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A noncommunication adaptive single phase auto-reclosure of transmission lines using phase space based criteria

机译:使用基于相空间的标准的传输线路的非通信自适应单相自动重合闸

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摘要

This paper presents two phase space (PS) based criteria, and then on the basis of which it illustrates the preparation of a new non-intelligent and noncommunication adaptive single phase auto-reclosure (ASPAR) scheme to detect the secondary arc extinction for reclosure of transmission lines after self clearing of transient faults. This scheme, which is fed by local voltage signal, can accurately distinguish between transient and permanent faults in transmission lines. Moreover, in the case of transient faults, the secondary arc extinction can be detected by the proposed algorithm within 8 ms and under effective operational and structural conditions, including different fault locations, load amounts, number of circuits, ideally transposed, partially transposed and un-transposed circuits, existence of shunt reactors and measurement noise. Besides, the presented PS based algorithm can be implemented sample by sample and does not need complicated integral computation, which connotes that it can be embedded in reclosing relays in transmission systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了两个基于相空间(PS)的标准,然后在此基础上说明了一种新的非智能和非通信自适应单相自动重合闸(ASPAR)方案的制备,以检测二次电弧熄灭以重合闸自清除瞬态故障后的传输线。由本地电压信号馈送的该方案可以准确地区分输电线路的瞬时故障和永久故障。此外,在发生瞬时故障的情况下,可以通过提出的算法在8 ms内并在有效的操作和结构条件下(包括不同的故障位置,负载量,电路数量,理想换位,部分换位和不匹配)检测出二次电弧熄灭。 -换位电路,并联电抗器的存在和测量噪声。此外,所提出的基于PS的算法可以逐个样本地实现,并且不需要复杂的积分计算,这意味着它可以嵌入到传输系统的重合闸继电器中。 (C)2017 Elsevier Ltd.保留所有权利。

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