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Novel Diagnostic Method of DC Void Discharge in High Temperature Superconducting Cable Based on Pulse Sequence Analysis

机译:基于脉冲序列分析的高温超导电缆DC空隙放电的新型诊断方法

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摘要

In a high voltage dc (HVDC) high temperature superconducting (HTS) cable composed of polypropylene laminated paper (PPLP), butt-gaps are unavoidable during fabrication, which may lead to formation of voids. When dc voltage higher than partial discharge inception voltage (PDIV) is applied, partial discharge occurs in the void. If void discharge sustains, the electrical ageing of PPLP accelerates, and eventually dielectric breakdown may occur due to the lowering of dielectric strength. Thus, for timely maintenance and repair of HVDC HTS cable, identification technology for void defects is required. However, there is no previous research and technologies for defect identification and insulation diagnosis on HVDC HTS cables. Therefore, in this paper, in order to suggest the insulation diagnosis method for void defects of the HVDC HTS cable based on the pulse sequence analysis (PSA) method, void discharges were measured according to the size of void and magnitude of applied voltage. Also, patterns of the void discharge were obtained using PSA methods and PYTHON program. Experimental results indicate that, although the magnitude, time difference and repetition rate of partial discharge are different depending on the configuration of the void and the applied voltage, but the patterns of void discharge are consistent. Therefore, it is considered that identification and insulation diagnosis for void defects in HVDC HTS cable is possible through the obtained DC void partial discharge patterns.
机译:在高压DC(HVDC)高温超导(HTS)电缆中由聚丙烯层压纸(PPLP)组成,在制造期间对接间隙是不可避免的,这可能导致空隙的形成。当施加高于局部放电初始电压(PDIV)的DC电压时,在空隙中发生局部放电。如果空隙放电维持,则由于介电强度的降低,可能会发生PPLP加速的电老化,并且最终可能发生介电击穿。因此,为了及时维护HVDC HTS电缆,需要用于空隙缺陷的识别技术。但是,在HVDC HTS电缆上没有以前的研究和技术用于缺陷识别和绝缘诊断。因此,在本文中,为了提出基于脉冲序列分析(PSA)方法的HVDC HTS电缆的空隙缺陷的绝缘诊断方法,根据施加电压的空隙和大小测量空隙放电。此外,使用PSA方法和Python程序获得空隙放电的图案。实验结果表明,尽管局部放电的幅度,时间差和重复率取决于空隙和施加的电压的配置,但是空隙放电的图案是一致的。因此,考虑通过所获得的DC空隙部分放电模式,可以通过获得HVDC HTS电缆中的空隙缺陷的识别和绝缘诊断。

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