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Adaptive CWT-based transmission line differential protection scheme considering cross-country faults and CT saturation

机译:考虑越野故障和CT饱和的基于CWT的自适应输电线路差动保护方案

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摘要

In this study a new adaptive continuous wavelet transform (CWT)-based current differential protection scheme is proposed to cope with problems of conventional current differential protection in transmission lines. Current transformer (CT) saturation is a major problem for protection engineers in current differential protection systems. The mentioned problem is highlighted when an external fault occurs and causes mal-operation of differential protection. In this study, three phase currents at both ends of transmission line have been sampled and used as input signals to the proposed method using appropriate communication link. In addition, CWT with the aid of Mexican hat as a mother wavelet has been employed to extract high-frequency information of signals and detect fault occurrence and CT saturation in each phase. As a result, the proposed technique is able to prevent unwanted trip due to CT saturation during external faults. Nevertheless, simulation results confirm sensitivity and security of the proposed protection technique in facing with second internal fault of cross-country faults after a short delay.
机译:在这项研究中,提出了一种新的基于自适应连续小波变换(CWT)的电流差动保护方案,以解决传输线中常规电流差动保护的问题。对于电流差动保护系统中的保护工程师而言,电流互感器(CT)饱和是一个主要问题。当发生外部故障并引起差动保护误动作时,上述问题会突出显示。在这项研究中,已经对传输线两端的三相电流进行了采样,并将其用作使用适当的通信链路的建议方法的输入信号。此外,借助墨西哥帽子作为母波的CWT已被用于提取信号的高频信息,并检测每个相中的故障发生和CT饱和度。结果,所提出的技术能够防止由于外部故障期间的CT饱和而引起的意外跳闸。然而,仿真结果证实了所提出的保护技术在短时间延迟后面对越野故障的第二内部故障时的敏感性和安全性。

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