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Electrical Insulation Material Parameters and Power Electronic Waveform Environment

机译:电绝缘材料参数和电力电子波形环境

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Industrial controls have experienced dramatic changes in the past twenty years. Especially advances in adjustable speed drive technology are very well observable. This technology produces repetitive pulses with the high level of voltage rise fronts (slew rates). However, this technology is an advantage for a drive control; the voltage waveforms generated by power frequency converters may affect significantly the reliability of the electric motor insulation systems. To improve understanding of the processes in the electrical insulation materials during pulse voltage aging, it is necessary to monitor values of the electric parameters within a pulse stress aging process. The experimentally measured data of the observed electric parameters during the pulse voltage aging are in this paper presented. The difference between the sinusoidal voltage aging and pulse voltage aging time dependencies is shown and well observable in this paper as well. This claim on prevention requires good knowledge of the electric parameters behavior. The result of this work shows how the electric insulation material parameters changes in power electronic waveform environment in comparison to sinusoidal low frequency aging.
机译:在过去的二十年中,工业控制发生了翻天覆地的变化。特别是在可调速驱动技术方面的进步是非常明显的。该技术可产生具有高电平上升沿(压摆率)的重复脉冲。但是,该技术对于驱动控制是一个优势。功率变频器产生的电压波形可能会严重影响电动机绝缘系统的可靠性。为了更好地理解脉冲电压时效过程中电绝缘材料中的过程,有必要在脉冲应力时效过程中监视电参数的值。本文介绍了在脉冲电压老化过程中观察到的电参数的实验测量数据。本文显示了正弦电压老化和脉冲电压老化时间相关性之间的差异,并且可以很好地观察到。关于预防的要求要求对电气参数的行为有充分的了解。这项工作的结果表明,与正弦低频老化相比,电绝缘材料参数在功率电子波形环境中如何变化。

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