现代电力电子转换器中的电磁干扰挑战:最新进展和缓解技术

IF 1.9 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Liang Yuan, Jian Zhang, Zheng Liang, Mingxin Hu, Genhua Chen, Wei Lu
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引用次数: 0

摘要

基于电力电子的变换器的利用正在广泛的行业中获得动力。然而,与传统的电力电子变换器相比,现代电力电子变换器在更高的频率下工作,这可能导致在相位切换期间电压和电流的更高变化率,从而可能产生更严重的传导和辐射电磁干扰(EMI)。它们的电磁兼容性(EMC)已成为一个重要的研究课题,而高频电力电子变换器中的电磁干扰比传统变换器中的电磁干扰更为复杂。本文综述了最新进展、电磁干扰设计和现代电力电子变换器的分析,重点介绍了传导和辐射电磁干扰的来源和机制,以及缓解技术。本文还介绍了拓扑优化、控制策略设计和封装设计对EMC性能的影响。解决基于现代电力电子器件的变换器中新出现的电磁干扰问题对于确保安全可靠地运行至关重要。通过战略性设计优化和EMI缓解策略的实施,现代转换器可以无缝集成到各种应用中,提供改进的EMI性能作为其多功能性的标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EMI challenges in modern power electronic-based converters: recent advances and mitigation techniques
The utilization of power electronic-based converters is gaining momentum across a wide spectrum of industries. However, modern power electronic converters operate at higher frequencies compared to conventional power electronic converters, which can lead to higher rates of change in voltage and current during phase switching, and thus potentially produce more severe conducted and radiated electromagnetic interference (EMI). Their electromagnetic compatibility (EMC) has become a critical research topic, and EMI in high-frequency power electronic-based converters is more complex than that in conventional converters. This review presents a comprehensive survey of recent advancements, EMI design, and analysis of modern power electronic-based converters, focusing on the sources and mechanisms of both conducted and radiated EMI, and mitigating techniques. This review also covers the impact of topology optimization, control strategy design, and packaging design on EMC performance. Addressing emerging EMI issues in modern power electronic device-based converters is essential for ensuring safe and reliable operations. Through strategic design optimization and the implementation of EMI mitigation strategies, modern converters can seamlessly be integrated into diverse applications, offering improved EMI performance as a hallmark of their versatility.
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