Optical Emission Characteristics of Electric Discharges in Helium, Argon-Nitrogen Mixtures Under High Frequency Unipolar Voltages

K. Koppisetty, H. Kirkici
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引用次数: 2

Abstract

Partial discharges and corona are generally considered as unwanted processes in power systems as they are constant source of power loss and electrical noise (EMI). These effects can further develop into a major problem at the component level, causing insulation deterioration and component failure leading to possible electrical breakdown. The availability of switching power supplies operating at higher intermediate frequencies makes it important to consider the effects of higher operating frequencies on corona and gas breakdown in partial vacuum conditions. This work presents the breakdown characteristics of argon and argon-nitrogen / helium-nitrogen mixtures in partial vacuum conditions subject to unipolar electric fields at 20 kHz. Results of breakdown events are discussed and compared with the results of helium breakdown under similar conditions. This work also presents results of various energy transitions in argon, argon-nitrogen, and helium-nitrogen mixtures as observed from the spectra collected during the breakdown events under unipolar pulsed voltages. These studies provide initial findings on the differences in breakdown behavior between atomic and diatomic excitation processes under unipolar-repetitive pulsed fields in kHz range.
高频单极电压下氦、氩、氮混合物放电的光学发射特性
部分放电和电晕通常被认为是电力系统中不希望发生的过程,因为它们是功率损耗和电气噪声(EMI)的持续来源。这些影响可以进一步发展成为一个主要问题,在组件层面,导致绝缘恶化和组件故障,导致可能的电气击穿。工作在较高中频的开关电源的可用性使得考虑较高工作频率对部分真空条件下电晕和气体击穿的影响变得重要。本文研究了在20khz单极电场作用下,氩和氩氮/氦氮混合物在部分真空条件下的击穿特性。讨论了击穿事件的结果,并与相似条件下氦击穿的结果进行了比较。本文还介绍了在单极脉冲电压击穿过程中收集的光谱所观察到的氩、氩-氮和氦-氮混合物中各种能量跃迁的结果。这些研究提供了在kHz范围内单极重复脉冲场下原子和双原子激发过程击穿行为差异的初步发现。
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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