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A new fuzzy fault locator for series compensated transmission lines

机译:一种用于串联补偿输电线路的新型模糊故障定位仪

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Series capacitors (SCs) are installed on long transmission lines to reduce the inductive reactance of the lines. SCs and their associated over-voltage protection devices (typically metal oxide varistors, and/or air gaps) create several problems for distance protection relays and fault locators including voltage and/or current inversion, sub-harmonic oscillations, transients caused by the air-gap flashover and sudden changes in the operating reach. In this paper, using fuzzy logic a simple and accurate fault location algorithm is presented for series compensated transmission lines. The fault region is determined by a fuzzy identifier, firstly. Then the distance to fault is calculated from the fault loop quantities similar to the classic fault locators, but in case of voltages additionally the compensation for the voltage drop across the bank (or banks) of series capacitors is performed. The power system is simulated on a PC using PSCAD software to provide fault data. The fuzzy fault region identifier and fault locator are designed and implemented using MATLAB software. The operating behaviour of the fault locator was assessed using a 400 kV, 400km double end fed simulated transmission line with three phase faults at various locations on the line. It relies totally on locally derived information.
机译:串联电容器(SC)安装在较长的传输线上,以减少线路的感抗。 SC及其相关的过压保护装置(通常是金属氧化物压敏电阻和/或气隙)给距离保护继电器和故障定位器带来了若干问题,包括电压和/或电流反转,次谐波振荡,由空气引起的瞬变。间隙闪络和操作范围的突然变化。在本文中,使用模糊逻辑提出了一种用于串联补偿传输线的简单而准确的故障定位算法。故障区域首先由模糊标识符确定。然后,通过类似于经典故障定位器的故障回路数量,计算出故障距离。但是,在有电压的情况下,还要对串联电容器组中的电压降进行补偿。使用PSCAD软件在PC上模拟电源系统以提供故障数据。使用MATLAB软件设计并实现了模糊故障区域识别器和故障定位器。使用400 kV,400 km双端馈电模拟传输线评估了故障定位器的操作行为,该传输线在线路的各个位置均具有三相故障。它完全依赖本地衍生的信息。

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