A passive current limiter for power semiconductor protection

M. Iwahara, S. Yamada, F. Dawson, G. Fillion
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引用次数: 6

Abstract

Static power converters are being used increasingly in power system applications. The power semiconductor switches within these converter systems accommodate power system fault overvoltages. Significant cost reductions can be attained by reducing the magnitude of power system fault currents. In this paper, the authors propose the use of a novel passive current limiter to accomplish this task. The limiter consists of two magnetic devices connected in series and in magnetic counter opposition to each other. Each magnetic device consists of three slices of NdFeB permanent magnet material sandwiched between the three end poles of two ferrite E cores. Experimental and finite element results are presented and are found to be in good agreement with each other. The need for 3D modeling in the future is demonstrated. The operating characteristics of the current limiter are experimentally verified using a scaled down version of a power system.
一种用于功率半导体保护的无源限流器
静态电源变换器在电力系统中的应用越来越广泛。这些转换器系统中的功率半导体开关可适应电力系统故障过电压。通过减小电力系统故障电流的大小,可以显著降低成本。在本文中,作者提出使用一种新的无源限流器来完成这项任务。该限幅器由两个磁性装置串联而成,并以磁性反方向相互连接。每个磁性装置由三片NdFeB永磁体材料夹在两个铁氧体E磁芯的三个端极之间组成。给出了实验结果和有限元计算结果,两者吻合较好。论证了未来对三维建模的需求。电流限制器的工作特性是通过实验验证使用缩小版本的电力系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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