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A high-speed digital current differential protection algorithm for power transmission lines in smart grids

机译:智能电网输电线路的高速数字电流差动保护算法

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The objective of this paper is to propose and investigate a novel hybrid technique consisting of wavelet packet transform (WPT) and direct and quadrature (dq) axis components for current differential protection of transmission lines. The idea in this paper is to develop and implement this hybrid technique by localizing the frequency sub-bands of dq axis components of the differential currents using the WPT in order to find out and evaluate the best signature of the internal faults. The results show that the high-frequency sub-band provides the best signature and enough information to detect any fault in the transmission lines. This hybrid technique provides good accuracy and fast fault clearance speed with minimum level of WPT of the dq components of the differential current. Off-line results of the collected data from a laboratory experimental setup are provided in this paper for different faults at different locations on the transmission line.
机译:本文的目的是提出和研究一种新颖的混合技术,该技术由小波包变换(WPT)和直接和正交(dq)轴分量组成,用于传输线的电流差动保护。本文的想法是通过使用WPT对差分电流的dq轴分量的频率子带进行定位来开发和实现这种混合技术,以便找出并评估内部故障的最佳特征。结果表明,高频子带提供最佳的签名和足够的信息以检测传输线中的任何故障。这种混合技术提供了良好的精度和快速的故障清除速度,同时差动电流的dq分量的WPT最小。本文针对传输线上不同位置的不同故障,提供了从实验室实验装置收集的数据的离线结果。

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