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Overview of Real-Time Lifetime Prediction and Extension for SiC Power Converters

机译:SIC电源转换器的实时寿命预测和扩展概述

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Remaining useful lifetime prediction and extension of Si power devices have been studied extensively. Silicon carbide (SiC) power devices have been developed and commercialized. Specifically, SiC mosfets have been utilized for the next generation high-voltage, high-power converters with smaller size and higher efficiency, covering various mainstream applications, including photovoltaic systems, electric vehicles, solid-state transformers, and more electric ships and airplanes. However, the SiC-based devices have different failure modes and mechanisms compared with Si counterparts. Therefore, a comprehensive review is critical to develop accurate lifetime prediction and extension strategies for SiC power converter systems. The SiC power device component-level failure modes and mechanisms are first investigated. Different accelerated lifetime tests and component-level lifetime models are then compared. Power converter system-level offline lifetime modeling techniques and software tools are further summarized. Besides, the SiC power converter condition monitoring strategies and health indicators are surveyed. The online measurement challenges are also studied. Furthermore, the system-level lifetime extension strategies are reviewed. By integrating device physics, statistical modeling, reliability engineering, and mechanical engineering with power electronics, this article is intended to provide a comprehensive overview, address existing challenges, and unfold new research opportunities regarding the SiC power converter real-time lifetime prediction and extension.
机译:已经广泛研究了SI功率器件的剩余有用的寿命预测和扩展。已经开发和商业化了碳化硅(SIC)功率器件。具体地,SiC MOSFET已经用于下一代高压,高功率转换器,具有较小尺寸和更高效率,覆盖各种主流应用,包括光伏系统,电动车辆,固态变压器和更多电船和飞机。然而,与SI对应物相比,基于SIC的器件具有不同的故障模式和机制。因此,全面的审查对于为SIC电源转换系统开发准确的寿命预测和扩展策略至关重要。首先研究SIC电源设备组件级故障模式和机制。然后比较不同的加速寿命试验和组分级寿命模型。电源转换器系统级离线终身建模技术和软件工具进一步汇总。此外,调查了SIC电源转换器状态监测策略和健康指标。还研究了在线测量挑战。此外,审查了系统级寿命扩展策略。通过将设备物理学,统计建模,可靠性工程和机械工程与电力电子集成,本文旨在提供全面的概述,解决了现有的挑战,并展开了关于SIC电源转换器的实时寿命预测和扩展的新研究机会。

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