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Single-end current-based algorithm for fault location in series capacitor compensated transmission lines

机译:串联电容器补偿传输线中的单端电流算法

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The performance of protection functions in the series capacitor compensated transmission lines (SCCTLs) is affected by the capacitors protection system operating. One of these protection functions is the fault locator. This paper presents a highly accurate fault location algorithm in the SCCTLs for the single line to ground (SLG) faults, as the most common type of faults in transmission systems. The proposed algorithm identifies the fault location using the current phasors measured at only one side the faulty line, which makes it a low-cost and high reliable one. Therefore, the proposed algorithm can be easily implemented on numerical relays as it does not require communication channel to acquire remote data. In the proposed algorithm, after fault signal processing, the initial fault locations are obtained through moving the sampling window. Finally the exact fault location is calculated using the initial fault locations data and an outlier data removal technique. In order to evaluate the proposed algorithm, a test system is simulated in DIgSILENT software and processing process is implemented in MATLAB software. The obtained results show high accuracy and efficiency of the proposed method.
机译:串联电容补偿传输线(SCCTL)中的保护功能的性能受电容器保护系统的影响。其中一个保护功能是故障定位器。本文介绍了一个高度精确的故障定位算法在地面(SLG)故障的单线中的SCCTL中,作为传输系统中最常见的故障类型。所提出的算法使用当前相位仪在仅在一侧测量的故障线来识别故障位置,这使其成为低成本和高可靠的。因此,所提出的算法可以在数值继电器上容易地实现,因为它不需要通信信道来获取远程数据。在所提出的算法中,在故障信号处理之后,通过移动采样窗口获得初始故障位置。最后,使用初始故障位置数据和异常数据删除技术计算确切的故障位置。为了评估所提出的算法,在DigSilent软件中模拟测试系统,并在Matlab软件中实现了处理过程。所获得的结果显示了提出的方法的高精度和效率。

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