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A test bench for accelerated thermal ageing of III–V concentration solar cells using forward bias injection

机译:使用前向偏压注入加速III–V浓度太阳能电池热老化的试验台

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Power production from solar photovoltaic systems is constantly increasing. In the last few years concentration photovoltaic (CPV) system using III–V multijunction cells appeared on the market, promising doubled efficiencies compared to traditional silicon PV solar panels. For CPV systems to be competitive on the market, they must be reliable to assure long-term operation. This paper presents the design and construction of a test bench for thermal cycling characterization of dense array receivers employing III–V multijunction cells mounted on a microchannel heat sink. Instead of a climatic chamber, the proposed test bench employs forward bias injection (FBI) to heat the cells, in order to better mimic on-field operating conditions. The experimental results of the accelerated ageing test are coherent with preliminary on-field trials, with a good agreement on the fault mechanism.
机译:太阳能光伏系统的发电量正在不断增加。在最近几年中,使用III–V多结电池的聚光光伏(CPV)系统出现在市场上,与传统的硅PV太阳能电池板相比,有望实现双倍的效率。为了使CPV系统在市场上具有竞争力,它们必须可靠以确保长期运行。本文介绍了用于安装在微通道散热器上的III–V多结电池对密集阵列接收器进行热循环表征的测试台的设计和构建。为了更好地模拟现场工作条件,建议的试验台采用了正向偏压注入(FBI)来代替电池室,以加热电池。加速老化试验的实验结果与初步的现场试验相吻合,在故障机理上也有很好的一致性。

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