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Characterization of partial discharges in solid insulators under DC voltage using physical cavity properties

机译:用物理腔特性表征直流电压下的固体绝缘体中的部分放电

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Presently, the Partial Discharge (PD) process at DC voltage is not as well known as for AC voltage. In this paper, the characterization of PD activity under DC voltage is studied in order to be used as a future tool for the diagnostic of insulators. The PD is associated with a bipolar charge deployment inside the cavity of the insulating material. PD characterization was usually investigated based on PD magnitude and the time interval between PDs. In this study the analysis of PD pulses pattern is focused especially on the time constant of charge decay τ within the cavity. The relationship between τand the parameters of the cavity is established using a theoretical model. To validate this approach, measurements were performed on samples with an artificial cavity containing air or oil and compared with samples without any artificial cavity. The experimental results, in accordance with theoretical statements, show a strong relationship between τ, geometrical and electrical parameters of the cavity within the solid insulation.
机译:目前,DC电压下的局部放电(PD)过程不知道AC电压。本文研究了DC电压下PD活性的表征,以便用作绝缘体诊断的未来工具。 PD与绝缘材料的空腔内的双极电荷部署相关联。通常基于PD幅度和PDS之间的时间间隔来研究PD表征。在该研究中,PD脉冲图案的分析专注于腔内的电荷衰减τ的时间常数。使用理论模型建立τand之间的关系。为了验证这种方法,对具有空气或油的人造腔的样品进行测量,并与没有任何人造腔的样品进行比较。根据理论陈述,实验结果显示了固体绝缘内腔内的τ,几何和电学参数之间的强烈关系。

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