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Integrated Impedance-Based Pilot Protection Scheme for the TCSC-Compensated EHV/UHV Transmission Lines

机译:TCSC补偿的超高压/特高压输电线路的基于阻抗的集成先导保护方案

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This paper analyzes the characteristics of equivalent dynamic power frequency impedance of the thyristor-controlled series capacitor (TCSC) and the integrated impedance, which is defined as the ratio of the sum of the voltage phasors across the two ends of the transmission line to the sum of the current phasors through the two ends of the same transmission line. The integrated impedance of the transmission line is used to determine whether there is a fault inside the protected line section or not. When an external fault occurs, the integrated impedance reflects the capacitive impedance of the protected line, its imaginary part is negative, and the absolute value of its imaginary part is large. When an internal fault occurs, the imaginary part of the integrated impedance on the fault phase is either a positive value or a small negative value. According to such characteristics, internal faults can be distinguished from external faults. Based on integrated impedance, a novel pilot protection scheme for the transmission line with TCSC and controllable shunt reactor is presented. Digital simulations based on 750-kV transmission systems show that the presented scheme offers high sensitivity and reliability with many advantages over conventional current differential protection.
机译:本文分析了晶闸管控制串联电容器(TCSC)的等效动态工频阻抗和积分阻抗的特性,积分阻抗定义为传输线两端的电压相量之和与总和之比。通过同一条传输线两端的电流矢量。传输线的积分阻抗用于确定受保护的线段内部是否存在故障。当发生外部故障时,积分阻抗反映了被保护线路的电容性阻抗,其虚部为负,其虚部的绝对值较大。当发生内部故障时,故障相上的积分阻抗的虚部为正值或小的负值。根据这样的特性,可以将内部故障与外部故障区分开。基于积分阻抗,提出了一种新型的带TCSC和可控并联电抗器的输电线路先导保护方案。基于750 kV输电系统的数字仿真表明,与传统的电流差动保护相比,该方案具有较高的灵敏度和可靠性,并具有许多优势。

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