Estimation of the lifetime consumption of power semiconductors due to power cycling in a photovoltaic inverter

Artjom Gruber, K. Rigbers
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Abstract

This paper deals with the estimation of the lifetime consumption of power semiconductor modules due to power cycling with regard to a 125 kW photovoltaic inverter. The described calculation model takes into account a demanding photovoltaic mission profile, the operating point dependent behavior of the photovoltaic inverter, the amount of parallel semiconductor chips and the cooling system design. Different packaging technologies including state-of-the-art and new technologies with improved power cycling capability are considered based on power cycling diagrams published by semiconductor module manufacturers and the possible influence of the usage of silicon carbide instead of silicon chips is discussed. As a result, the calculated lifetime consumption as a function of the maximum junction temperature of the inverter design is presented.
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光伏逆变器中功率循环对功率半导体寿命消耗的估计
本文研究了125 kW光伏逆变器功率循环对功率半导体模块寿命消耗的影响。所描述的计算模型考虑了苛刻的光伏任务轮廓、光伏逆变器的工作点依赖行为、并行半导体芯片的数量和冷却系统的设计。根据半导体模块制造商公布的功率循环图,考虑了不同的封装技术,包括具有改进功率循环能力的最新技术和新技术,并讨论了使用碳化硅代替硅芯片可能产生的影响。结果,计算出的寿命消耗作为逆变器设计的最高结温的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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