention is shown;

[0050] Figure 7 An embodiment of the present invention is shown. Figure 6 Enlarged structural diagram at point C;

[0051] Figure 8 A physical diagram of the present invention is shown;

[0052] In the diagram: 1. Platform; 2. Sleeve plate; 3. Bracket; 4. Clamping plate; 5. Housing; 6. Push plate; 7. Connecting rod; 8. Spring; 9. Motor; 10. Lead screw; 11. Liquid level sensor; 12. Controller; 13. Battery; 14. Limiting plate; 15. Arc groove; 16. First magnet; 17. Slide rod; 18. Second magnet; 19. Push frame; 20. Electromagnet; 21. Plug; 22. Notch; 23. Cavity; 24. Air hole; 25. Conduit; 26. Packaging bag. Detailed Implementation

[0053] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0054] This invention provides a new energy photovoltaic power plant operation and maintenance platform, such as... Figures 1 to 7 As shown, it includes:

[0055] Platform 1 is used for the operation and maintenance of new energy photovoltaic power plants. Platform 1 is the existing operation and maintenance platform for new energy photovoltaic power plants.

[0056] The wrapping component is set outside of platform 1 and is used to wrap platform 1;

[0057] The package assembly includes: sleeve 2, package bag 26, bracket 3, clamp 4, housing 5, push plate 6, connecting rod 7, spring 8, limiting assembly, driving assembly, plug 21, and pull-out assembly;

[0058] The sleeve 2 is fixedly sleeved on the outside of the platform 1, the package bag 26 is connected to the top of the sleeve 2, the bracket 3 is symmetrically arranged on both sides of the sleeve 2, the clamp 4 is symmetrically arranged on both sides of the sleeve 2, the clamp 4 is slidably installed on the bracket 3, the inner side of the clamp 4 is fixedly connected to the outer side of the package bag 26, the housing 5 is fixedly installed at both ends of the bracket 3, the push plate 6 is slidably arranged inside the housing 5, the connecting rod 7 fixes the push plate 6 to the clamp 4, and the spring 8 connects the side of the push plate 6 away from the clamp 4 to the inner wall of the housing 5.

[0059] The limiting component is used to limit the position of a pair of clamps 4;

[0060] The drive assembly is used to drive the support 3 to rise;

[0061] The plug 21 is inserted into the back of the platform 1 to supply power to the platform 1;

[0062] The unplugging component is located on the back of platform 1 and is used to unplug plug 21.

[0063] In use, when the area where platform 1 is located is flooded, the staff cuts off the power. When the water level is at the bottom of the sleeve plate 2, the component is pulled out and the plug 21 is pulled out, causing the plug 21 to fall to the outside. Then the drive component drives the support 3 to rise. The support 3, along with the clamping plate 4, the package bag 26, the shell 5, the push plate 6, and the connecting rod 7, rises. When the support 3 rises to the highest point, the package bag 26 unfolds and wraps around platform 1. Then the limiting component releases the restriction on the pair of clamping plates 4. The compressed and deformed spring 8 moves the push plate 6, the connecting rod 7, and the clamping plates 4, causing the pair of clamping plates 4 to move closer to each other. Finally, the pair of clamping plates 4 clamp and seal the opening of the package bag 26. At this time, platform 1 is sealed inside the package bag 26, so that even if the water level continues to rise, platform 1 will not be soaked, thus protecting platform 1.

[0064] like Figure 1 As shown, the drive assembly includes: motor 9, lead screw 10, liquid level sensor 11, controller 12, and battery 13;

[0065] The motor 9 is fixedly connected to the sleeve 2, the lead screw 10 is fixedly connected to the output shaft end of the motor 9, the bracket 3 is threaded onto the outside of the lead screw 10, the liquid level sensor 11 is located at the bottom of the sleeve 2, the controller 12 is located at the top of the sleeve 2, the battery 13 is located at the top of the sleeve 2, and both the controller 12 and the battery 13 are located inside the packaging bag 26.

[0066] The liquid level sensor 11 monitors the water level. When the water level reaches the bottom of the sleeve plate 2, the liquid level sensor 11, together with the controller 12, controls the motor 9 to start. The output shaft of the motor 9 drives the lead screw 10 to rotate, which causes the drive bracket 3 to rise, thereby driving the bracket 3.

[0067] like Figure 4 As shown, the limiting components include: a limiting plate 14, an arc-shaped groove 15, and a first magnet 16;

[0068] The limiting plate 14 is disposed between a pair of clamping plates 4, and the arc groove 15 is opened on the inner side of the clamping plate 4. When the pair of clamping plates 4 close the bag opening of the package bag 26, the arc groove 15 can wrap the outside of the lead screw 10 and the bracket 3. The two ends of the limiting plate 14 are respectively located in the corresponding arc groove 15. The limiting plate 14 is sleeved on the outside of the lead screw 10. The limiting plate 14 is made of iron. The first magnet 16 is fixedly connected to the top of the lead screw 10. The magnetic force of the first magnet 16 can overcome the elastic force of the spring 8 and attract the limiting plate 14 to rise until it leaves the arc groove 15.

[0069] When the bracket 3 rises to its highest point and stops, the first magnet 16 attracts the limiting plate 14 to continue rising, causing the limiting plate 14 to leave the pair of arc grooves 15 and remove the restriction on the clamping plate 4.

[0070] like Figure 3 As shown, the pull-out assembly includes: a slide bar 17, a second magnet 18, a pusher 19, and an electromagnet 20;

[0071] The slide bar 17 is fixedly connected to the back of the platform 1. The slide bar 17 is a rectangular columnar component. A stop is provided at the end of the slide bar 17 away from the platform 1. The second magnet 18 is sleeved on the outside of the slide bar 17. The push frame 19 is fixedly connected to one side of the second magnet 18. The push frame 19 is U-shaped and is located between the plug 21 and the platform 1. The electromagnet 20 is fixedly sleeved on the outside of the slide bar 17. When the electromagnet 20 is energized, the direction of the magnetic poles generated is the same as the direction of the magnetic poles of the second magnet 18. The magnetic force generated when the electromagnet 20 is energized is sufficient to push the second magnet 18 and the push frame 19 to separate the plug 21 from the platform 1.

[0072] When the electromagnet 20 is energized, it becomes magnetic. The magnetic force generated pushes the second magnet 18, which in turn pushes the pusher 19 to separate the plug 21 from the platform 1. After separation, the plug 21 falls to the top of the clamping plate 4 under the action of gravity. As the clamping plate 4 rises, the plug 21 falls to the outside.

[0073] like Figures 2 to 7 As shown, the bracket 3 has a notch 22 in the middle, and an adsorption component for adsorbing the package bag 26 is provided in the notch 22.

[0074] The adsorption assembly includes: a cavity 23, pores 24, and a conduit 25;

[0075] The cavity 23 is opened inside the support 3. The air holes 24 are equally spaced from top to bottom on the support 3. The air holes 24 are connected to the cavity 23 and face the packaging bag 26. The air holes 24 are located in the notch 22. The conduit 25 connects the shell 5 and the cavity 23. The push plate 6 is fitted with a sealing ring on the outside. The sealing ring abuts against the inner wall of the shell 5.

[0076] In the initial state, the opening of the package bag 26 is in an open state to ensure that the platform 1 can be smoothly wrapped when the opening of the package bag 26 rises.

[0077] When the spring 8 moves along with the push plate 6, connecting rod 7, and clamping plate 4, it works with the guide tube 25 to draw air from the cavity 23 into the shell 5, creating suction at the air hole 24. This draws the two sides of the package bag 26 into the notch 22, so that as the pair of clamping plates 4 move, the two sides of the bag opening of the package bag 26 are gradually straightened, preventing the two sides of the package bag 26 from collapsing inward. This allows the clamping plates 4 to better clamp and seal the bag opening of the package bag 26.

[0078] like Figure 1 As shown, the parcel bag 26 is a PE flat bag, and the top of the parcel bag 26 is above the clamp 4.

[0079] This allows a pair of clamps 4 to seal the opening of the package 26.

[0080] The controller 12 can control the start of the motor 9 and the power supply of the electromagnet 20. The battery 13 supplies power to the controller 12, the liquid level sensor 11, the motor 9, and the electromagnet 20.

[0081] This ensures that the controller 12, electromagnet 20, motor 9, and liquid level sensor 11 can still work normally after the power is cut off by the staff.

[0082] Motor 9 is specifically designed as a submersible motor, enabling it to operate underwater.

[0083] Working principle: During use, when the area where platform 1 is located is flooded, the power is cut off by the operator. When the water level is at the bottom of the sleeve 2, the liquid level sensor 11, in conjunction with the controller 12, controls the electromagnet 20 to be energized. After being energized, the electromagnet 20 becomes magnetic, and the generated magnetic force pushes the second magnet 18, which in turn pushes the pusher 19 to separate the plug 21 from platform 1. The plug 21 eventually falls to the outside under the action of gravity. Subsequently, the liquid level sensor 11, in conjunction with the controller 12, controls the motor 9 to start. The output shaft of the motor 9 drives the lead screw 10 to rotate, causing the drive bracket 3 to rise. The bracket 3, along with the clamping plate 4, the package bag 26, the shell 5, the push plate 6, and the connecting rod 7, rises. When the support 3 rises to its highest point, the motor 9 stops. At this time, the packaging bag 26 unfolds and wraps the platform 1. After the support 3 stops at its highest point, the first magnet 16 attracts the limiting plate 14 to continue rising, causing the limiting plate 14 to leave the pair of arc grooves 15 and release the restriction on the clamping plate 4. The compressed and deformed spring 8 moves the push plate 6, the connecting rod 7, and the clamping plate 4, causing the pair of clamping plates 4 to move closer to each other. Finally, the pair of clamping plates 4 clamp and seal the opening of the packaging bag 26. At this time, the platform 1 is sealed inside the packaging bag 26, so that even if the water level continues to rise, the platform 1 will not be soaked, thus protecting the platform 1.

[0084] When the spring 8 moves along with the push plate 6, connecting rod 7, and clamping plate 4, it works with the guide tube 25 to draw air from the cavity 23 into the shell 5, creating suction at the air hole 24. This draws the two sides of the package bag 26 into the notch 22, so that as the pair of clamping plates 4 move, the two sides of the bag opening of the package bag 26 are gradually straightened, preventing the two sides of the package bag 26 from collapsing inward. This allows the clamping plates 4 to better clamp and seal the bag opening of the package bag 26.

[0085] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it.

Claims

1. A new energy photovoltaic power station operation and maintenance platform, characterized in that, include: Platform (1) is used for the operation and maintenance of new energy photovoltaic power plants; A wrapping component is disposed outside the platform (1) for wrapping the platform (1); The packaging assembly includes: a sleeve (2) fitted over the outside of the platform (1); a packaging bag (26) connected to the top of the sleeve (2); a bracket (3) symmetrically arranged on both sides of the sleeve (2); a clamping plate (4) symmetrically arranged on both sides of the sleeve (2), the clamping plate (4) being slidably mounted on the bracket (3), the inner side of the clamping plate (4) being connected to the outer side of the packaging bag (26); a housing (5) fixedly mounted at both ends of the bracket (3); a push plate (6) slidably disposed inside the housing (5); a connecting rod (7) connecting the push plate (6) to the clamping plate (4); and a spring (8) connecting the side of the push plate (6) away from the clamping plate (4) to the housing (5). The inner wall of the bracket (3) is connected; a limiting component is used to limit the position of the pair of clamps (4); a driving component is used to drive the bracket (3) to rise; a plug (21) is inserted into the back of the platform (1) for powering the platform (1); a pull-out component is provided on the back of the platform (1) for pulling out the plug (21); the driving component includes: a motor (9) connected to the sleeve (2); a lead screw (10) fixedly connected to the output shaft end of the motor (9), and the bracket (3) is threaded onto the outside of the lead screw (10); a liquid level sensor (11) provided at the bottom of the sleeve (2); a controller (12) provided at the top of the sleeve (2); a battery (1 3), set on the top of the sleeve (2); the controller (12) and the battery (13) are both located inside the package bag (26); the limiting component includes: a limiting plate (14), set between a pair of clamps (4); an arc groove (15), opened on the inner side of the clamp (4); the two ends of the limiting plate (14) are respectively located in the corresponding arc groove (15), the limiting plate (14) is sleeved on the outside of the lead screw (10), the limiting plate (14) is made of iron; a first magnet (16), fixedly connected to the top of the lead screw (10), the magnetic force of the first magnet (16) can overcome the elastic force of the spring (8) to attract the limiting plate (14) to rise until it leaves the top of the sleeve (26). Arc-shaped groove (15); a notch (22) is provided in the middle of the support (3), and an adsorption component for adsorbing the package bag (26) is provided in the notch (22); the adsorption component includes: a cavity (23), which is opened inside the support (3); air holes (24), which are equidistantly arranged on the support (3) from top to bottom, the air holes (24) are connected to the cavity (23), the air holes (24) face the package bag (26), and the air holes (24) are located in the notch (22); a conduit (25), which connects the shell (5) to the cavity (23); a sealing ring is provided on the outside of the push plate (6), and the sealing ring abuts against the inner wall of the shell (5).

2. The new energy photovoltaic power station operation and maintenance platform according to claim 1, characterized in that: The pull-out assembly includes: a slide bar (17) connected to the back of the platform (1); a second magnet (18) sleeved on the outside of the slide bar (17); a pusher (19) fixedly connected to one side of the second magnet (18), the pusher (19) being U-shaped and located between the plug (21) and the platform (1); and an electromagnet (20) fixedly sleeved on the outside of the slide bar (17), the electromagnet (20) generating magnetic poles in the same direction as the magnetic poles of the second magnet (18) when energized, and the magnetic force generated by the electromagnet (20) being sufficient to push the second magnet (18) along with the pusher (19) to separate the plug (21) from the platform (1).

3. The new energy photovoltaic power station operation and maintenance platform according to claim 2, characterized in that: The package bag (26) is a PE flat bag, and the top of the package bag (26) is above the clamp (4).

4. The new energy photovoltaic power station operation and maintenance platform according to claim 3, characterized in that: The controller (12) can control the motor (9) to start and the electromagnet (20) to be powered. The battery (13) supplies power to the controller (12), the liquid level sensor (11), the motor (9), and the electromagnet (20).

5. The new energy photovoltaic power station operation and maintenance platform according to claim 4, characterized in that: The motor (9) is specifically configured as a submersible motor.

Citation Information

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