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Thermal and Electrical Effects Caused by Outdoor Hot-spot Testing in Associations of Photovoltaic Cells

机译:光伏电池关联中的室外热点测试引起的热和电效应

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摘要

An outdoor test facility has been prepared for the evaluation of the thermal and electrical effects caused by outdoor hot-spot testing in crystalline silicon modules. Five module types have been subjected to an outdoor test programme with the purpose of analyzing their hot-spot endurance. The worst-case cell in each module type has been detected by laboratory characterisation under reverse-bias operation of all the module, have been operated at different shading fractions with bypass diodes around 18 or 24 cells. A data acquisition system has monitored temperatures and current flows during the day, completing the tests via infrared characterisation during the hours of maximum irradiance. The influence of the type of module, the number of cells per bypass diode, the position and amount of shading and the leakage current of the cell is presented. This information is useful for cell and module manufacturers and system installers who must select the necessary protection criteria to guarantee long lifetimes for PV systems; it also helps to clarify hot-spot testing procedures in international standards. Copyright ~C 2003 John Wiley & Sons, Ltd.
机译:已经准备了一个室外测试设备,用于评估由晶体硅模块中的室外热点测试引起的热和电效应。五个模块类型已经过户外测试程序,目的是分析其热点耐久性。在所有模块的反向偏置操作下,通过实验室表征已经检测到每种模块类型中最坏情况的电池,并在不同的阴影部分下使用约18或24个电池的旁路二极管进行操作。数据采集​​系统可以监控白天的温度和电流,并在最大辐照小时内通过红外表征完成测试。给出了模块类型,每个旁路二极管的电池数量,阴影的位置和数量以及电池泄漏电流的影响。该信息对于必须选择必要的保护标准以确保光伏系统寿命长的电池和模块制造商以及系统安装人员有用。它还有助于阐明国际标准中的热点测试程序。版权所有〜C 2003 John Wiley&Sons,Ltd.

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