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首页> 外文期刊>Solar Energy >Performance of CPV modules based on vertical multi-junction cells under non-uniform illumination
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Performance of CPV modules based on vertical multi-junction cells under non-uniform illumination

机译:基于垂直多结电池的CPV模块在非均匀照明下的性能

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High-voltage silicon Vertical Multi-Junction (VMJ) cells can accept high concentration with peak efficiency potentially reaching close to 30%. Dense-array modules with high-voltage cells should allow a parallel connection with voltage matching rather than series connection with current matching, leading to lower mismatch losses under non-uniform illumination. The performance of a dense array with VMJ cells connected in parallel under non-uniform illumination is investigated, in comparison to a module with conventional cells connected in series. The incident flux distribution corresponds to that of a parabolic dish with and without a homogenizer. The number of junctions in each VMJ cell is a free parameter for optimization. The results show a clear advantage of the VMJ module over the conventional module under non-uniform illumination, allowing reduction or even elimination of homogenizing secondary optics, and easing the tracking accuracy requirements.
机译:高压硅垂直多结(VMJ)电池可以接受高浓度,峰值效率可能接近30%。具有高压电池的致密阵列模块应允许电压匹配的并联连接,而不是电流匹配的串联连接,从而在不均匀照明下降低失配损耗。与具有串联连接的常规单元的模块相比,研究了在不均匀照明下具有并联连接的VMJ单元的密集阵列的性能。入射通量分布对应于带有和不带有均质器的抛物线形碟形天线。每个VMJ单元中的结数是用于优化的免费参数。结果表明,在非均匀照明条件下,VMJ模块相对于传统模块具有明显优势,可以减少甚至消除均质化的二次光学器件,并满足跟踪精度要求。

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