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A novel approach of accelerated ageing tests for high concentration III-V multijunction solar cells through rapid irradiation/thermal cycles

机译:通过快速辐照/热循环加速高浓度III-V多结太阳能电池老化测试的新方法

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摘要

Today, investigations on degradation and failure mechanisms in solar cells are often based on accelerated ageing tests (AAT), where failure effects are reproduced and quantified within a much shorter time period than the actual lifetime. This paper presents a study upon a novel approach of AAT for high concentration photovoltaic (HCPV) cells. The intended approach aims to overcome several limitations encountered in most of the AAT adopted up today, proposing the use of an alternative experimental set-up for performing nearly 400 times faster and more realistic thermal cycles, under real sun conditions (irradiation cycling), without the involvement of any environmental chamber. The cumulative impact of such very rapid irradiation/thermal cycles on the ageing of HCPV assemblies can be determined, both quantitatively and qualitatively, by evaluating specific pre-ageing and post-ageing diagnostic measurements by means of I-V characterization and scanning acoustic microscopy (SAM). The proposed irradiation/thermal cycling arrangement was successfully employed for performing accelerated ageing of both HCPV assemblies (cell receiver and heat sink) and bare HCPV cell receivers. Ultimate goal of this AAT approach is to provide the basis for a future work on the reliability analysis of the main degradation mechanisms and failure propagation in HCPV cell assemblies. (c) 2015 Elsevier Ltd. All rights reserved.
机译:如今,对太阳能电池退化和故障机理的研究通常基于加速老化测试(AAT),在该测试中,可以在比实际寿命短得多的时间内重现并量化故障影响。本文介绍了一种用于高浓度光伏(HCPV)电池的AAT新方法的研究。预期的方法旨在克服当今大多数采用的AAT所遇到的一些局限性,建议使用替代的实验装置,在真实的阳光条件下(照射循环),以近400倍的速度和更逼真的热循环进行实验,而无需任何环境室的参与。可以通过IV表征和扫描声显微镜(SAM)评估特定的老化前和老化后诊断测量结果,从而定量和定性地确定这种非常快速的照射/热循环对HCPV组件老化的累积影响。 。所建议的辐射/热循环装置已成功用于HCPV组件(电池接收器和散热器)和裸HCPV电池接收器的加速老化。这种AAT方法的最终目标是为HCPV电池组件中主要降解机理和故障传播的可靠性分析的未来工作提供基础。 (c)2015 Elsevier Ltd.保留所有权利。

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