Yao Da, M. Gries, Colin Hermann
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摘要

高阻接地(HRG)是通过高阻对三相配电系统中性点进行接地。这种接地方案限制了接地短路电流,允许在单相接地故障的情况下继续运行。自20世纪70年代以来,HRG在需要接地容错操作的连续加工工业中变得普遍。有源前端(AFE)变换器是一种交直流变换器,其中用固态开关代替三相整流器中的二极管桥,并在线路和固态开关之间安装线路滤波器。AFE允许双向功率流,通常被控制以保持接近统一的功率因数。由于这些特性,afe在需要高功率因数和高能效的应用中越来越受欢迎。特别是在HRG系统中存在接地故障时,AFE具有与二极管前端(DFE)转换器不同的工作特性和现象。如果不仔细考虑系统,则会损害HRG系统的容错特性。迄今为止,对在HRG系统中运行的AFE变换器进行分析的文献有限,也没有发现研究这种情况下接地故障对容错运行影响的文献。本文给出了这一现象,并通过仿真和实验进行了验证,最后讨论了可能的解决方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault Tolerant Operation of Active Front End Converter with High Resistance Grounding System
High resistance grounding (HRG) system grounds the neutral point of a three-phase power distribution system through high resistance. This grounding scheme limits the ground short circuit current allowing continued operation in case of a single phase to ground fault. Since 1970s, HRG has become prevalent in continuous-process industries where ground fault tolerant operation is desired. An Active front end (AFE) converter is an AC-to-DC converter, in which the diode bridge in a threephase rectifier is replaced by solid state switches, and a line filter is installed between the line and the solid state switches. An AFE allows bidirectional power flow and is typically controlled to maintain near unity power factor. Because of these features, AFEs are gaining popularity in applications where high power factor and high energy efficiency are desired. An AFE has different operating characteristics and phenomena than that of a diode front end (DFE) converter particularly when a ground fault is present in an HRG system. If the system is not carefully considered, the fault tolerant feature of an HRG system will be compromised. So far there is limited literature that analyzed an AFE converter operating in HRG systems, and no literature can be found that studied the impact of a ground fault on the fault tolerant operation for this case. In this manuscript, the phenomenon is presented, verified by simulation and experiment, and the potential solution is discussed in the end.
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