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首页> 外文期刊>IEEE Transactions on Power Delivery >An Improved Non-Unit Traveling Wave Protection Method With Adaptive Threshold Value and Its Application in HVDC Grids
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An Improved Non-Unit Traveling Wave Protection Method With Adaptive Threshold Value and Its Application in HVDC Grids

机译:具有自适应阈值的改进的非单位行进波保护方法及其在HVDC网格中的应用

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摘要

The performance of the traditional derivative-based non-unit traveling wave protection (TWP) in high voltage dc (HVDC) grids shows the problem of low-sensitivity when high-impedance faults occur. In this article, the characteristics of the fault initial traveling wave are analyzed first, two conclusions can be drawn: i) the distortion degree of the fault initial traveling wave is related to the fault location, ii) the amplitude of the fault initial traveling wave is related to the fault impedance. Then a zero-sequence current fitting method is proposed to obtain parameters respectively reflecting fault impedance and fault distance. When a fault occurs, a fault information extraction method based on the fitting parameters will give the estimation interval of the fault impedance, which provide reference for the adaptive threshold value selection of TWP. In this way, the influence of the fault impedance on TWP can be eliminated. A +/- 400 kV modular multilevel converter (MMC) HVDC grid is built in PSCAD/EMTDC. The verification of the proposed method considers different installation positions of the current limit inductor. The simulation results show that the proposed method can fast and correctly identify the dc line faults and effectively improves the protection sensitivity in detecting high-impedance faults.
机译:高压DC(HVDC)网格中的传统基于衍生的非单位行波保护(TWP)的性能显示出高阻抗故障时低灵敏度的问题。在本文中,首先分析故障初始行驶波的特性,可以绘制两个结论:i)故障初始行驶波的失真度与故障位置有关,ii)故障初始行驶波的幅度与故障阻抗有关。然后提出零序电流拟合方法以获得分别反映故障阻抗和故障距离的参数。当发生故障时,基于拟合参数的故障信息提取方法将提供故障阻抗的估计间隔,这为TWP的自适应阈值选择提供了参考。以这种方式,可以消除故障阻抗对TWP的影响。 A +/- 400 kV模块化多级转换器(MMC)HVDC网格建于PSCAD / EMTDC。所提出的方法的验证考虑了电流限制电感的不同安装位置。仿真结果表明,该方法可以快速且正确地识别直流线路故障,有效提高检测高阻抗故障的保护性。

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