基于晶闸管控制串联补偿器的输电线路功率摆动故障检测新方法

Sonali Akolkar, H. Jariwala
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摘要

在超高压(EHV)输电网络中实现数字距离继电器,以实现快速、可靠的故障检测。但它不应该在被称为能量波动的缓慢瞬变情况下被激活。但是,当功率摆动过程中出现任何类型的故障时,继电器都要感知到故障情况,并向相应的断路器发出脱扣指令。由于串联电容及其保护的金属氧化物压敏电阻(MOV)产生的瞬变,使得带TCSC的输电网络在功率摆幅情况下的故障检测变得更加复杂。本文首先研究了不同补偿度和发射角值时,TCSC对距离继电器运行的影响。在此基础上,提出了一种基于离散小波变换的快速故障和摆动分类算法,该算法可以在第一分解水平和0.001秒内检测出慢速和快速功率摆动的所有类型的故障。该算法利用蜜蜂优化算法(HBOA)优化了摆动和故障感知的阈值。在MATLAB软件中对该算法进行了编码,并利用MATLAB Simulink环境和sim电源系统工具箱构建了包含400kV, 50Hz并联传输线网络和TCSC的测试系统。通过改变TCSC补偿水平和发射角值,对高/低电阻故障、对称/不对称故障和近端/远端故障进行了测试。仿真结果证明了该方法对摆振和故障分类的准确性。
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A Novel Methodology for Fault Sensing in Presence of Power Swing for Transmission Line with Thyristor Controlled Series Compensator
Digital distance relaying is implemented in extra high voltage (EHV) transmission network for speedy and reliable fault detection. But it should not activate in case of slow transients known as power swings. However, for occurrence of any type of fault during power swing, the relay should sense the faulty condition and send trip command to concerned circuit breaker. The detection of fault in a transmission line network with TCSC during the power swing condition has become further complex due to transients generated by series capacitor and the metal–oxide varistor (MOV) protecting it. This paper firstly presents effect of TCSC on distance relay operation for varied TCSC degree of compensation and firing angle values. Further, a discrete wavelet transform-based fast acting fault and swing classification algorithm is proposed which can sense all types of faults during slow as well as fast power swing in first decomposition level and within 0.001 sec. The proposed utilizes optimized threshold values both for swing and fault sensing by using Honey Bee Optimization Algorithm (HBOA). The proposed novel algorithm is coded in MATLAB software and the test system comprising of 400kV, 50Hz parallel transmission line network along with TCSC is built using MATLAB Simulink environment with sim power systems toolbox. It is tested for high/low resistance faults, symmetrical/asymmetrical faults and close-in/far end faults by changing TCSC compensation level and firing angle value. The simulation results prove the accuracy of proposed methodology for swing and fault classification.
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