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首页> 外文期刊>Solar Energy >Electrical performance of bifacial silicon PV modules under different indoor mounting configurations affecting the rear reflected irradiance
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Electrical performance of bifacial silicon PV modules under different indoor mounting configurations affecting the rear reflected irradiance

机译:在不同的室内安装配置下,双面硅光伏组件的电气性能会影响背面反射辐照度

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摘要

Bifacial photovoltaic (PV) modules can increase the performance with respect to traditional PV modules because both sides of the cells, front and rear, absorb solar radiation. To assess their performance and quality, PV modules are characterized using international standards. However, currently only a draft IEC technical specification exists for bifacial PV modules and research needs to be done in order to study the indoor performance testing conditions. One of the issues that need to be addressed is how to measure bifacial PV modules correctly and analyse the different testing approaches proposed. This work outlines the indoor performance testing of c-Si bifacial modules under different module mounting setups including open rack, a structure with baffles and 3 modules. For each mounting method a white reflective rear panel of several dimensions was placed at various distances behind the module as a potential approach for a double-sided illumination characterization method. Electrical performance is also studied with a single-side illumination method with a black rear panel. The rear irradiance measurements and non-uniformity are also studied and the performance measurements are validated with a single-side illumination method. Additional rear irradiance allows P-max increment up to 20% under certain conditions. However, the rear irradiance non-uniformity needs to be improved in order to fulfil the current requirements of the draft technical specification.
机译:双面光伏(PV)模块可以提高传统光伏模块的性能,因为电池的正面和背面都吸收太阳辐射。为了评估其性能和质量,光伏组件使用国际标准进行表征。但是,目前只有双面光伏组件的IEC技术规范草案,需要进行研究才能研究室内性能测试条件。需要解决的问题之一是如何正确测量双面光伏组件并分析建议的不同测试方法。这项工作概述了c-Si双面模块在不同模块安装设置下的室内性能测试,包括开放式机架,带挡板的结构和3个模块。对于每种安装方法,将多个尺寸的白色反光后面板放置在模块后的不同距离处,作为双面照明表征方法的一种可能方法。还使用带有黑色后面板的单面照明方法研究了电气性能。还研究了后部辐照度测量和不均匀性,并使用单侧照明方法验证了性能测量。在特定条件下,附加的后部辐照度可使P-max最多增加20%。但是,为了满足技术规范草案的当前要求,需要改善后部辐照度的不均匀性。

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