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Transient Behaviors of Multiscale Megawatt Power Electronics Systems—Part I: Characteristics and Analysis

机译:多尺度兆瓦电力电子系统的瞬态行为—第一部分:特性和分析

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With the rapid development of the electric power grid and high-power tractions, megawatt power electronics technology is receiving tremendous attentions across the globe. The major obstacles to its further development still exist in enhancing its capability and reliability. Technical challenges and opportunities of megawatt power electronics are summarized first. It points out that the electromagnetic transient behaviors, especially at the short-timescales, are the main challenges. The transient behaviors of power electronics systems manifest themselves in the main-power loop, gate-drive loop, and control loop. After a detailed discussion of the transient behaviors, it is concluded that focusing on the multiscale transient behaviors can lead to significant overall performance improvement. A new perspective on the power electronics theory and techniques will lead to the development of a methodology for the analysis, design, and control of megawatt power electronics converters with significant improvements.
机译:随着电网和大功率牵引力的飞速发展,兆瓦级功率电子技术正受到全球的广泛关注。增强其功能和可靠性仍然是其进一步发展的主要障碍。首先总结了兆瓦级功率电子技术的技术挑战和机遇。它指出,电磁瞬态行为,尤其是在短时间尺度上,是主要的挑战。电力电子系统的瞬态行为表现在主电源环路,栅极驱动环路和控制环路中。在详细讨论了瞬态行为之后,可以得出结论,专注于多尺度瞬态行为可以导致整体性能的显着改善。关于电力电子理论和技术的新观点将导致对兆瓦电力电子转换器进行分析,设计和控制的方法的发展,并且具有重大改进。

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