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A non-unit protection scheme for double circuit series capacitor compensated transmission lines

机译:双回路串联电容器补偿传输线的非单元保护方案

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摘要

This paper presents a non-unit protection scheme for series capacitor compensated transmission lines (SCCTL) using discrete wavelet transform and k-nearest neighbor (k-NN) algorithm. All the protective relaying functions such as fault detection, fault classification, faulty phase identification and fault location estimation have been considered in this work. Such a comprehensive work providing all protective relaying functions for protection of double circuit SCCTL utilizing k-NN has not been reported so far. The signal processing and feature extraction are done using discrete wavelet transform due to its capability to differentiate between high and low frequency transient components. For fault detection and classification, only approximate wavelet coefficient of current signal up to level 1 has been used; while for k-NN location estimation, both voltage and current signals of the two circuits are decomposed up to level 3 have been used. Finally, the standard deviation of one cycle pre-fault and one cycle post-fault samples of the approximate wavelet coefficients are calculated to form the feature vector for the k-NN-based algorithm. The performance of the proposed technique is evaluated for large number of fault events with variation in fault type including inter-circuit faults, fault inception angle, fault location and fault resistance. The change in position of series capacitor and different degree of compensation has been discussed. The accuracy of the proposed k-NN-based fault detection and classification module is 100% for all the tested fault cases with a decision period of less than half cycle. The k-NN-based fault location scheme estimates the location of fault with <= 1% error for most of the tested fault cases, which is an exceptional attribute of the proposed scheme as compared with 10-15% error of conventional distance relaying scheme. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种使用离散小波变换和k最近邻(k-NN)算法的串联电容器补偿传输线(SCCTL)的非单元保护方案。这项工作考虑了所有保护继电功能,例如故障检测,故障分类,故障相位识别和故障位置估计。迄今为止尚未报道过这样全面的工作,该工作为使用k-NN保护双回路SCCTL提供了所有保护性继电功能。信号处理和特征提取是使用离散小波变换完成的,因为它具有区分高频和低频瞬态分量的能力。为了进行故障检测和分类,仅使用了电流信号的小波系数,直到1级。而对于k-NN位置估计,两个电路的电压和电流信号都被分解为3级。最后,计算近似小波系数的一周期故障前和一周期故障后样本的标准偏差,以形成基于k-NN的算法的特征向量。针对大量故障事件(具有不同类型的故障,包括电路间故障,故障起始角度,故障位置和故障电阻),评估了所提出技术的性能。讨论了串联电容器位置的变化和不同补偿程度。所提出的基于k-NN的故障检测和分类模块的准确性,对于所有测试过的故障案例,决策周期均小于半个周期,为100%。基于k-NN的故障定位方案在大多数测试故障情况下估计故障位置,误差<= 1%,与常规距离中继方案的10-15%误差相比,这是所提出方案的一个例外属性。 (C)2017 Elsevier B.V.保留所有权利。

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