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Detection of High-impedance Arcing Faults in Radial Distribution DC Systems

机译:径向分布直流系统中高阻抗电弧故障的检测

摘要

High voltage, low current arcing faults in DC power systems have been researched at the NASA Glenn Research Center in order to develop a method for detecting these 'hidden faults', in-situ, before damage to cables and components from localized heating can occur. A simple arc generator was built and high-speed and low-speed monitoring of the voltage and current waveforms, respectively, has shown that these high impedance faults produce a significant increase in high frequency content in the DC bus voltage and low frequency content in the DC system current. Based on these observations, an algorithm was developed using a high-speed data acquisition system that was able to accurately detect high impedance arcing events induced in a single-line system based on the frequency content of the DC bus voltage or the system current. Next, a multi-line, radial distribution system was researched to see if the arc location could be determined through the voltage information when multiple 'detectors' are present in the system. It was shown that a small, passive LC filter was sufficient to reliably isolate the fault to a single line in a multi-line distribution system. Of course, no modification is necessary if only the current information is used to locate the arc. However, data shows that it might be necessary to monitor both the system current and bus voltage to improve the chances of detecting and locating high impedance arcing faults
机译:NASA Glenn研究中心已对直流电源系统中的高电压,低电流电弧故障进行了研究,以便开发一种在局部加热可能损坏电缆和组件之前,就地检测这些“隐藏故障”的方法。内置了一个简单的电弧发生器,分别对电压和电流波形进行了高速和低速监控,结果表明,这些高阻抗故障会导致直流母线电压的高频分量和直流母线的低频分量显着增加。直流系统电流。基于这些观察结果,使用高速数据采集系统开发了一种算法,该算法能够基于DC总线电压或系统电流的频率内容,准确检测单线系统中引起的高阻抗电弧事件。接下来,研究了多线径向分布系统,以查看当系统中存在多个“检测器”时是否可以通过电压信息确定电弧位置。结果表明,一个小的无源LC滤波器足以将故障可靠地隔离到多线配电系统中的单线中。当然,如果仅使用当前信息来定位电弧,则无需修改。但是,数据表明,可能有必要同时监视系统电流和总线电压,以提高检测和定位高阻抗电弧故障的机会。

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