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A two stage fault location algorithm for locating faults on transmission lines

机译:输电线路故障的两级故障定位算法

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A continuous and reliable electrical energy supply is the objective of any power system operation. Electricity is the driving force behind industry and subsequently economy. There are various types of faults appear in power system. Faults can appear due to bad weather conditions, equipment damage, equipment failure, environment changes and many other reasons. Any occurrence of a fault should be detected and cleared by the protective relaying devices. Fast and accurate fault location is a key task for accelerating system restoration, reducing outage times, and hence, improving system reliability. The aim of this project is to develop a two stage fault location algorithm that can determine the distance to the fault. The proposed two-stage fault-location algorithm is applicable for transposed and untransposed transmission lines and is independent of the fault resistance and source impedances. The synchronization angle is determined by using Newton-Raphson method. The maximum error reached from this algorithm is less than: 0.18% for LG faults, 0.20% for LL faults, and 0.26% for LLG faults.
机译:持续可靠的电能供应是任何电力系统运行的目标。电力是推动工业发展并进而推动经济发展的动力。电力系统中会出现各种类型的故障。由于恶劣的天气条件,设备损坏,设备故障,环境变化和许多其他原因,可能会出现故障。任何故障的发生都应通过保护继电装置进行检测并清除。快速准确的故障定位是加速系统恢复,减少中断时间并因此提高系统可靠性的关键任务。该项目的目的是开发一种可以确定到故障距离的两级故障定位算法。所提出的两阶段故障定位算法适用于转置和未转置的传输线,并且与故障电阻和源阻抗无关。同步角是通过使用牛顿-拉夫森法确定的。从该算法获得的最大误差小于:LG故障为0.18%,LL故障为0.20%,LLG故障为0.26%。

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