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Combined DFT and Fuzzy Based Faulty Phase Selection and Classification in a Series Compensated Transmission Line

机译:串联补偿传输线组合DFT和基于模糊的故障相位选择和分类

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The conventional distance protection scheme malfunctions sometimes in case of a fixed series capacitor compensated transmission line due to the change in relaying impedance of the protected line during faulty conditions. In order to mitigate this problem, a combined discrete Fourier transform and fuzzy (CDFTF) based algorithm has been proposed in this paper. This method has been tested on a 400km, 735kV series compensated transmission line network and WSCC 3-machine 9-bus system for all fault types using MATLAB/Simulink and PSCAD platforms, respectively. A fixed series capacitor is located at the middle of the protected line. The fundamental components of phase currents, phase voltages, and zero-sequence current are fed as inputs to the proposed scheme. The fault detection, faulty phase selection, and fault classification are achieved within 1/2-1 cycle of power frequency. The proposed CDFTF-based scheme is less complex and is better than other data mining techniques which require huge training and testing time. Test results corroborate the proposed scheme reliability with wide variations in fault location, fault resistance, fault inception angle, evolving faults, compensation level, and heavy load interconnection. The results discussed in this work indicate that the proposed technique is resilient to wide variations in fault and system conditions.
机译:由于在故障条件下,有时在固定串联电容器补偿传输线的情况下发生常规距离保护方案故障。为了缓解该问题,本文提出了一种组合的离散傅里叶变换和基于模糊(CDFTF)的算法。使用Matlab / Simulink和PSCAD平台分别在400km,735kV系列补偿传输线路网络和WSCC 3机9总线系统上测试了该方法。固定系列电容位于受保护线的中间。相电流,相电压和零序电流的基本组件被馈送为所提出的方案的输入。故障检测,故障相位选择和故障分类在功率频率的1/2-1周期内实现。所提出的基于CDFTF的方案更加复杂,比其他需要巨大训练和测试时间的数据挖掘技术更好。测试结果通过宽变化的故障定位,故障,故障成立角,不断变化,补偿水平和重载互连的宽变化来证实所提出的方案可靠性。在本工作中讨论的结果表明,所提出的技术在故障和系统条件的广泛变化中是有弹性的。

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