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Prognostic Reliability Analysis of Power Electronics Modules

机译:电力电子模块的预后可靠性分析

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摘要

This paper describes a physics-of-failure (PoF) based prognostic method for power electronics modules (PEMs). Differing from the traditional reliability prediction methods, this approach allows the reliability performance of PEMs to be assessed in real time. Four techniques have been used to develop this method, they are: (1) Compact electro-thermal model (2) Rainflow counting algorithm (3) Compact thermo-mechanical model and (4) Lifetime consumption model. As a demonstration, this method has been applied to a typical IGBT half bridge module and solder joint fatigue was assumed as the major failure mechanism. In this application, a random electric current load profile was generated in laboratory environment and used to derive the thermal loading condition for the module. Due to the randomness of the load profile, rainflow counting method was used to reduce the continuous load profile into discrete sets of thermal cycles. The damage induced in each temperature cycle was calculated via a compact thermo-mechanical model, and used in the lifetime model to calculate the PEMs lifetimes under simple cyclic loading conditions. Based on these predicted lifetimes and the linear damage accumulation rule, the total consumed life of the PEMs over the whole period of usage was predicted.
机译:本文介绍了一种基于故障物理学(PoF)的电力电子模块(PEM)预后方法。与传统的可靠性预测方法不同,此方法允许对PEM的可靠性性能进行实时评估。已使用四种技术来开发此方法,它们是:(1)紧凑的电热模型(2)雨水流量计算算法(3)紧凑的热机械模型和(4)寿命消耗模型。作为演示,此方法已应用于典型的IGBT半桥模块,并且假定焊点疲劳是主要的故障机理。在此应用中,在实验室环境中生成了随机电流负载曲线,并将其用于导出模块的热负载条件。由于负荷分布的随机性,雨水流量计算方法用于将连续负荷分布减少为离散的热循环集。通过紧凑的热机械模型计算出每个温度循环中引起的损伤,并将其用于寿命模型中,以计算简单循环载荷条件下的PEM寿命。基于这些预测的寿命和线性损伤累积规则,可以预测PEM在整个使用期间的总消耗寿命。

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