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Detection of Transmission Line Faults in the Presence of Thyristor Controlled Reactor Using Discrete Wavelet Transform

机译:使用离散小波变换在晶闸管控制反应器存在下检测传输线故障

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The transmission line relaying is an extremely important device used to provide the protection of transmission and distribution of the power system. The relays must operate as fast as and as accurate as possible to switch off the faulted line in order to protect the system against the harmful faulty effects. The wide spread use of power electronics based devices in the power system has made the protection issue critical. The power system faults do occur in power system network and are more frequent in transmission and distribution systems. The behaviour of the faults changes in the presence of FACTS devices. This paper presents the detection of power system faults in the presence of thyristor controlled reactor (TCR). The power system faults such as line to ground (LG), double line (LL), double line to ground (LLG) and three phase fault involving ground (LLLG) have been investigated. An algorithm based on discrete wavelet transform has been utilized for detection of faults under investigation. The current drawn by the load in the presence of TCR and voltage at the point of common coupling (PCC) have been found to be key features for detection of power system faults. The study has been performed using a test system and results have been validated in MATLAB/Simulink environment.
机译:传输线路中继是一种极其重要的装置,用于提供电力系统的传输和分配的保护。继电器必须尽可能快地运行,以便尽可能快地关闭故障线,以便保护系统免受有害错误的效果。电力系统中的电力电子设备的广泛应用使得保护问题至关重要。电力系统网络中的电力系统故障确实发生在传输和分配系统中更频繁。故障的行为在存在事实设备的存在下变化。本文介绍了晶闸管控制反应器(TCR)存在下电力系统故障的检测。已经研究了电源系统故障,如地面(LG),双线(LL),接地(LLG)和涉及地面(LLLG)的三相故障。一种基于离散小波变换的算法已经用于检测调查的故障。已经发现通过CTCR和电压在共同耦合点(PCC)的电压下汲取的电流是用于检测电力系统故障的关键特征。该研究已经使用测试系统进行,结果已在Matlab / Simulink环境中验证。

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