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Ground fault location testing of a noise pattern based approach on an ungrounded DC system

机译:不接地直流系统中基于噪声模式的接地故障定位测试

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Finding the phase to ground faults in ungrounded distribution systems is very difficult and time consuming. In recent years, the advances in power electronics favor DC distribution, especially for transportation systems such as ships. Therefore, this paper presents a fault location approach which is based on the pattern recognition of inherent high frequency noise associated with switching events of converters. This paper demonstrates the feasibility of the approach through hardware laboratory test. Specifically, a low voltage DC system, representative of the salient high frequency behavior of a real Zonal Electrical Distribution System for ships was used. Closely matching the results obtained from a computer simulation model of the circuitry, the experimental test results show the ability of the approach to appropriately differentiate various fault locations in the laboratory environment. It is concluded that the approach is feasible and can be applied towards the development of an effective ground fault location system for converter dominated DC systems.
机译:在不接地的配电系统中查找相接地故障非常困难且耗时。近年来,电力电子技术的进步有利于直流配电,特别是对于船舶等运输系统。因此,本文提出一种故障定位方法,该方法基于与转换器的开关事件相关的固有高频噪声的模式识别。本文通过硬件实验室测试证明了该方法的可行性。具体而言,使用了低压直流系统,该系统代表了真正的船舶区域配电系统的显着高频行为。实验测试结果与从电路的计算机仿真模型获得的结果紧密匹配,表明该方法能够适当地区分实验室环境中的各种故障位置。结论是,该方法是可行的,并且可以用于开发用于变流器为主的DC系统的有效接地故障定位系统。

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