On compensating synchronization errors in two-terminal based fault location approaches

J. Gama, F. Lopes
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引用次数: 4

Abstract

Two-terminal fault location methods have been increasingly used by utilities since they overcome limitations of single-ended approaches. Most two terminal fault location algorithms found in the literature require measurements to be synchronized, what has been reported as the main problem of these approaches. This paper demonstrates the application of a method able to correct synchronization errors in phasor-based fault location procedures that originally require the data to be synchronized. In order to illustrate its performance, a well known two-terminal fault location algorithm based on synchronized data is taken into account. Compared with other works, the method is simpler and does not require iterative processes. Fault simulations using the Alternative Transients Program (ATP) were carried out to analyze the algorithm performance. The obtained results show that traditional fault location methods based on two-terminal synchronized data may be used without a common time reference, provided that the synchronization error is properly compensated prior to the final fault location estimation.
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基于双端故障定位方法的同步误差补偿
由于双端故障定位方法克服了单端故障定位方法的局限性,已越来越多地应用于公用事业。文献中发现的大多数两种终端故障定位算法要求测量同步,这是这些方法的主要问题。本文演示了一种能够纠正同步误差的方法在基于相量的故障定位过程中的应用,这些故障定位过程最初需要数据同步。为了说明其性能,文中考虑了一种基于同步数据的双端故障定位算法。与其他工作相比,该方法简单,不需要迭代过程。利用备选瞬变程序(ATP)进行故障仿真,分析算法的性能。研究结果表明,只要在最终的故障定位估计之前对同步误差进行适当补偿,基于双端同步数据的传统故障定位方法可以在没有共同时间参考的情况下使用。
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