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Impact of distributed power electronics on the lifetime and reliability of PV systems

机译:分布式电力电子产品对光伏系统寿命与可靠性的影响

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摘要

This paper quantifies the impact of distributed power electronics in photovoltaic (PV) systems in terms of end-of-life energy-capture performance and reliability. The analysis is based on simulations of PV installations over system lifetime at various degradation rates. It is shown how module-level or submodule-level power converters can mitigate variations in cell degradation over time, effectively increasing the system lifespan by 5-10 years compared with the nominal 25-year lifetime. An important aspect typically overlooked when characterizing such improvements is the reliability of distributed power electronics, as power converter failures may not only diminish energy yield improvements but also adversely affect the overall system operation. Failure models are developed, and power electronics reliability is taken into account in this work, in order to provide a more comprehensive view of the opportunities and limitations offered by distributed power electronics in PV systems. It is shown how a differential power-processing approach achieves the best mismatch mitigation performance and the least susceptibility to converter faults. Copyright (C) 2017 John Wiley & Sons, Ltd.
机译:本文在寿命结束能量捕获性能和可靠性方面量化了分布式电力电子器件的影响。分析基于各种降解速率的系统寿命上的PV装置的模拟。显示了模块级或子模块级功率转换器如何减轻电池劣化的变化,随着时间的推移,与标称25年的终身相比,有效地将系统寿命增加5到10年。当表征这种改进时通常被忽略的一个重要方面是分布式电力电子设备的可靠性,因为电力转换器故障可能不仅可以减少能量产量而改进,而且对整个系统操作也不利影响。开发了故障模型,在这项工作中考虑了电力电子设备可靠性,以便更全面地了解PV系统中分布式电力电子提供的机会和限制。示出了差分电力处理方法如何实现最佳的失配性能和对转换器故障的最小易感性。版权所有(c)2017 John Wiley&Sons,Ltd。

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