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Fault Location on Double-Circuit Series-Compensated Lines Using Two-End Unsynchronized Measurements

机译:使用两端非同步测量的双回路串联补偿线路上的故障定位

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This paper presents an accurate fault-location algorithm for double-circuit series-compensated lines. Use of two-end current and voltage signals is taken into account and a more general case of unsynchronized measurements is studied. Different options for analytical synchronization of the measurements are considered. The algorithm applies two subroutines, designated for locating faults on particular line sections, and in addition, the procedure for selecting the valid subroutine. The subroutines are formulated with the use of the generalized fault-loop model, leading to compact formulas. Consideration of the distributed parameter line model ensures high accuracy of the fault location. The proposed selection procedure allows for reliable selection of the valid subroutine. The developed fault-location algorithm has been thoroughly tested using signals taken from Alternate Transients Program-Electromagnetic Transients Program versatile simulations of faults on a double-circuit series-compensated transmission line. The presented fault-location evaluation shows the validity of the derived fault-location algorithm and its high accuracy.
机译:本文提出了一种用于双回路串联补偿线路的精确故障定位算法。考虑了两端电流和电压信号的使用,并且研究了更普遍的非同步测量情况。考虑了用于测量的分析同步的不同选项。该算法应用两个子例程,指定用于在特定线路段上定位故障,此外,还应用选择有效子例程的过程。子例程是使用广义故障循环模型制定的,从而产生了紧凑的公式。考虑分布式参数线模型可确保故障定位的高精度。所提出的选择过程允许有效子程序的可靠选择。所开发的故障定位算法已使用从交替暂态程序-电磁暂态程序中提取的信号进行了彻底测试,该程序对双回路串联补偿传输线上的故障进行了通用仿真。提出的故障定位评估方法证明了导出的故障定位算法的有效性和较高的准确性。

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