Photovoltaic installation platform

By using a photovoltaic installation platform that is directly connected to the connection components and PHC pipe piles in the photovoltaic power station, the problem of difficult installation of photovoltaic modules on soft ground is solved, and fast, stable installation efficiency and safety are achieved.

CN223428383UActive Publication Date: 2025-10-10CHINA THREE GORGES RENEWABLES (GRP) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422861909.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-10-10
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

In agricultural-photovoltaic and fishery-photovoltaic complementary photovoltaic power stations, the installation of photovoltaic modules is difficult, especially when setting up scaffolding on soft and uneven ground, which affects the installation efficiency.

Method used

A photovoltaic installation platform is provided, which is directly connected to the PHC piles through the clamps in the connection assembly to build a triangular support structure, including horizontal beams, vertical beams and diagonal braces, forming a stable working platform and reducing dependence on terrain.

Benefits of technology

It enables the rapid construction of a stable photovoltaic installation platform in complex terrain, improves installation efficiency and safety, and is suitable for various terrains and climatic conditions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223428383U_ABST
    Figure CN223428383U_ABST
Patent Text Reader

Abstract

The embodiment of the utility model provides a photovoltaic installation platform, and relates to the technical field of photovoltaic installation. The platform comprises a connecting assembly and a platform body, the connecting assembly comprises a cross beam, a vertical beam, a diagonal bracing piece and a hoop, the vertical beam is arranged in the height direction of a pipe pile, the cross beam is arranged in the horizontal direction, the vertical beam is connected with the cross beam, the diagonal bracing piece is fixedly connected between the cross beam and the vertical beam, the vertical beam is connected with the hoop, and the hoop is used for sleeving the pipe pile; the platform body is arranged between every two adjacent pipe piles, and the platform body is connected with the pipe piles through the connecting assemblies. According to the embodiment of the invention, the platform body is directly mounted between the two adjacent pipe piles through the connecting assemblies, the connecting assemblies are directly connected with the pipe piles through the hoops, and a supporting structure does not need to be built on the ground, so that the building and mounting platform does not need to be influenced by topographic conditions, the building difficulty is reduced, and the construction efficiency is improved. Therefore, a photovoltaic installation platform can be quickly built.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of photovoltaic installation technology, and in particular to a photovoltaic installation platform. Background Art

[0002] During the construction of agricultural-photovoltaic and fishery-photovoltaic complementary photovoltaic power stations, PHC pipe piles (prestressed high-strength concrete pipe piles) serve as the main structural components supporting photovoltaic panels.

[0003] Because agricultural and fishery photovoltaic power plants typically need to be constructed on open, relatively soft ground, PHC piles are often designed to be taller to maximize the solar panel's daylighting area and increase power generation efficiency. During the subsequent installation of photovoltaic modules, conventional techniques utilize scaffolding for high-altitude installation. However, in the construction of agricultural and fishery photovoltaic power plants, scaffolding installation is often limited by terrain conditions, making it difficult to erect, which in turn impacts the efficiency of photovoltaic module installation. Utility Model Content

[0004] The present application provides a photovoltaic installation platform to reduce the difficulty of photovoltaic module installation and improve installation efficiency.

[0005] The photovoltaic installation platform provided in the present application includes a connecting assembly and a platform body. The connecting assembly is arranged on a pipe pile. The connecting assembly includes a horizontal beam, a vertical beam, a diagonal brace and a hoop. The vertical beam is arranged along the height direction of the pipe pile, and the horizontal beam is arranged along the horizontal direction. The vertical beam is connected to the horizontal beam, the diagonal brace is fixedly connected between the horizontal beam and the vertical beam, the vertical beam is connected to the hoop, and the hoop is used to sleeve the pipe pile; the platform body is arranged between two adjacent pipe piles, and the platform body is connected to the pipe pile through the connecting assembly.

[0006] In some optional embodiments, there are at least two hoops, and the at least two hoops are spaced apart along the length direction of the vertical beam.

[0007] In some optional embodiments, the horizontal beam, the vertical beam, and the diagonal bracing members are all welded to the hoop.

[0008] In some optional embodiments, the diagonal bracing members are provided on both sides of the vertical beam in the horizontal direction, and one end of the diagonal bracing member is connected to the end of the horizontal beam, and the other end is connected to the end of the vertical beam.

[0009] In some optional embodiments, the platform body includes a connecting beam, a supporting plate and a guardrail, the connecting beam is connected to the cross beam, the supporting plate is mounted on the connecting beam and the cross beam, and the guardrail is arranged on the edge of the supporting plate.

[0010] In some optional embodiments, the crossbeam is provided with a limiting groove, the end portion of the support plate is provided in the limiting groove, and the support plate is detachably connected to the limiting groove.

[0011] In some optional embodiments, the guardrail includes a guide rod, which is arranged along the length direction of the support plate and is used to hang a safety rope.

[0012] In some optional embodiments, the photovoltaic mounting platform further includes a lifting assembly, which includes a lifting beam and a lifting piece. The lifting beam is arranged between two adjacent pipe piles, and the lifting beam is connected to the connecting assembly on the two adjacent pipe piles. The lifting piece is slidably arranged on the lifting beam, and the lifting piece is used to lift the photovoltaic assembly.

[0013] In some optional embodiments, the lifting member is a lifting hoist.

[0014] In some optional embodiments, the photovoltaic installation platform further includes a ladder connected to the platform body.

[0015] The photovoltaic installation platform provided in the embodiment of the present application directly installs the platform body between two adjacent pipe piles through a connecting assembly, wherein the connecting assembly is directly connected to the pipe piles through a clamp, and there is no need to build a supporting structure on the ground, so that the construction of the installation platform does not have to be subject to the influence of terrain conditions, which reduces the difficulty of construction and helps to quickly build the photovoltaic installation platform; at the same time, the connecting assembly includes horizontal beams, vertical beams and diagonal braces, and the horizontal beams, vertical beams and diagonal braces can all transmit the load from the platform body to support the platform body. The horizontal beams, vertical beams and diagonal braces form a triangular support structure, which helps to improve the connection stability of the platform body. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0017] Figure 1 A schematic diagram of the structure of a photovoltaic installation platform provided in an embodiment of the present application;

[0018] Figure 2 A schematic diagram of the structure of the connection components in the photovoltaic installation platform provided in an embodiment of the present application;

[0019] Figure 3 for Figure 1 Top view of the connection structure between the middle lifting beam and the hoop.

[0020] Description of reference numerals:

[0021] 100-pipe pile;

[0022] 200 - connection assembly; 210 - cross beam; 220 - upright; 230 - diagonal brace; 240 - stirrup;

[0023] 300 - platform body; 310 - connecting beam; 320 - guardrail; 330 - support plate;

[0024] 400 - hoisting assembly; 410 - hoisting beam; 420 - hoisting member;

[0025] 500 - ladder.

[0026] The specific embodiments of the application have been shown by way of example in the above figures, and will be described in more detail hereinafter. These figures and this written description are not intended to limit the scope of the inventive concept in any way, but are merely to illustrate specific embodiments of the inventive concept to a person skilled in the art by reference to particular embodiments. DETAILED DESCRIPTION

[0027] The exemplary embodiments will be described in detail herein with reference to the attached drawings. The description of the exemplary embodiments is intended to apply to any embodiment of the application, unless specified otherwise. Accordingly, when the same, similar or like components are functionally equivalent in the different figures, they are designated by the same reference numerals.

[0028] The terms "first", "second", "third", "fourth" and the like in the description and in the claims, where they occur, are used as labels for the necessity of distinguishing between similar objects, not necessarily for describing a particular sequential or chronological order. It is to be understood that the use of these terms is not meant to limit the scope of the application in any way.

[0029] In the embodiments of the application, the words "exemplary" and "for example" are used to mean example, illustration, or instance, and do not necessarily have to imply a ranking of superiority over other embodiments or examples. The use of these terms is intended to present concepts in a concrete way to assist the reader in understanding the application. However, it is to be understood that the concepts are not limited to the specified examples, and that no superiority is implied between the different examples or embodiments.

[0030] PHC pipe piles have been widely used in photovoltaic power station foundation construction due to their high strength, high bearing capacity, good bending resistance and convenient construction. In the agricultural and fishery photovoltaic projects, the height of the PHC pile top from the ground is usually between 2 to 4 meters, which makes it impossible for manual operation. Therefore, the installation of photovoltaic support and components usually needs to be completed with the help of an installation platform.

[0031] In the related art, a scaffold is erected on the PHC pipe pile, and then the photovoltaic support and assembly are installed. However, the ground of the construction site of the agricultural and fishery complementary photovoltaic power station is usually soft and uneven, so that the scaffold needs to be erected after the ground is leveled, thereby increasing the erection difficulty of the scaffold.

[0032] The photovoltaic installation platform provided by the embodiment of the present application directly connects the platform body with the outer periphery of the pipe pile through the hoop in the connecting assembly, so that the photovoltaic installation platform is not affected by the terrain, thereby reducing the installation difficulty and being beneficial to improving the installation efficiency of the photovoltaic assembly.

[0033] The technical solutions of the present application and how the technical solutions of the present application solve the above technical problems will be described in detail below with specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described again in some embodiments. The embodiments of the present application will be described below with reference to the drawings.

[0034] Please refer to Figures 1 to 3 The photovoltaic installation platform provided by the embodiment of the present application includes a connecting assembly 200 and a platform body 300. The connecting assembly 200 is arranged on the pipe pile 100, and the connecting assembly 200 includes a cross beam 210, a vertical beam 220, an inclined strut 230, and a hoop 240. The vertical beam 220 is arranged along the height direction of the pipe pile 100, the cross beam 210 is arranged along the horizontal direction, the vertical beam 220 is connected with the cross beam 210, the inclined strut 230 is fixedly connected between the cross beam 210 and the vertical beam 220, the vertical beam 220 is connected with the hoop 240, and the hoop 240 is used for sleeving the pipe pile 100. The platform body 300 is arranged between two adjacent pipe piles 100, and the platform body 300 is connected with the pipe piles 100 through the connecting assembly 200.

[0035] The connecting assembly 200 is used for connecting the platform body 300 with the two adjacent pipe piles 100, so as to erect a working platform for the installation personnel, so that the installation personnel can install the photovoltaic assembly on the platform body 300.

[0036] The cross beam 210 provides horizontal support for the platform body 300, and the cross beam 210 and the vertical beam 220 form a vertical intersection. The vertical beam 220 is a vertical support structure in the connecting assembly 200, which is arranged in close contact with the outer peripheral surface of the pipe pile 100, and can transmit the weight of the cross beam 210 and the platform body 300 to the pipe pile 100. Moreover, since the vertical beam 220 increases the contact area with the pipe pile 100 in the vertical space, the load transmitted from the platform body 300 is dispersed, which is beneficial to improving the stability of the photovoltaic installation platform.

[0037] The clamp 240 is connected to the pile 100 by bolts or other fasteners, thereby firmly connecting the vertical beam 220 to the pile 100, thereby connecting the photovoltaic installation platform to the pile 100. The connection assembly 200 is detachably mounted on the pile 100 via the clamp 240, so that the photovoltaic installation platform can be disassembled and reused later.

[0038] The diagonal bracing member 230 is fixedly connected between the horizontal beam 210 and the vertical beam 220 to form a triangular or triangular-like stable structure, thereby increasing the overall stability of the reinforced connection assembly 200 and preventing the structure from being deformed or damaged due to external forces.

[0039] In this embodiment, the platform body 300 is connected to adjacent pipe piles 100 via a connection assembly 200, creating a workspace for installers between two adjacent pipe piles 100. The connection assembly 200 includes a horizontal beam 210, a vertical beam 220, and a diagonal brace 230. The horizontal beam 210, the vertical beam 220, and the diagonal brace 230 can all transfer the load from the platform body 300, so that the load force acts on the pipe piles 100. The horizontal beam 210, the vertical beam 220, and the diagonal brace 230 form a triangular frame structure, which helps to improve the connection stability of the platform body 300. At the same time, the connection assembly 200 is directly connected to the pipe pile 100 via a clamp 240, which helps to quickly build and dismantle the photovoltaic installation platform, facilitating the secondary transfer and reuse of the photovoltaic installation platform. The connection assembly 200 of the frame structure has a simple structure and is lightweight, which reduces the installation difficulty for installers, facilitates installers to build a work platform for installing photovoltaic modules, and improves work efficiency.

[0040] Therefore, the photovoltaic installation platform provided in the embodiment of the present application has the advantages of simple structure, easy installation, strong bearing capacity, etc., and is suitable for the construction of photovoltaic power stations in various complex terrains and climatic conditions.

[0041] When installing a photovoltaic installation platform, the following steps can be followed. First, connect the horizontal beam 210 and the vertical beam 220 together by welding or other connection methods, and install the diagonal brace 230 between the horizontal beam 210 and the vertical beam 220 to form a stable triangular support structure; then, weld the clamp 240 to the horizontal beam 210, the vertical beam 220 and the diagonal brace 230 as a whole; then, sleeve and fix the clamp 240 on the pipe pile 100 with bolts or other fasteners. After fixing the connection assembly 200, place the platform body 300 on the connection assembly 200 between two adjacent pipe piles 100, and connect the platform body 300 to the connection assembly 200 with bolts or other fasteners, and ensure that the connection between the platform body 300 and the connection assembly 200 is firm and reliable.

[0042] In an optional embodiment, at least two hoops 240 are provided, and the at least two hoops 240 are spaced apart along the length direction of the vertical beam 220. Hoops 240 are provided at both the upper end and the lower end of the vertical beam 220.

[0043] At least two clamps 240 are mounted on the pipe pile 100 and connected to the vertical beam 220, increasing the connection area between the vertical beam 220 and the pipe pile 100, thereby improving the stability of the connection. The clamps 240 arranged at intervals can disperse the load on the vertical beam 220 and avoid structural damage caused by excessive force on a single point. The connection between the clamps 240, the vertical beam 220 and the pipe pile 100 can be bolted or welded to ensure the firmness and reliability of the connection. The material of the clamps 240 can be selected from high-strength, corrosion-resistant stainless steel or alloy steel to ensure that they will not be corroded or damaged during long-term use.

[0044] For example, the upper and lower ends of the vertical beam 220 are both provided with a clamp 240 to form a more uniform force distribution, thereby helping to reduce structural deformation or damage caused by uneven force, thereby further improving the overall stability and durability of the photovoltaic installation platform.

[0045] In an optional embodiment, the horizontal beam 210 , the vertical beam 220 , and the diagonal bracing member 230 are all welded to the hoop 240 .

[0046] The crossbeam 210, vertical beam 220, diagonal brace 230, and clamp 240 are welded together to form an integrated structure, which helps improve the structural strength and stability of the connection assembly 200. Welding is a high-strength connection method that significantly improves the strength and rigidity of the connection by melting the metals and forming a metallurgical bond. This connection method enables the connection assembly 200 to transmit and withstand large loads and deformation, ensuring the stability and safety of the photovoltaic mounting platform during use.

[0047] In an optional embodiment, diagonal bracing members 230 are provided on both sides of the vertical beam 220 in the horizontal direction, and one end of the diagonal bracing member 230 is connected to the end of the horizontal beam 210 , and the other end is connected to the end of the vertical beam 220 .

[0048] The diagonal braces 230 are connected to the ends of the horizontal beams 210 and vertical beams 220, forming a single unit and enhancing the overall stability of the photovoltaic installation platform. The diagonal braces 230 disperse and transfer loads, significantly improving the load-bearing capacity of the photovoltaic installation platform. When photovoltaic panels and other equipment are placed on the work platform, the diagonal braces 230 effectively distribute these loads and transfer them to the piles 100 via the horizontal beams 210 and vertical beams 220, preventing structural damage caused by excessive stress at a single point.

[0049] In an optional embodiment, the platform body 300 includes a connecting beam 310, a support plate 330 and a guardrail 320, the connecting beam 310 is connected to the cross beam 210, the support plate 330 is erected on the connecting beam 310 and the cross beam 210, and the guardrail 320 is arranged on the edge of the support plate 330.

[0050] The connecting beams 310 support and distribute the load throughout the platform 300. Connecting with the crossbeams 210, they form the skeletal structure of the platform 300, ensuring a stable overall structure. The platform 300 transfers its load to the connecting assembly 200 via the connecting beams 310, which then transfers the load to the piles 100, completing the load transfer. A support plate 330, constructed on the connecting beams 310 and crossbeams 210, forms a flat, stable work surface for installers to walk and stand on.

[0051] The guardrail 320 is provided at the edge of the support plate 330 as a protective structure, which can improve the safety of the photovoltaic module installation operation and prevent the photovoltaic panels and other equipment from falling off the platform during transportation or installation.

[0052] For example, connecting beam 310 and crossbeam 210 are connected using bolts, aluminum fasteners, or other fasteners, which helps reduce the difficulty of platform assembly and ensures connection strength. Guardrail 320, consisting of rails and posts, effectively prevents people from accidentally climbing over and prevents items from falling off the platform even in the event of minor collisions when transporting or installing equipment such as photovoltaic panels.

[0053] In this embodiment, a stable and reliable working platform is constructed by connecting the connecting beam 310, the cross beam 210 and the support plate 330, which can withstand various working loads and ensure the smooth progress of the installation work; the setting of the guardrail 320 greatly enhances the safety of the working area, which not only protects the safety of the installers, but also effectively prevents the damage or loss of materials during the operation.

[0054] In an optional embodiment, the crossbeam 210 is provided with a limiting groove, the end of the support plate 330 is provided in the limiting groove, and the support plate 330 is detachably connected to the limiting groove.

[0055] The limiting groove provides a limited installation space for the end of the support plate 330, allowing the support plate 330 to be installed in a limited position, which is conducive to improving the installation stability of the support plate 330. The support plate 330 can be removably installed in the limiting groove using connectors such as bolts and snaps. In this way, the support plate 330 can be firmly installed in the limiting groove while maintaining the characteristics of easy removal. The support plate 330 can be easily replaced or adjusted when needed to adapt to different installation requirements or maintenance operations, greatly improving the flexibility and practicality of the platform.

[0056] For example, a connection portion having a shape and size matching that of the limiting groove is provided at the end of the support plate 330 , and the connection portion is bolted to the limiting groove of the beam 210 .

[0057] In an optional embodiment, the guardrail 320 includes a guide rod disposed along the length of the support plate 330 for attaching a safety rope. In this embodiment, the guardrail 320 includes a guide rod disposed along the length of the support plate 330, providing convenience for installers to attach a safety rope, thereby improving safety during operation and ensuring stability when personnel move on the platform.

[0058] In an optional embodiment, the photovoltaic installation platform also includes a lifting assembly 400, which includes a lifting beam 410 and a lifting piece 420. The lifting beam 410 is arranged between two adjacent pipe piles 100, and the lifting beam 410 is connected to the connecting assembly 200 on the two adjacent pipe piles 100. The lifting piece 420 is slidably arranged on the lifting beam 410, and the lifting piece 420 is used to lift the photovoltaic assembly.

[0059] The lifting beam 410 is fixed to the connection assembly 200 of two adjacent pipe piles 100. It serves as a support structure for the lifting member 420 and can distribute the dynamic load during the lifting process of the lifting member 420. The lifting beam 410 can be made of high-strength materials, such as steel or alloy materials, to ensure sufficient strength and rigidity.

[0060] The lifting member 420 generally has a lifting mechanism and a control system, such as a motor, a reducer, a brake, etc., to achieve lifting and positioning functions. Exemplarily, the lifting member 420 is a lifting machine such as a crane or a hoist.

[0061] The operating principle of the lifting assembly 400 is based on the movement and control system of the lifting mechanism. When the photovoltaic lifting requires stability and accuracy, the lifting member 420 can also slide horizontally on the lifting beam 410 to adapt to the installation position of different photovoltaic modules.

[0062] In some implementation components, the lifting member 420 is lifted vertically by a lifting mechanism, and the control system is used to ensure that the lifting process is smooth. In this example, the lifting member 420 is a lifting hoist, which is a light and small lifting equipment. The electric hoist has the characteristics of small size, light weight, simple operation, and easy use. It is suitable for high-altitude working environments such as photovoltaic installation platforms. The lifting hoist includes main components such as a hoist body, a lifting chain (or a wire rope), a motor, a reducer and a brake. The lifting hoist is connected to the photovoltaic module through a lifting chain (or a wire rope) to achieve smooth lifting of the photovoltaic module. During the lifting process, the lifting hoist can adjust the lifting speed and height as needed to ensure that the photovoltaic module can be accurately placed in the designated position. At the same time, the lifting hoist can achieve horizontal movement of the photovoltaic module on the lifting beam 410 through a horizontal moving mechanism (such as a trolley, a track, etc.).

[0063] In an optional embodiment, the photovoltaic mounting platform further includes a ladder 500 connected to the platform body 300. The ladder 500 allows installers to more conveniently and safely ascend and descend the photovoltaic mounting platform. Compared to climbing directly onto the platform edge or using other unstable climbing methods, the ladder 500 provides more stable support and a non-slip design, effectively reducing the risk of accidental falls.

[0064] Those skilled in the art will readily appreciate other embodiments of the present application after considering the specification and practicing the utility model disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, and the true scope and spirit of the present application are indicated by the following claims.

[0065] It should be understood that the present application is not limited to the exact structure described above and shown in the drawings, and that various modifications and changes may be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A photovoltaic installation platform, characterized in that: It comprises a connection component (200) and a platform body (300); The connecting assembly (200) is arranged on the pipe pile (100), and the connecting assembly (200) comprises a crossbeam (210), a vertical beam (220), a diagonal brace (230), and a hoop (240); the vertical beam (220) is arranged along the height direction of the pipe pile (100); the crossbeam (210) is arranged along the horizontal direction; the vertical beam (220) is connected to the crossbeam (210); the diagonal brace (230) is fixedly connected between the crossbeam (210) and the vertical beam (220); the vertical beam (220) is connected to the hoop (240); and the hoop (240) is used to sleeve the pipe pile (100); The platform body (300) is arranged between two adjacent pipe piles (100), and the platform body (300) is connected to the pipe piles (100) via the connection assembly (200).

2. The photovoltaic installation platform according to claim 1, characterized in that: At least two of the hoops (240) are provided, and the at least two hoops (240) are spaced apart along the length direction of the vertical beam (220).

3. The photovoltaic installation platform according to claim 1, characterized in that: The cross beam (210), the vertical beam (220), and the diagonal bracing member (230) are all welded to the hoop (240).

4. The photovoltaic installation platform according to claim 1, characterized in that: The vertical beam (220) is provided with the diagonal bracing members (230) on both sides in the horizontal direction. One end of the diagonal bracing member (230) is connected to the end of the horizontal beam (210), and the other end is connected to the end of the vertical beam (220).

5. The photovoltaic installation platform according to any one of claims 1 to 4, characterized in that: The platform body (300) includes a connecting beam (310), a supporting plate (330) and a guardrail (320); the connecting beam (310) is connected to the cross beam (210); the supporting plate (330) is mounted on the connecting beam (310) and the cross beam (210); and the guardrail (320) is arranged on the edge of the supporting plate (330).

6. The photovoltaic installation platform according to claim 5, characterized in that: The crossbeam (210) is provided with a limiting groove, the end of the support plate (330) is arranged in the limiting groove, and the support plate (330) is detachably connected to the limiting groove.

7. The photovoltaic installation platform according to claim 5, characterized in that: The guardrail (320) includes a guide rod, which is arranged along the length direction of the support plate (330) and is used to hang a safety rope.

8. The photovoltaic installation platform according to claim 5, characterized in that: Also included is a lifting assembly (400), the lifting assembly (400) including a lifting beam (410) and a lifting member (420); The lifting beam (410) is arranged between two adjacent pipe piles (100), and the lifting beam (410) is connected to the connecting components (200) on the two adjacent pipe piles (100); The lifting member (420) is slidably arranged on the lifting beam (410), and the lifting member (420) is used to lift the photovoltaic component.

9. The photovoltaic installation platform according to claim 8, characterized in that: The lifting member (420) is a lifting hoist.

10. The photovoltaic installation platform according to any one of claims 1 to 4, characterized in that: It also includes a ladder (500), and the ladder (500) is connected to the platform body (300).