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Ac module based on stacked a-Si-alloy and c-Si solar cells: design, technology and performance evaluation

机译:AC模块基于堆叠的A-Si-Alloy和C-Si太阳能电池:设计,技术和性能评估

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Multibandgap photovoltaic conversion is applied to PV modules: the proposed device consists of a semitransparent a-Si module and a c-Si module in a stacked configuration. Solar cells in every layer of the stack are series connected according to the commonly used integration techniques giving rise to two independent circuits, driving specific peak power trackers. A two-stage module inverter provides a single AC output line. The whole structure glass /TCO/ p-i-n (a-Si alloy) /TCO/ sealing polymer/n-p (c-Si)/ Ag is simulated taking into account experimental optical and transport parameters of a-Si alloys in a wide range of compositions. It is shown that a proper design of the device should allow efficiency improvements larger than 20% with respect to c-Si solar cells used in the bottom layer. Cost-benefits analysis is also performed, pointing out that no cost increase is expected (in
机译:多阵列光伏转换应用于PV模块:所提出的装置由半透明A-Si模块和堆叠配置的C-Si模块组成。堆叠的每层的太阳能电池是根据常用的集成技术连接的串联,从而产生两个独立电路,驱动特定的峰值动力跟踪器。两级模块逆变器提供单个交流输出线。将整个结构玻璃/ TCO / P-I-N(A-Si合金)/ TCO /密封聚合物/ N-P(C-Si)/ Ag考虑到各种组合物中A-Si合金的实验光学和运输参数。结果表明,对于在底层中使用的C-Si太阳能电池,设备的适当设计应允许大于20%的效率提高。还执行了成本效益分析,指出预期没有成本增加(在

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