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Temperature accelerated life test on commercial concentrator III-V triple-junction solar cells and reliability analysis as a function of the operating temperature

机译:商用聚光器III-V三结太阳能电池的温度加速寿命测试以及可靠性分析与工作温度的关系

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A temperature accelerated life test on commercial concentrator lattice-matched GaInP/GaInAs/Ge triple-junction solar cells has been carried out. The acceleration of the aging has been accomplished by subjecting the solar cells at temperatures markedly higher than the nominal working temperature inside a concentrator, and the nominal photo-current condition (820 X) has been emulated by injecting current in darkness. Three tests at different temperatures have been carried out. The failure distributions across the three test temperatures have been fitted to an Arrhenius-Weibull model. An Arrhenius activation energy of 1.59eV was determined from the fit. The reliability functions and parameters of these solar cells at two nominal working conditions (80and100 degrees C) have been obtained. In both cases, the instantaneous failure rate function monotonically increases, that is, the failures are of the wear-out kind. We have also observed that the reliability data are very sensitive to the nominal temperature condition. In fact, at a nominal working condition of 820 X and 80 degrees C, assuming that the concentration module works 5h per day, the warranty time obtained for a failure population of 5% has been 113years. However, for a nominal working condition of 820 X and 100 degrees C, the warranty time obtained for a failure population of 5% has been 7years. Therefore, in order to offer a long-term warranty, the working temperature could be a key factor in the design of the concentration photovoltaic systems. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:已经对商品集中器晶格匹配的GaInP / GaInAs / Ge三结太阳能电池进行了温度加速寿命测试。通过使太阳能电池处于明显高于集中器内部标称工作温度的温度下,可以实现老化的加速,并且通过在黑暗中注入电流来模拟标称光电流条件(820 X)。已经在不同温度下进行了三个测试。在三个测试温度下的故障分布已拟合到Arrhenius-Weibull模型。由拟合确定Arrhenius活化能为1.59eV。这些太阳能电池在两个标称工作条件(80和100摄氏度)下的可靠性函数和参数已经获得。在这两种情况下,瞬时故障率函数都单调增加,也就是说,故障属于磨损类型。我们还观察到可靠性数据对标称温度条件非常敏感。实际上,在额定工作条件为820 X和80摄氏度的情况下,假设浓缩模块每天工作5h,则对于5%的故障人群获得的保修时间为113年。但是,对于820 X和100摄氏度的额定工作条件,对于5%的故障率,保修时间为7年。因此,为了提供长期保修,工作温度可能是集中式光伏系统设计的关键因素。版权所有(c)2014 John Wiley&Sons,Ltd.

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