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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Arc flash fault detection in wind farm collection feeders based on current waveform analysis
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Arc flash fault detection in wind farm collection feeders based on current waveform analysis

机译:基于电流波形分析的风电场收集馈电电弧闪光故障检测

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摘要

High impedance faults (HIFs) are easy to occur in collective feeders in wind farms and may cause the cascading of wind generators tripping. This kind of faults is difficult to be detected by traditional relay or fuse due to the limited fault current values and the situation is worse in wind farms. The mostly adopted HIF detection algorithms are based on the 3rd harmonic characteristic of the fault zero-sequence currents, whereas these 3rd harmonics are very easy to be polluted by wind power back-to-back converters. In response to this problem, the typical harmonic characteristic of HIF arc flash based on Mayr's arc model is first analyzed, and the typical fault waveforms of HIF in wind farm are presented. Then the performance of the harmonic based HIF detection algorithm is discussed, and a novel detection algorithm is proposed from the viewpoint of time domain, focusing on the convex and concave characteristic of zero-sequence current at zerocrossing points. A HIFs detection (HIFD) prototype implementing the proposed algorithm has been developed. The sensitivity and security of the algorithm are proved by field data and RTDS experiments.
机译:高阻抗断层(HIF)在风电场的集体饲养器中易于发生,可能导致风力发电机的级联绊倒。由于具有有限的故障当前值,传统的继电器或保险丝难以检测这种故障,而风电场的情况差。大多采用的HIF检测算法基于故障零序电流的3RD谐波特性,而这些第3次谐波非常容易被风电源回到后转换器污染。响应于这个问题,首先分析了基于Mayr的弧模型的HIF弧闪算的典型谐波特性,提出了风电场HIF的典型故障波形。然后讨论了谐波基于HIF检测算法的性能,并且从时域的角度提出了一种新的检测算法,专注于Zerocross点处的零序电流的凸起和凹陷特性。已经开发了实现所提出的算法的HIF检测(HIFD)原型。通过现场数据和RTDS实验证明了算法的灵敏度和安全性。

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