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首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >A Performance Analysis of Methods for Fault Location in Transmission Lines Considering Errors in Data Acquisition
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A Performance Analysis of Methods for Fault Location in Transmission Lines Considering Errors in Data Acquisition

机译:考虑数据采集误差的输电线路故障定位方法性能分析

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摘要

Algorithms for fault location are important tools in the operation of a power system because a reliable identification of faults is directly related with the supply availability. However, there are several factors that may influence the performance of a fault location process, such as inaccurate line parameters, failures in phasors extraction and synchronization, as well as intrinsic sampling errors inherent to voltage and current measurements. In this sense, the researches about data acquisition errors associated with fault location are scarce in the literature. This paper proposes to demonstrate the influence of bad measurements of voltage and current in the performance of two fault location methodologies, both based on voltage and current fundamental phasors. The measurement errors were considered as originated from instrument transformers inaccuracies, which are the sensors of data acquisition in Power Systems. Results of simulation show that corrupted measurements of voltage and current due to instrument transformers errors can significantly affect the accuracy of transmission lines fault location.
机译:故障定位算法是电力系统运行中的重要工具,因为对故障的可靠识别与供电可用性直接相关。但是,有几个因素可能会影响故障定位过程的性能,例如不正确的线路参数,相量提取和同步失败以及电压和电流测量固有的固有采样误差。从这个意义上讲,关于与故障定位相关的数据采集错误的研究在文献中很少。本文提出以电压和电流基本相量为基础,论证电压和电流的不良测量对两种故障定位方法的性能的影响。测量误差被认为是由仪表变压器的不准确性引起的,后者是电力系统中数据采集的传感器。仿真结果表明,由于互感器误差而导致的电压和电流测量结果损坏会严重影响传输线故障定位的准确性。

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