
Customized anti-glare (reflective) photovoltaic modules


Our company offers two different anti-reflective technologies:
A. Physical structure anti-reflective technology, suitable for large-scale usage areas with more than 10,000 components.
B. Chemical structure anti-reflective technology, suitable for smaller demand areas.
我司可提供两种不同的防反光技术
A、物理结构防反光技术,适用于量大的使用场所10000块组件以上。
B、化学结构防反光技术,适用于需求量相对较小的场所。
Multi-application scenarios: Lighting up a better life
1. Urban building integration (BIPV): Applied to commercial building facades and roofs, avoiding the reflection from traditional photovoltaic components that may disturb residents, pedestrians and traffic, while also having dual functions of power generation and aesthetics, enhancing the quality of urban buildings.
2. Transportation facilities: Installed in scenarios such as highway sound barriers, railway photovoltaic canopies, and airport photovoltaic parking shelters, effectively reducing the reflection that may affect the vision of drivers and crew members, ensuring traffic safety, and simultaneously achieving clean energy supply.
3. Agriculture and ecological integration: In projects such as agricultural and photovoltaic complementation, and fishery and photovoltaic complementation, anti-reflective components reduce interference to crop lighting and aquatic organisms, achieving harmonious coexistence of energy production and agriculture and fishery, and contributing to ecological sustainable development.
4. Special application requirements: Such as military bases and surrounding areas of astronomical observation stations, anti-reflective photovoltaic components avoid optical interference to precision instruments and military facilities, meeting the clean energy usage requirements in special environments.
1. 城市建筑一体化(BIPV):应用于商业建筑幕墙、屋顶,避免传统光伏组件产生的反光对周边居民、行人及交通造成干扰,同时兼具发电与美观双重功能,提升城市建筑品质。
2. 交通设施领域:安装在高速公路隔音墙、铁路沿线光伏顶棚、机场光伏停车棚等场景,有效减少反光对驾驶员、乘务人员视线的影响,保障交通安全,同时实现清洁能源供应。
3. 农业与生态融合:在农光互补、渔光互补项目中,防反光组件降低对农作物光照和水生生物的干扰,实现能源生产与农业、渔业的和谐共生,助力生态可持续发展。
4. 特殊场景需求:如军事基地、天文观测站周边,防反光光伏组件避免对精密仪器和军事设施造成光学干扰,满足特殊环境下的清洁能源使用需求。