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A faulted side identification scheme-based integrated distance protection for series-compensated transmission lines

机译:基于故障侧识别方案的串联补偿输电线路综合距离保护

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摘要

This paper introduces an integrated distance protection technique for series-compensated transmission lines (SCTLs) based on a new scheme to identify the faulty side with respect to the compensator. Conventional distance algorithms suffer from mal-operation under faults behind the Series Compensator (SC). Therefore, the modified mathematical algorithm of the distance relay treats with these faults via compensating the voltage drop through the SC to integrate the relay performance along the line. Consequently, the faulty side either upstream or downstream the SC must be identified. This identification is accomplished via a new function inserted in the mathematical algorithm. The presented function is a voting system based on both of the angles of the obtained conventional and modified apparent impedances. The presented voting scheme is based on basics theories of the fault analysis and the phasors diagrams of the equivalent apparent impedances seen by the conventional and modified algorithms whether the fault is upstream or downstream the SC. The presented scheme is suitable for all fault types even with high fault resistances. MATLAB package is used to simulate 400 kV compensated transmission lines and also to implement the presented algorithm. Diverse fault cases are investigated to test the response of the presented voting system under different fault conditions including the fault type, location, and impedance. The results confirm the efficacy of the presented scheme.
机译:本文介绍了一种基于串联补偿传输线(SCTL)的集成距离保护技术,该技术基于一种识别补偿器故障侧的新方案。传统的距离算法在串联补偿器(SC)后面的故障下会出现误操作的情况。因此,距离继电器的改进数学算法通过补偿通过SC的电压降以整合沿线的继电器性能来处理这些故障。因此,必须确定SC上游或下游的故障侧。这种识别是通过插入数学算法中的新功能完成的。所呈现的功能是基于所获得的常规和经修改的视在阻抗的两个角度的投票系统。提出的表决方案基于故障分析的基础理论以及通过常规算法和改进算法看到的等效视在阻抗的相量图,无论故障是在SC的上游还是下游。提出的方案适用于所有类型的故障,即使具有较高的故障电阻。 MATLAB软件包用于模拟400 kV补偿的输电线路并实现所提出的算法。研究了各种故障案例,以测试所提出的投票系统在不同故障条件下的响应,包括故障类型,位置和阻抗。结果证实了所提出方案的有效性。

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