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A Fast Local Bus Current-Based Primary Relaying Algorithm for HVDC Grids

机译:HVDC电网中基于快速局部总线电流的主继电算法

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摘要

This paper proposes a fast, selective, reliable, and local bus primary relaying algorithm for high-voltage direct current (HVDC) grids. The proposed relaying algorithm only uses measurements obtained from current sensors to detect faults and identify their locations. This algorithm is local and requires only communication at the bus level rather than the system level. Furthermore, the algorithm is not sensitive to the system configuration and operating point and can be employed during line or converter outages with limited retuning and adjustments. The proposed algorithm is applied to a four-terminal HVDC grid. Study results show that the proposed algorithm 1) detects faults on both transmission lines and DC buses; 2) identifies the faulted bus or transmission line; 3) requires insignificant computation capacity; 4) distinguishes between faults and other system transients to prevent erroneous circuit-breaker trips; and 5) is not sensitive to measurement noise.
机译:本文提出了一种用于高压直流(HVDC)电网的快速,选择性,可靠和本地总线主继电器算法。提出的中继算法仅使用从电流传感器获得的测量值来检测故障并确定其位置。该算法是本地算法,仅需要总线级别的通信,而不需要系统级别的通信。此外,该算法对系统配置和操作点不敏感,可以在线路或转换器中断期间通过有限的调整和调整来使用。将该算法应用于四端高压直流输电系统。研究结果表明,所提出的算法1)检测传输线和直流母线的故障; 2)识别故障的总线或传输线; 3)需要微不足道的计算能力; 4)区分故障和其他系统瞬变,以防止错误的断路器跳闸; 5)对测量噪声不敏感。

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