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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >New clustering techniques based on current peak value, charge and energy calculations for separation of partial discharge sources
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New clustering techniques based on current peak value, charge and energy calculations for separation of partial discharge sources

机译:基于电流峰值,电荷和能量计算的新聚类技术,用于分离部分放电源

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摘要

Clustering techniques are of main interest for separation of partial discharge (PD) sources. The separation is achieved if it is possible to extract from the PD pulses specific information related to the source. In this sense, this paper explores the capability of fundamental quantities derived from PD current pulses such as the peak amplitude Ipeak, the apparent charge Q, and the energy E as parameters intended for source separation. For this purpose, an unconventional PD measuring circuit is used to acquire PD pulses from several laboratory test objects. Once the pulses are digitized and stored, the values of Ipeak, Q, and E are computed according to the proposed methods in time and frequency domain. A theoretical analysis is presented to illustrate how values of Ipeak, Q and E can be related to the pulse shape so that they can be used as source separation parameters. Then, the IpeakQE clusters are computed for laboratory measurements. The results showed that these parameters are suitable for separation of sources provided that the pulse shapes are different. This cluster technique was also proved to be independent of the change of the acquisition parameters that are relevant for unconventional measuring systems. In addition, the easiness of the quantities computation makes the clustering technique introduced in this paper feasible for practical applications.
机译:聚类技术是分离局部放电(PD)源的主要兴趣所在。如果可以从PD脉冲中提取与源有关的特定信息,则可以实现分离。从这个意义上讲,本文探讨了从PD电流脉冲得出的基波量的能力,例如峰值幅度Ipeak,视在电荷Q和能量E,这些能量是用于分离源的参数。为此,使用非常规的PD测量电路从多个实验室测试对象获取PD脉冲。脉冲数字化并存储后,将根据提出的时域和频域方法计算Ipeak,Q和E的值。进行了理论分析,以说明Ipeak,Q和E的值如何与脉冲形状相关联,以便可以将它们用作源分离参数。然后,计算IpeakQE群集以进行实验室测量。结果表明,只要脉冲形状不同,这些参数就适合分离信号源。该集群技术还被证明与非常规测量系统相关的采集参数的变化无关。另外,数量计算的简便性使本文介绍的聚类技术在实际应用中可行。

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