输电系统故障定位检测的常规方法

M. Ngwenyama, P. L. Le Roux, J. Ngoma
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摘要

在过去的几十年里,电力系统的快速扩张导致了输电架空线路数量的大幅增长。这些线路遇到故障,必须在使线路恢复运行以恢复消费者连接之前加以缓解。如果能够以足够的精度确定故障的位置,则可以加快维修速度。在过去的几年中,准确确定传输线故障的位置一直是服务工程师、设计人员和研究人员面临的一个挑战。因此,故障定位技术允许工程师在一个高度逻辑的时间框架内精确定位故障发生的位置。这种故障定位方法用于定位电源线路的故障位置。有几条输电线路长达100公里;因此,查找故障位置非常耗时。现场工程师寻找故障位置的时间越长,生产损失就越大。因此,确定故障的准确位置以节省时间和金钱至关重要。本文提出了一个用MATLAB软件开发的模型来研究输电线路中存在的故障。该模型包括一个故障定位检测单元,以确定故障在线路上的准确位置。本文主要研究了输电架空线路故障跟踪的传统方法。该模型将利用先进的方法进行改进,以提高整体速度和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conventional Method for Electrical Transmission System Fault Location Detection
The rapid expansion in the power system has led to substantial growth in the number of transmission overhead lines in service over the past decades. These lines encounter faults that must be mitigated before returning the line to operation to recover the consumers’ connection. The repair can be accelerated if the pinpointing of the fault can be determined with sufficient precision. The exact determination of the position of transmission line faults has been a challenge for service engineers, designers, and researchers over the last few years. Thus, the fault locating technique allows engineers to pinpoint where the fault occurred in a highly logical timeframe. This fault locating method is required to pinpoint where the fault on the power lines occurred. Several transmission lines are 100 kilometers long; thus, making it time-consuming to find the fault’s position. The longer it takes the field engineers to find the fault locality, the higher production losses. Therefore, it is essential to pinpoint the exact locality of the fault to save time and money. The paper proposes a model developed in MATLAB software to study the faults that exist in the transmission line. The model consists of a fault location detection element to pinpoint the exact position of the fault on the line. This paper focuses on fault tracking on the transmission overhead line utilizing a conventional approach. The model will be improved utilizing advanced methods to improve the overall speed and accuracy.
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