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A novel directional relay for HVDC transmission line based on measured surge impedance

机译:一种基于实测浪涌阻抗的新型高压直流输电定向继电器

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A directional relay based on measured surge impedance is proposed in this paper. When a fault occurs at the forward direction of convertor station, the measured surge impedance at the measuring point is the same as the impedance at rectifier backside. For faults at the backward direction of convertor station, the measured surge impedance at the measuring point is line surge impedance. Thus, according to the difference between the measured surge impedances, fault criterion is proposed to distinguish the forward faults from the backward faults. Moreover, measured surge impedances is calculated by the initial voltage traveling wave and the initial current traveling wave under specific frequencies which are extracted via S transform at the measuring point. Finally, a simulation model of a ±500kV HVDC transmission system is built based on PSCAD/EMTDC, and simulation results of different fault location and transition resistance indicate that this kind of directional relay is validity and adaptability under various fault conditions.
机译:本文提出了一种基于测量浪涌阻抗的定向继电器。当换流站正向发生故障时,在测量点处测得的浪涌阻抗与整流器背面的阻抗相同。对于换流站向后方向的故障,在测量点处测得的浪涌阻抗为线路浪涌阻抗。因此,根据测得的浪涌阻抗之间的差异,提出了故障判据,以区分正向故障和反向故障。而且,通过在测量点处通过S变换提取的特定频率下的初始电压行波和初始电流行波来计算测量的浪涌阻抗。最后,基于PSCAD / EMTDC建立了±500kV高压直流输电系统的仿真模型,不同故障位置和过渡电阻的仿真结果表明,这种定向继电器在各种故障条件下都是有效和适应性强的。

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