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Correlation between Partial Discharge Inception Voltage and Breakdown Voltage Characteristics of Butt-gap in HVDC Mass Impregnated PPLP Cable

机译:HVDC块浸渍PPLP电缆中局部放电初始电压与击穿电压特性的相关性

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The voids are formed inside the butt-gap in the HVDC Mass Impregnated PPLP (MI PPLP) cable since the thermal contraction of the mass is about ten times larger than PPLP. When the DC voltage applied to the MI PPLP cable is above partial discharge inception voltage (PDIV), partial discharge occurs in the void. The continued partial discharge accelerates electrical ageing and breakdown may occur as a result. Hence, it is necessary to study the correlation between partial discharge inception and breakdown in DC steady state. Partial discharge and breakdown in the DC steady state are affected by the temperature and the polarity of the applied voltage. Therefore, in this paper, to analyze the correlation between PDIV and Breakdown Voltage (BDV) of butt-gap in HVDC MI PPLP cable, BDV and PDIV measurement were performed according to temperatures of the specimen and polarities of the applied voltage. From the experimental results, The BDV of the butt-gap in the MI PPLP was found to be inversely proportional to the conductivity and proportional to PDIV. Also, PDIV and BDV were higher at negative voltage compared to positive polarity voltage. Consequently, BDV can be predicted through the temperature of the MI-PPLP and PDIV.
机译:在HVDC块浸渍的PPLP(MI PPLP)电缆中的对接间隙内部形成空隙,因为质量的热收缩大约是PPLP的十倍。当施加到MI PPLP电缆的DC电压高于局部放电初始电压(PDIV)时,在空隙中发生局部放电。持续的局部放电加速电气老化和击穿可能是可能的。因此,有必要研究直流稳态的局部放电初始化和故障之间的相关性。 DC稳态中的局部放电和故障受到施加电压的温度和极性的影响。因此,在本文中,为了分析HVDC MI PPLP电缆中的对接间隙的PDIV和击穿电压(BDV)之间的相关性,根据所施加电压的样本温度和极性的温度进行BDV和PDIV测量。从实验结果中,发现MI PPLP中的对接间隙的BDV与导电性成反比,与PDIV成比例。此外,与正极性电压相比,PDIV和BDV处于负电压。因此,可以通过MI-PPLP和PDIV的温度来预测BDV。

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