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Power electronic converter reliability and prognosis review focusing on power switch module failures

机译:电力电子转换器可靠性和预测综合评注电源开关模块故障

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摘要

The current trend is to go for more electric systems that rely extensively on power electronics such as EVs/HEVs and electric aircrafts, along with an increased use of renewable energy resources and variable speed motor drives. However, some field failure reports have revealed that power electronic converters represent the weakest point in these systems. A significant percentage of system failures are due to power electronic converter failures, which compromises systems reliability. This raises questions regarding the validity of relying on the current power electronic converter technology to run mission-critical/must-to-be-safe systems. Although power electronic converter technology has reached an advanced level in terms of efficiency, power density, and control, extra work should be done when it comes to reliability. Reliability engineering brings performing failure data analysis, accelerated life testing, lifetime prediction, and the implementation of efficient maintenance and reliability improvement schemes into an integrated process. This process is meant to enhance the reliability of a product throughout its life cycle. This paper provides an overview of the application of the key aspects of new approaches in reliability engineering for power electronic converters. The focus of this paper is on power switch bond-wire modules since they are the most vulnerable component in power electronic converters. This paper also proposes two general schemes for condition-based remaining useful lifetime (RUL) that are discussed in detail.
机译:目前的趋势是为更多的电动系统依赖于电力电子产品,例如EVS / HEV和电动机,以及可再生能源和可变速度电动机驱动器的使用增加。然而,一些现场故障报告显示电力电子转换器代表这些系统中最弱的点。大量的系统故障是由于电力电子转换器故障,这会损害系统可靠性。这提出了关于依赖于当前电力电子转换技术的有效性的问题,以运行关键任务/必安全系统。虽然电力电子转换器技术在效率,功率密度和控制方面达到了高级水平,但在可靠性方面应进行额外的工作。可靠性工程带来了执行故障数据分析,加速寿命测试,寿命预测,以及实现高效维护和可靠性改进方案的实现。该过程旨在提高整个生命周期的产品的可靠性。本文概述了电力电子转换器可靠性工程中新方法的关键方面的应用。本文的重点是电源开关键合线模块,因为它们是电力电子转换器中最脆弱的组件。本文还提出了两个用于详细讨论的条件的剩余有用的寿命(RUL)的一般方案。

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