Recently, at the construction site of a rooftop distributed photovoltaic (PV) project in a local city, the PV support system provided by Meihong Photovoltaic was successfully installed in batches. Its superior product performance provided core support for accelerating the project and demonstrated Meihong's technological strength in the PV support field.
The Maywon support system used in this project has three main advantages. Strong adaptability is a prominent highlight; the support system can flexibly adapt to urban building roofs with different slopes, and its modular design allows for rapid assembly, perfectly fitting the complex scenarios of scattered and diverse urban rooftop spaces, significantly reducing on-site construction difficulty. In terms of durability, the support system uses high-specification galvanized steel, possessing excellent wind and corrosion resistance, able to withstand complex weather conditions such as urban acid rain and strong winds, with a service life of over 25 years, matching the lifespan of the PV modules and reducing later maintenance costs from the source. High efficiency and energy saving characteristics are equally impressive; the angle adjustment components of the support system can precisely match the local sunlight trajectory, maximizing the light-gathering efficiency of the PV panels. Combined with standardized installation procedures, this not only shortens the support system installation period by 30% but also increases the overall power generation of the PV system by 5%-8%.
"Maywon's support system is not only easy to install, but also ensures both stability and power generation efficiency, laying a solid foundation for the project's timely grid connection," said the project manager.
With the accelerated penetration of distributed photovoltaics in urban areas, Meihong Photovoltaic, with its cost-effective and high-performance support system products, is becoming an important partner in the urban green energy transformation, helping more idle rooftops to be converted into efficient "green power stations."