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Fault identification in AC and DC systems using stft analysis of high frequency components

机译:使用高频分量的stft分析在AC和DC系统中进行故障识别

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Transient response has significant importance for the fault analysis of both the established high voltage AC transmission and upcoming high voltage DC (HVDC) power systems. Due to negligible impact of line inductance, faults in DC power system would result in fast rising currents as compared to its AC counterpart. Thus, the transient current signatures are essentially different in both systems. Hence, a robust and universal fault identification method is of great interest, so that the same relays can be used for both the AC and DC systems. In this paper, Short-Time Fourier Transform (STFT) has been applied for fault identification in the AC and DC power systems. The main idea is to investigate the superposition of the high- frequency components during the transient period. Transient signals both from AC and DC systems are analyzed. The AC fault record was obtained from the power transmission network in South Africa, through the DFR, sampled at 2.5 kHz. For DC grid, the point-to-point system has been simulated and experimentally validated. For the multi-terminal networks, the CIGRE B4 based multi-terminal DC system has been analyzed in PSCAD/EMTDC. Successful application of the STFT-based method substantiates its potential as universal fault identification method for both the AC and DC systems.
机译:瞬态响应对于已建立的高压交流输电和即将到来的高压直流(HVDC)电力系统的故障分析具有重要意义。由于线电感的影响可忽略不计,因此与交流电源相比,直流电源系统中的故障将导致电流快速上升。因此,两个系统中的瞬态电流信号本质上是不同的。因此,一种健壮且通用的故障识别方法引起了人们的极大兴趣,因此相同的继电器可用于交流和直流系统。在本文中,短时傅立叶变换(STFT)已应用于交流和直流电源系统中的故障识别。主要思想是研究瞬态期间高频分量的叠加。分析来自交流和直流系统的瞬态信号。 AC故障记录是通过DFR从南非的输电网络获得的,采样频率为2.5 kHz。对于直流电网,已经对点对点系统进行了仿真和实验验证。对于多终端网络,已经在PSCAD / EMTDC中分析了基于CIGRE B4的多终端DC系统。基于STFT的方法的成功应用证实了其作为AC和DC系统通用故障识别方法的潜力。

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