Mobile operation platform for flexible photovoltaic support

By introducing balancing components and clamping components into the mobile working platform of the flexible photovoltaic bracket, the problem of unstable operation of the power trolley caused by lateral tension was solved, the smooth movement of the power trolley and the precise operation of the working platform were achieved, and the stability and cleaning efficiency of the equipment were improved.

CN223396902UActive Publication Date: 2025-09-30CEEC BEIJING ELECTRIC POWER CONSTR
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422989648.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-09-30
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

In the prior art, the power trolley of the flexible photovoltaic support is easily affected by lateral tension during movement, resulting in unstable operation and operational risks.

Method used

A mobile working platform for flexible photovoltaic supports is designed. It adopts a combination of a balancing component and a clamping component. The cooperation between the first balancing member and the second balancing member offsets the lateral pulling force generated by the connecting component on the power trolley. The rollers roll in the clamping guide rail to reduce friction, ensuring the smooth operation of the power trolley on the horizontal guide rail.

Benefits of technology

It effectively improves the operating stability and safety of the power trolley, ensures the smooth movement of the working platform, reduces friction and wear, extends the service life of the equipment, and improves the maintenance and cleaning efficiency of the photovoltaic bracket.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223396902U_ABST
    Figure CN223396902U_ABST
Patent Text Reader

Abstract

The utility model provides a mobile operation platform for a flexible photovoltaic support, which comprises two horizontal guide rails and two power trolleys, and fixing parts are arranged on opposite sides of frames of the two power trolleys; the operation assembly comprises a connecting assembly and an operation platform arranged on the connecting assembly, and the two ends of the connecting assembly are connected with the two fixing parts respectively, so that the operation platform moves along with the movement of the power trolley; the two balance assemblies comprise two first balance parts and two second balance parts, the two first balance parts are arranged on the two frames respectively, the two second balance parts are arranged on the supporting frame, and when the power trolley moves, the first balance parts move relative to the second balance parts; the first balance part and the second balance part are connected to offset lateral tension generated by the connecting assembly to the power trolley. According to the mobile operation platform for the flexible photovoltaic support, the technical problem that in the prior art, a power trolley runs unstably due to lateral tension is solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaic support operation platforms, and in particular to a mobile operation platform for a flexible photovoltaic support. Background Art

[0002] Flexible photovoltaic mounting systems, due to their simple structure, large span, and light weight, are widely used in locations with complex terrain, such as fish ponds, mountainous terrain, orchards, and over sewage treatment plants. However, during the installation and subsequent maintenance of photovoltaic modules, conventional methods (such as boom trucks or aerial platforms) are often limited by the complex terrain and have difficulty reaching the designated locations. This results in low installation efficiency for photovoltaic modules and cable structures, and also makes subsequent cleaning and maintenance difficult.

[0003] To address the aforementioned issues, several mobile work platform solutions have been proposed in the prior art. These solutions typically employ support frames mounted on both sides of a flexible photovoltaic support, a power trolley mounted on the support frames, and a work platform mounted on top of the two trolleys. The movement of the trolleys drives the work platform. However, as the trolleys move, the trolleys are susceptible to lateral forces due to the traction of the wire ropes, resulting in unstable operation on the guide rails and significant operational risks.

[0004] Therefore, the prior art needs to be further developed. Utility Model Content

[0005] The purpose of the present invention is to overcome the above technical deficiencies and provide a mobile working platform for a flexible photovoltaic support to solve the technical problem in the related art that the power trolley is unstable due to lateral pulling force.

[0006] In order to achieve the above technical objectives, the utility model adopts the following technical solutions: a mobile working platform for a flexible photovoltaic bracket is provided, including: two horizontal guide rails, which are installed on the support frames on both sides of the working area; two power trolleys, which are movably arranged on the two horizontal guide rails, and the opposite sides of the frames of the two power trolleys are provided with fixed parts; an operating assembly, including a connecting assembly and an operating platform arranged on the connecting assembly, and the two ends of the connecting assembly are respectively connected to the two fixed parts so that the operating platform moves with the movement of the power trolley; two balancing assemblies, including two first balancing members and two second balancing members, the two first balancing members are respectively arranged on the two frames, and the two second balancing members are arranged on the support frame. When the power trolley moves, the first balancing member moves relative to the second balancing member; the first balancing member and the second balancing member are connected to offset the lateral pulling force generated by the connecting assembly on the power trolley.

[0007] Furthermore, the first balancing member is a snap-on assembly, which is arranged on the side of the frame away from the fixed part. The second balancing member is a snap-on guide rail. The two snap-on guide rails are located on the outside of the two horizontal guide rails. The snap-on guide rails are arranged parallel to the horizontal guide rails. The snap-on assembly is connected to the snap-on guide rails. As the power trolley moves on the horizontal guide rails, the snap-on assembly slides in the snap-on guide rails.

[0008] Furthermore, the clamping assembly includes a rotatable roller. When the power trolley moves on the horizontal guide rail, the roller rolls in the clamping guide rail to reduce friction between the clamping assembly and the clamping guide rail.

[0009] Furthermore, the clamping assembly also includes a first clamping plate and a second clamping plate, one end of the first clamping plate is connected to the frame, the other end of the first clamping plate is connected to the second clamping plate, and the end of the second clamping plate away from the first clamping plate is connected to the roller; the first clamping plate is perpendicular to the second clamping plate; the frame, the first clamping plate, the second clamping plate and the roller sequentially form a accommodating space, and the accommodating space is used to accommodate the clamping guide rail; the roller is protruded relative to the second clamping plate so that the roller fits tightly on the clamping guide rail, thereby clamping the clamping guide rail in the accommodating space.

[0010] Furthermore, stop plates are provided at the ends of the horizontal guide rail and the clamping guide rail, and the stop plates are respectively vertically arranged on the horizontal guide rail and the clamping guide rail. The stop plates are used to limit the movement range of the clamping assembly and the power trolley.

[0011] Furthermore, each power trolley is also provided with a first motor and first rotating wheels located at both ends of the frame. The first motor is arranged in the frame, and the first motor drives the first rotating wheel to rotate, thereby moving the power trolley on the horizontal guide rail.

[0012] Furthermore, the fixed part is a fixed frame, and there are two fixed frames, which are located between the two first wheels; the connecting assembly includes two pairs of second wheels and two steel ropes, each pair of second wheels is respectively arranged on the fixed frame and is rotatable relative to the fixed frame, and each steel rope passes through the second wheel on one of the fixed frames to form a closed loop with the second wheel on the opposite side fixed frame, and the working platform is set on the two steel ropes. When the second wheel rotates, the two steel ropes move accordingly, thereby driving the working platform to move.

[0013] Furthermore, the connecting assembly also includes a second motor, a rack and a connecting rod. The second motor is located in the frame and is spaced apart from the first motor. The connecting rod is located between each pair of second rotating wheels. The connecting rod passes through two fixed frames and is connected to the two second rotating wheels. The rack passes through the frame and is respectively connected to the connecting rod and the output end of the second motor; when the second motor is started, it drives the rack to rotate, drives the connecting rod to rotate, and thus drives the second rotating wheels to rotate.

[0014] Furthermore, the power trolley moves along a first preset direction on the horizontal guide rail. When the second wheel rotates to drive the wire rope to move, the working platform moves along a second preset direction. The first preset direction and the second preset direction are perpendicular to each other.

[0015] Furthermore, the operating component also includes a cleaning component, which includes a hose reel, a lifting column and several nozzles. The hose reel and the lifting column are arranged on the operating platform at intervals. Several nozzles are fixed on the lifting column. The hose reel provides cleaning fluid to the nozzles through a water pipe. The height of the lifting column is adjustable to adjust the distance between the nozzles and the flexible photovoltaic bracket, so that the nozzles can spray cleaning fluid onto the flexible photovoltaic bracket.

[0016] Beneficial effects:

[0017] 1. The mobile working platform for the flexible photovoltaic support of the utility model is provided with a balancing assembly. The cooperation of the first balancing member and the second balancing member effectively offsets the lateral pulling force generated by the connecting assembly on the power trolley, ensuring that the power trolley runs smoothly on the horizontal guide rail, which significantly improves the stability and safety of the system.

[0018] 2. Through the movement of the power trolley and the coordinated action of the connecting components, the working platform can move precisely along the first preset direction and the second preset direction, and the moving trajectory is vertical, which facilitates precise operation of different areas of the photovoltaic bracket and improves maintenance and cleaning efficiency.

[0019] 3. The clamping assembly in the balancing assembly is equipped with rollers, which roll in the clamping guide rails, significantly reducing sliding friction, reducing component wear, extending the service life of the equipment, and improving operational stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of the mobile working platform adopted in the embodiment of the present utility model;

[0021] Figure 2 yes Figure 1 A partial enlarged view of part A;

[0022] Figure 3 This is a structural diagram from one perspective of a balancing assembly of a mobile working platform used in an embodiment of the present utility model;

[0023] Figure 4 This is a structural diagram of the balancing assembly of the mobile working platform adopted in an embodiment of the present utility model from another perspective;

[0024] Figure 5 yes Figure 1 A partial enlarged view of part B.

[0025] The above drawings include the following reference numerals:

[0026] 1. Horizontal guide rail; 2. Support frame; 3. Power trolley; 31. Frame; 32. Fixed part; 321. Fixed frame; 33. First motor; 34. First rotating wheel; 4. Working assembly; 41. Connecting assembly; 411. Second rotating wheel; 412. Wire rope; 413. Second motor; 414. Rack; 415. Connecting rod; 42. Working platform; 43. Cleaning assembly; 431. Hose reel; 432. Lifting column; 433. Nozzle; 434. Water pipe; 5. Balancing assembly; 51. Clamping assembly; 511. Roller; 512. First clamping plate; 513. Second clamping plate; 52. Clamping guide rail; 53. Accommodating space; 6. Stop plate; 7. Travel switch. DETAILED DESCRIPTION

[0027] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0028] According to an embodiment of the present invention, a mobile working platform for a flexible photovoltaic support is provided. Figures 1 to 5, including: two horizontal guide rails 1, installed on the support frames 2 on both sides of the working area; two power trolleys 3, respectively movably arranged on the two horizontal guide rails 1, and the opposite sides of the frames 31 of the two power trolleys 3 are provided with fixed parts 32; an operating component 4, including a connecting component 41 and a working platform 42 arranged on the connecting component 41, and the two ends of the connecting component 41 are respectively connected to the two fixed parts 32, so that the working platform 42 moves with the movement of the power trolley 3; two balancing components 5, including two first balancing members and two second balancing members, the two first balancing members are respectively arranged on the two frames 31, and the two second balancing members are arranged on the support frame 2. When the power trolley 3 moves, the first balancing member moves relative to the second balancing member; the connection between the first balancing member and the second balancing member is used to offset the lateral pulling force generated by the connecting component 41 on the power trolley 3. The two relatively fixed parts 32 of the power trolley 3 are connected to a connecting assembly 41, and a working platform 42 is installed on the connecting assembly 41. Under the action of gravity, the connecting assembly 41 and the working platform 42 are suspended downward, so that the power trolley 3 is easily affected by the pulling force of the connecting assembly 41, thereby detaching from the horizontal guide rail 1. By introducing two balancing assemblies 5, including a first balancing member arranged on the frame and a second balancing member arranged on the support frame. When the power trolley 3 moves, the first balancing member moves relative to the second balancing member. At the same time, the first balancing member pulls the frame 31 to the opposite side, and the lateral pulling force generated by the connecting assembly 41 on the power trolley 3 is offset by the connection between the first balancing member and the second balancing member. This design effectively reduces the shaking and instability of the power trolley 3 during movement, makes the working platform 42 more stable, and improves the safety and reliability of the operation. The mobile working platform for the flexible photovoltaic bracket of this embodiment solves the technical problem of unstable operation of the power trolley due to lateral pulling force in the related art.

[0029] See Figure 1 and Figure 2 In the mobile working platform for the flexible photovoltaic support of this embodiment, the first balancing member is a snap-in assembly 51, which is arranged on the side of the frame 31 away from the fixing portion 32, and the second balancing member is a snap-in guide rail 52. The two snap-in guide rails 52 are located on the outside of the two horizontal guide rails 1, and the snap-in guide rails 52 are arranged parallel to the horizontal guide rails 1. The snap-in assembly 51 is connected to the snap-in guide rails 52. As the power trolley 3 moves on the horizontal guide rails 1, the snap-in assembly 51 slides in the snap-in guide rails 52. The matching design of the snap-in assembly 51 and the snap-in guide rails 52 provides additional stability for the movement of the power trolley 3 on the horizontal guide rails 1. When the power trolley 3 moves, the snap-in assembly 51 slides in the snap-in guide rails 52. This sliding connection effectively reduces the shaking and instability of the power trolley during movement, making the entire mobile working platform more stable.

[0030] See Figure 3In this embodiment of the mobile working platform for a flexible photovoltaic support, the clamping assembly 51 includes rotatable rollers 511. When the power trolley 3 moves on the horizontal guide rail 1, the rollers 511 roll within the clamping guide rail 52 to reduce friction between the clamping assembly 51 and the clamping guide rail 52. The design of the rollers 511 changes the movement of the clamping assembly 51 within the clamping guide rail 52 from sliding to rolling, significantly reducing friction between the two and helping to extend the service life of the equipment.

[0031] See Figure 3 and Figure 4 , the mobile working platform for the flexible photovoltaic support of this embodiment, the clamping assembly 51 also includes a first clamping plate 512 and a second clamping plate 513, one end of the first clamping plate 512 is connected to the frame 31, the other end of the first clamping plate 512 is connected to the second clamping plate 513, and the end of the second clamping plate 513 away from the first clamping plate 512 is connected to the roller 511; the first clamping plate 512 is perpendicular to the second clamping plate 513; the frame 31, the first clamping plate 512, the second clamping plate 513 and the roller 511 are sequentially surrounded by an accommodating space 53, and the accommodating space 53 is used to accommodate the clamping guide rail 52; the roller 511 is protruding relative to the second clamping plate 513 so that the roller 511 fits tightly on the clamping guide rail 52, thereby clamping the clamping guide rail 52 in the accommodating space 53. The accommodation space 53 formed by the first and second clamping plates 512, 513, the vehicle frame 31, and the rollers 511 strengthens the connection between the clamping assembly 51 and the clamping guide rail 52. The rollers 511 protrude from the second clamping plate 513, allowing them to fit tightly against the clamping guide rail 52. This prevents the clamping assembly 51 from detaching from the clamping guide rail 52 due to shaking or vibration during movement, thereby ensuring the safety and stability of the work platform 42.

[0032] See Figure 4 and Figure 5 In this embodiment of the mobile working platform for a flexible photovoltaic support, stop plates 6 are provided at the ends of both the horizontal guide rail 1 and the clamping guide rail 52. Stop plates 6 are vertically disposed on the horizontal guide rail 1 and the clamping guide rail 52, respectively, to limit the range of movement of the clamping assembly 51 and the power trolley 3. The design of stop plates 6 precisely limits the range of movement of the clamping assembly 51 and the power trolley 3, preventing them from moving excessively and disengaging from the guide rails, thereby avoiding potential safety hazards.

[0033] See Figure 3In this embodiment of the mobile working platform for a flexible photovoltaic support, each power trolley 3 is further provided with a first motor 33 and first rotating wheels 34 located at both ends of a frame 31. The first motor 33 is disposed within the frame 31 and drives the first rotating wheels 34 to rotate, thereby moving the power trolley 3 on the horizontal guide rail 1. By driving the first rotating wheels 34 with the first motor 33, the power trolley 3 can achieve rapid and smooth movement on the horizontal guide rail.

[0034] See Figure 1 、 Figure 3 and Figure 4 In this embodiment, the mobile working platform for a flexible photovoltaic support comprises a fixed portion 32, which is a fixed frame 321. There are two fixed frames 321, and the two fixed frames 321 are located between the two first rotating wheels 34. The connecting assembly 41 includes two pairs of second rotating wheels 411 and two steel wire ropes 412. Each pair of second rotating wheels 411 is respectively arranged on the fixed frame 321 and is rotatable relative to the fixed frame 321. Each steel wire rope 412 passes through the second rotating wheel 411 on one of the fixed frames 321 to form a closed loop with the second rotating wheel 411 on the opposite fixed frame 321. The working platform 42 is arranged on the two steel wire ropes 412. When the second rotating wheels 411 rotate, the two steel wire ropes 412 move accordingly, thereby driving the working platform 42 to move. Through the closed loop system formed by the second rotating wheels 411 and the steel wire ropes 412, the working platform 42 can move in the length direction of the steel wire ropes 412.

[0035] See Figure 1 、 Figure 3 and Figure 4 In this embodiment of the mobile working platform for a flexible photovoltaic support, the connecting assembly 41 further includes a second motor 413, a rack 414, and a connecting rod 415. The second motor 413 is located within the frame 31 and spaced apart from the first motor 33. The connecting rod 415 is located between each pair of second rotating wheels 411. The connecting rod 415 passes through the two fixing frames 321 and is connected to the two second rotating wheels 411. The rack 414 passes through the frame 31 and is connected to the connecting rod 415 and the output end of the second motor 413 respectively. When the second motor 413 is started, it drives the rack 414 to rotate, driving the connecting rod 415 to rotate, thereby driving the second rotating wheels 411 to rotate. The second motor 413 serves as a power source, driving the rack 414 to rotate, thereby driving the connecting rod 415 and the second rotating wheels 411 to rotate.

[0036] See Figure 1In this embodiment of the mobile working platform for a flexible photovoltaic support, the power trolley 3 moves along a first preset direction on the horizontal guide rail 1. When the second rotating wheel 411 rotates to drive the wire rope 412 to move, the working platform 42 moves along a second preset direction, and the first preset direction and the second preset direction are perpendicular to each other. The power trolley 3 and the working platform 42 can move in different directions respectively, so that the entire mobile working platform can perform flexible operations on a two-dimensional plane. This design increases the scope of application of the working platform, enabling it to better adapt to photovoltaic supports of different shapes and sizes, as well as complex and changeable working environments. The operator can control the movement of the power trolley and the working platform separately through the control system to achieve collaborative operation of the two. This design simplifies the operating process, reduces the difficulty of operation, and improves work efficiency.

[0037] See Figure 1 In this embodiment, the mobile working platform for a flexible photovoltaic support includes an operating component 4 that further includes a cleaning component 43. The cleaning component 43 includes a hose reel 431, a lifting column 432, and a plurality of nozzles 433. The hose reel 431 and the lifting column 432 are spaced apart on the working platform 42. The plurality of nozzles 433 are fixed to the lifting column 432. The hose reel 431 provides cleaning fluid to the nozzles 433 through a water pipe 434. The height of the lifting column 432 is adjustable to adjust the distance between the nozzles 433 and the flexible photovoltaic support, so that the nozzles 433 can spray cleaning fluid onto the flexible photovoltaic support. The cleaning component 43 can directly spray and clean the flexible photovoltaic support, which is more efficient and faster than manual cleaning. The design of the nozzles 433 allows the cleaning fluid to be evenly sprayed on the surface of the photovoltaic support, ensuring a cleaning effect. A travel switch 7 is also provided on the support frame 2 for detecting the position of the power trolley 3. The work platform 42 is equipped with an automatic hose reel 431 that automatically extends and retracts a water hose 434, providing water for cleaning the modules 43. The work platform 42 is also equipped with an automatic lifting column 432, which is equipped with a nozzle 433. When water pressure enters, the lifting column 432 automatically rises to clean the photovoltaic modules. When the water pressure disappears after the water supply is turned off, the automatic lifting column 432 drops, allowing the work platform 42 to move.

[0038] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in a sequence other than those illustrated or described herein. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0039] Optionally, the specific examples in this embodiment may refer to the examples described in the above embodiments, and this embodiment will not be described in detail here.

[0040] The serial numbers of the above embodiments of the present application are for description only and do not represent the advantages or disadvantages of the embodiments.

[0041] In the above embodiments of the present application, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, please refer to the relevant description of other embodiments.

[0042] The above is only a preferred embodiment of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.

Claims

1. A mobile working platform for a flexible photovoltaic support, characterized in that: include: Two horizontal guide rails (1) are mounted on support frames (2) on both sides of the working area; Two power trolleys (3) are movably arranged on the two horizontal guide rails (1), and fixing parts (32) are arranged on opposite sides of the frames (31) of the two power trolleys (3); An operating assembly (4) includes a connecting assembly (41) and an operating platform (42) disposed on the connecting assembly (41), wherein two ends of the connecting assembly (41) are respectively connected to the two fixing portions (32) so that the operating platform (42) moves along with the movement of the power trolley (3); Two balancing assemblies (5) include two first balancing members and two second balancing members, wherein the two first balancing members are respectively arranged on two vehicle frames (31), and the two second balancing members are arranged on the support frame (2). When the power trolley (3) moves, the first balancing members move relative to the second balancing members; the first balancing members and the second balancing members are connected to offset the lateral pulling force generated by the connecting assembly (41) on the power trolley (3).

2. The mobile working platform for a flexible photovoltaic support according to claim 1, characterized in that: The first balancing member is a snap-fit ​​assembly (51), which is arranged on a side of the vehicle frame (31) away from the fixing portion (32). The second balancing member is a snap-fit ​​guide rail (52), and the two snap-fit ​​guide rails (52) are located outside the two horizontal guide rails (1). The snap-fit ​​guide rails (52) are arranged parallel to the horizontal guide rails (1). The snap-fit ​​assembly (51) is connected to the snap-fit ​​guide rails (52). As the power trolley (3) moves on the horizontal guide rail (1), the snap-fit ​​assembly (51) slides in the snap-fit ​​guide rail (52).

3. The mobile working platform for a flexible photovoltaic support according to claim 2, characterized in that: The clamping assembly (51) includes a rotatable roller (511). When the power trolley (3) moves on the horizontal guide rail (1), the roller (511) rolls inside the clamping guide rail (52) to reduce friction between the clamping assembly (51) and the clamping guide rail (52).

4. The mobile working platform for a flexible photovoltaic support according to claim 3, characterized in that: The clamping assembly (51) further comprises a first clamping plate (512) and a second clamping plate (513), one end of the first clamping plate (512) being connected to the vehicle frame (31), the other end of the first clamping plate (512) being connected to the second clamping plate (513), and one end of the second clamping plate (513) away from the first clamping plate (512) being connected to the roller (511); the first clamping plate (512) being perpendicular to the second clamping plate (513); The vehicle frame (31), the first clamping plate (512), the second clamping plate (513), and the roller (511) sequentially enclose a receiving space (53), and the receiving space (53) is used to accommodate the clamping guide rail (52); the roller (511) is arranged to protrude relative to the second clamping plate (513), so that the roller (511) is tightly fitted on the clamping guide rail (52), thereby clamping the clamping guide rail (52) in the receiving space (53).

5. The mobile working platform for a flexible photovoltaic support according to claim 2, characterized in that: The ends of the horizontal guide rail (1) and the clamping guide rail (52) are both provided with stop plates (6), and the stop plates (6) are respectively vertically arranged on the horizontal guide rail (1) and the clamping guide rail (52). The stop plates (6) are used to limit the movement range of the clamping assembly (51) and the power trolley (3).

6. The mobile working platform for a flexible photovoltaic support according to claim 1, characterized in that: Each of the power trolleys (3) is further provided with a first motor (33) and first rotating wheels (34) located at both ends of the vehicle frame (31). The first motor (33) is provided in the vehicle frame (31). The first motor (33) drives the first rotating wheel (34) to rotate, thereby moving the power trolley (3) on the horizontal guide rail (1).

7. The mobile working platform for a flexible photovoltaic support according to claim 6, characterized in that: The fixing portion (32) is a fixing frame (321), there are two fixing frames (321), and the two fixing frames (321) are located between the two first rotating wheels (34); The connecting assembly (41) includes two pairs of second rotating wheels (411) and two steel wire ropes (412). Each pair of the second rotating wheels (411) is respectively arranged on the fixing frame (321) and is rotatable relative to the fixing frame (321). Each of the steel wire ropes (412) passes through the second rotating wheel (411) on one of the fixing frames (321) and forms a closed loop with the second rotating wheel (411) on the fixing frame (321) on the opposite side. The working platform (42) is arranged on the two steel wire ropes (412). When the second rotating wheels (411) rotate, the two steel wire ropes (412) move accordingly, thereby driving the working platform (42) to move.

8. The mobile working platform for a flexible photovoltaic support according to claim 7, characterized in that: The connecting assembly (41) further includes a second motor (413), a rack (414) and a connecting rod (415). The second motor (413) is located in the vehicle frame (31) and is spaced apart from the first motor (33). The connecting rod (415) is located between each pair of the second rotating wheels (411). The connecting rod (415) passes through the two fixing frames (321) and is connected to the two second rotating wheels (411). The rack (414) passes through the vehicle frame (31) and is respectively connected to the connecting rod (415) and the output end of the second motor (413). When the second motor (413) is started, the rack (414) is driven to rotate, which drives the connecting rod (415) to rotate, thereby driving the second rotating wheels (411) to rotate.

9. The mobile working platform for a flexible photovoltaic support according to claim 7, characterized in that: The power trolley (3) moves along a first preset direction on the horizontal guide rail (1); when the second rotating wheel (411) rotates to drive the steel wire rope (412) to move, the working platform (42) moves along a second preset direction, and the first preset direction and the second preset direction are perpendicular to each other.

10. The mobile working platform for a flexible photovoltaic support according to claim 1, characterized in that: The operation assembly (4) further includes a cleaning assembly (43), the cleaning assembly (43) including a hose reel (431), a lifting column (432) and a plurality of nozzles (433), the hose reel (431) and the lifting column (432) being spaced apart and arranged on the operation platform (42), the plurality of nozzles (433) being fixed on the lifting column (432), the hose reel (431) providing cleaning fluid to the nozzles (433) through a water pipe (434), the height of the lifting column (432) being adjustable to adjust the distance between the nozzles (433) and the flexible photovoltaic support, so that the nozzles (433) can spray the cleaning fluid onto the flexible photovoltaic support.