Noise rejection and partial discharge identification in PDIV tests of insulated wires under repetitive impulse supply voltage

G. Montanari, R. Hebner, P. Seri, R. Ghosh
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引用次数: 7

Abstract

Partial discharge (PD) detection is a fundamental test for the design and diagnosis of insulation systems, particularly organic materials which must operate throughout their whole life without PD. The measurement of Partial Discharge Inception Voltage (PDIV) and Repetitive Partial Discharge Inception Voltage (RPDIV), the latter defined for power electronic-type supply, is therefore a key issue for the design and qualification tests of Type I insulation system of rotating machines fed by power converters. While experience and technology for PD inception measurements under sinusoidal voltage supply is well established, the same does not hold under repetitive-pulse voltage waveforms, such as those provided by inverters. In addition, electromagnetic noise generated by electronic switch commutation can overlap with PD pulses signals and this is even more cumbersome when fast rise-time components are employed, such as GaN or SiC semiconductors. Moreover, this is also the condition which is the most stressful for stator wire insulation. This work investigates methods to detect PD pulses on enameled wires, rejecting noise efficiently, under repetitive impulsive voltages with different rise times, from 60 ns to 1000 ns. The proposed techniques can be implemented to achieve un-supervised noise rejection, which would be an important goal for both off-line and on-line PD testing.
重复冲击供电电压下绝缘导线PDIV试验的噪声抑制和局部放电识别
局部放电(PD)检测是绝缘系统设计和诊断的一项基本测试,特别是有机材料,它们必须在整个使用寿命中无局部放电。因此,局部放电起始电压(PDIV)和重复局部放电起始电压(RPDIV)的测量,后者是为电力电子型电源定义的,是由电力变流器供电的旋转机器的I型绝缘系统设计和合格试验的关键问题。虽然在正弦电压供应下进行PD初始测量的经验和技术已经很成熟,但在重复脉冲电压波形(例如逆变器提供的波形)下,情况并非如此。此外,电子开关换向产生的电磁噪声可能与PD脉冲信号重叠,当采用GaN或SiC半导体等快速上升时间元件时,这就更加麻烦了。此外,这也是对定子线绝缘压力最大的条件。本研究研究了在60纳秒到1000纳秒的不同上升时间的重复脉冲电压下,在漆包线上检测PD脉冲并有效抑制噪声的方法。所提出的技术可以实现无监督噪声抑制,这将是离线和在线PD测试的重要目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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