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New principle for busbar protection based on the Euclidean distance algorithm

机译:基于欧氏距离算法的母线保护新原理

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摘要

A new fast busbar protection algorithm based on the comparison of the similarity of back-wave waveforms is proposed in this paper. The S-transform is performed on the back-wave from each defected transmission line connected to the busbar, and the protection criterion is thus constructed by using the Euclidean distance to analyze the similarity of the back-waves, with the implementation of the S-transform between the transmission lines. When a fault occurs internally on the busbar, the Euclidean distance of the S-transformed back-wave between each associated transmission line is small, and there is a remarkable similarity between the waveform. When a fault occurs externally on the busbar, the Euclidean distance of the S-transformed backward traveling wave between the faulty line and the nonfaulty line is larger than that between the nonfaulty lines. The wave-forms of the faulty line and the nonfaulty line bear little similarity, while there is a striking similarity between the nonfaulty lines. Therefore, a protection criterion is established according to the ratio between the maximal similarity and the minimal similarity to discriminate the internal and external faults of the busbar zones. The simulation results show that the proposed busbar protection method can discriminate the internal and external faults of busbar zones in a sensitive and reliable way.
机译:提出了一种基于回波波形相似度比较的快速母线保护算法。 S变换是在连接到母线的每条有缺陷的传输线的回波上执行的,因此,通过使用欧氏距离来分析回波的相似性,并采用S-在传输线之间转换。当母线内部发生故障时,每条相关传输线之间经过S变换的回波的欧几里德距离很小,并且波形之间存在明显的相似性。当母线外部发生故障时,故障线与非故障线之间经过S变换的后向行波的欧氏距离大于非故障线之间的欧氏距离。故障线和非故障线的波形几乎没有相似性,而在故障线之间却有惊人的相似性。因此,根据最大相似度和最小相似度之比建立保护标准,以区分母线区域的内部和外部故障。仿真结果表明,所提出的母线保护方法能够灵敏可靠地识别母线区域的内部和外部故障。

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