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Reflector materials for two-dimensional low-concentrating photovoltaic systems: the effect of specular versus diffuse reflectance efficiency on the module

机译:用于二维低浓度光伏系统的反射器材料:镜面反射率与漫反射效率对模块的影响

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摘要

Photovoltaic modules in two-dimensional low-concentrating systems with specular parabolic reflectors often experience high local irradiance that causes high local currents and cell temperatures. This generally results in power losses. The use of low-angle scattering reflectors gives a smoother irradiance distribution, which results in a higher fill factor. In order to study how the choice of reflector material influences system performance, two different reflector materials (anodised aluminium and lacquered rolled aluminium laminated on a plastic substrate) were compared. The total and diffuse reflectance spectra of the reflector materials were measured, the integrated hemispherical and specular solar reflectance values calculated, and the angular distributions of scattered light investigated. Two geometrically identical 3 x concentrating photovoltaic systems with semi-parabolic over edge reflectors of the different materials were tested outdoors. While the anodised aluminium reflector, which had higher hemispherical and specular solar reflectance, resulted in a higher short-circuit current, the low-angle scattering lacquered foil gave a higher fill factor, due to a smoother image of the sun on the module surface, and an equally high calculated annual electricity production. Given its low price, the latter reflector should thus be more cost-effective in low-concentrating photovoltaic systems.
机译:具有镜面抛物面反射器的二维低浓度系统中的光伏模块通常会经历高局部辐射,从而导致高局部电流和电池温度。这通常导致功率损耗。使用低角度散射反射器可使辐照度分布更平滑,从而导致较高的填充系数。为了研究反射器材料的选择如何影响系统性能,比较了两种不同的反射器材料(阳极氧化铝和层压在塑料基板上的上漆铝卷)。测量了反射器材料的全反射光谱和漫反射光谱,计算了半球和镜面太阳的积分反射率值,并研究了散射光的角度分布。在户外测试了两个几何形状相同的3x聚光光伏系统,它们具有不同材料的半抛物线型边缘反射器。虽然具有较高的半球和镜面太阳反射率的阳极氧化铝反射器会产生较高的短路电流,但由于组件表面上的太阳图像更平滑,因此低角度散射漆膜的填充系数更高,计算出的年发电量也很高。由于其价格低廉,因此后者的反射器在低浓度光伏系统中应更具成本效益。

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