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Design for reliability in power electronics in renewable energy systems – status and future

机译:可再生能源系统中电力电子设备的可靠性设计 - 现状和未来

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摘要

Advances in power electronics enable efficient and flexible interconnection of renewable sources, loads and electric grids. While targets concerning efficiency of power converters are within reach, recent research endeavors to predict and improve their reliability to ensure high availability, low maintenance costs, and therefore, low Levelized-Cost-of-Energy (LCOE) of renewable energy systems. This paper presents the prior-art Design for Reliability (DFR) process for power converters and addresses the paradigm shift to Physics-of-Failure (PoF) approach and mission profile based analysis. Moreover, the lifetime prediction of reliability-critical components IGBT modules is discussed in a 2.3 MW wind power converter.Finally, the challenges and opportunities to achieve more reliable power electronic converters are discussed.
机译:电力电子技术的进步实现了可再生能源,负载和电网的高效灵活的互连。尽管有关功率转换器效率的目标已经可以实现,但最近的研究致力于预测和提高其可靠性,以确保可再生能源系统的高可用性,低维护成本,从而降低能源的平准化成本(LCOE)。本文介绍了用于功率转换器的现有技术的可靠性设计(DFR)过程,并解决了向失效物理(PoF)方法和基于任务概况的分析的范式转变。此外,在2.3 MW风力发电机中讨论了可靠性关键组件IGBT模块的寿命预测,最后讨论了实现更可靠的功率电子转换器的挑战和机遇。

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