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Numerical junction temperature calculation method for reliability evaluation of power semiconductors in power electronics converters

机译:电力电子转换器功率半导体可靠性评估数值结温计算方法

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摘要

The junction temperature of power semiconductors is a critical parameter during reliability evaluation. The incorporation of long-term mission profiles, such as power loadings and ambient temperature, into lifetime and reliability evaluations of power semiconductors increases the computational burden. Thus, there is an urgent need for a more accurate method for junction temperature acquisition. Current methods for junction temperature calculation are computationally inefficient and do not comprehensively incorporate long-term factors into junction temperature calculation and power semiconductor reliability evaluation. Here, a junction temperature calculation method is proposed that enables reliability evaluation for insulated gate bipolar transistor (IGBT) power semiconductors. This approach calculates the IGBT module junction temperature on the basis of an electro-thermal analogy using Gauss-Seidel iteration. When compared with electrical-thermal simulation and other numerical calculation methods, the proposed method guarantees accuracy, while greatly reducing the computational time and load. A performance comparison between the proposed method, electro-thermal simulation based on a Fuji IGBT simulator, and experimental results was carried out using a three-phase DC/AC inverter as a case study.
机译:功率半导体的结温是可靠性评估期间的关键参数。长期使命概况(例如电源载荷和环境温度)的融合成寿命和功率半导体的可靠性评估增加了计算负担。因此,迫切需要更准确的结温采集方法。电流结温计算方法是计算效率低下,并且不综合地将长期因素纳入结温计算和功率半导体可靠性评估。这里,提出了一种结温计算方法,其能够实现绝缘栅双极晶体管(IGBT)功率半导体的可靠性评估。该方法基于使用高斯 - Seidel迭代的电热模糊来计算IGBT模块结温。与电热仿真和其他数值计算方法相比,所提出的方法可确保精度,同时大大降低计算时间和负载。基于FUJI IGBT模拟器的提出方法,电热模拟与实验结果的性能比较,采用三相DC / AC逆变器作为案例研究进行。

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