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Nonuniformity Sunlight-Irradiation Effect on Photovoltaic Performance of Concentrating Photovoltaic Using Microsolar Cells Without Secondary Optics

机译:使用不带二次光学元件的微太阳能电池的非均匀性日光辐照对聚光光伏性能的影响

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摘要

We propose a compact 20-mm-thick concentrating photovoltaic (CPV) module that is much thinner than conventional CPV modules. To achieve this structure, we assembled a CPV module by placing microsolar cells with an area smaller than 1 mm directly on the back of a lens array. Since our CPV module has no secondary optics, the incident sunlight is focused through the lens array onto the solar cell so that the light intensity is nonuniformly distributed due to chromatic and comatic aberration. In this paper, we analyze the dependence of the short current ( ) and the fill factor of our CPV module on the area, the position, and the intensity distribution of the irradiated sunlight on the solar cell. Our results indicate that the main factor that affects the PV performance of our CPV module is not the sunlight's nonuniform irradiation in the three-junction subcells due to chromatic and comatic aberration but the resistance loss between the emitter layer of the top cell and the grid electrodes.
机译:我们提出了一种紧凑的20毫米厚的聚光光伏(CPV)模块,该模块比常规CPV模块要薄得多。为了实现这种结构,我们通过将面积小于1毫米的微太阳能电池直接放置在透镜阵列的背面来组装CPV模块。由于我们的CPV模块没有辅助光学元件,因此入射的太阳光会通过透镜阵列聚焦到太阳能电池上,从而由于色差和彗差导致光强度不均匀分布。在本文中,我们分析了短路电流()和CPV模块的填充因子对太阳能电池上被照射的阳光的面积,位置和强度分布的依赖性。我们的结果表明,影响CPV模块光伏性能的主要因素不是三结子电池中由于色差和彗差引起的太阳光不均匀照射,而是顶部电池的发射极层与栅极之间的电阻损耗。 。

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