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2.3 Efficiency Gains for Silicon Solar Modules Using a Durable Broadband Anti-reflection Coating

机译:使用耐用宽带防反射涂层为2.3%硅太阳能模块的效率提升

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The front surface reflection losses from solar cover glass account for over 4% of incident light, limiting module efficiency. The application of a multilayer broadband antireflection coating reduces reflection losses over the wavelength range utilised by silicon solar cells. A 6-layer anti-reflection coating comprising SiO2 and ZrO2 has been deposited on glass using high rate pulsed-DC magnetron sputtering. The reflection losses are reduced by 2.4% absolute compared to uncoated glass. The increased light reaching the solar cell leads to improvements in Isc and spectral response, increasing the efficiency from 17.1 to 17.5%, a relative increase of 2.34%. The coating is environmentally robust. The sputtering process is already used for other high throughput applications by major glass manufacturers.
机译:来自太阳能覆盖玻璃的前表面反射损耗占入射光的4%以上,限制模块效率。多层宽带抗反射涂层的应用降低了硅太阳能电池使用的波长范围内的反射损耗。一个包含SiO的6层抗反射涂层 2 和ZrO. 2 已经使用高速脉冲-DC磁控溅射沉积在玻璃上。与未涂覆的玻璃相比,反射损耗减少了2.4%。到达太阳能电池的增加的光线导致I sc 和光谱反应,将效率从17.1增加到17.5%,相对增加2.34%。涂层是环保的。溅射过程已经用于主要玻璃制造商的其他高通量应用。

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