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Analysis of Power Loss for Crystalline Silicon Solar Module during the Course of Encapsulation

机译:晶体硅太阳能电池封装过程中的功率损耗分析

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During the course of solar module encapsulation, the output power of crystalline silicon solar module is less than the sum of the maximum output power of the constituents because of power loss. So it is very important to investigate the power loss caused by encapsulation materials and module production process. In this paper, the power loss of crystalline silicon solar module is investigated by experiments systematically for the first time. It is found that the power loss is mainly caused by the resistance of ribbon and mismatch of solar cells; the total power loss is as high as 3.93% for solar module composed of 72 cells (125 mm × 125 mm) connected in series. Analyzing and reducing the power losses are beneficial to optimizing encapsulation process for the solar module. The results presented in this study give out a direction to decreasing power loss and optimizing encapsulation process of crystalline silicon solar module.
机译:在太阳能模块封装的过程中,由于功率损耗,晶体硅太阳能模块的输出功率小于组分的最大输出功率之和。因此,研究由封装材料和模块生产过程引起的功率损耗非常重要。本文首次通过系统的实验研究了晶体硅太阳能电池组件的功率损耗。发现功率损耗主要是由带状电阻和太阳能电池的失配引起的。由串联连接的72个电池(125 mm×125 mm)组成的太阳能模块,总功率损耗高达3.93%。分析和减少功率损耗有利于优化太阳能模块的封装工艺。这项研究提出的结果为降低功率损耗和优化晶体硅太阳能电池组件的封装工艺提供了方向。

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