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Investigating Pulsed Discharge Polarity Employing Solid-state Pulsed Power Electronics

机译:利用固态脉冲功率电子学研究脉冲放电极性

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摘要

The power electronics technique has become a key technology in solid-state pulsed power supplies. Since pulsed power applications have been matured and found their way into many industrial applications, moving toward energy efficiency is gaining much more interest. Therefore, finding an optimum operation condition plays an important role in maintaining the desired performance. Investigating the system parameters contributed to the generated pulses is an effective way in improving the system performance further ahead. One of these parameters is discharge polarity, which has received less attention. In this article, the effects of applied voltage polarity on plasma discharge have been investigated in different mediums at atmospheric pressure. The experiments have been conducted based on a high-voltage DC power supply and a high-voltage pulse generator for point-to-point and point-to-plane geometries. Furthermore, the influence of electric field distribution is analyzed using finite-element simulations for the employed geometries and mediums. The experimental and simulation results have verified the important role of the applied voltage polarity, employed geometry, and medium of the system on plasma generation.
机译:电力电子技术已成为固态脉冲电源中的关键技术。由于脉冲电源的应用已经成熟并已进入许多工业应用,因此朝着节能的方向越来越受关注。因此,寻找最佳操作条件在维持所需性能方面起着重要作用。研究有助于产生脉冲的系统参数是进一步改善系统性能的有效方法。这些参数之一是放电极性,受到了越来越少的关注。在本文中,已经研究了在大气压下在不同介质中施加电压极性对等离子体放电的影响。实验是基于高压直流电源和高压脉冲发生器进行的,用于点对点和点对平面的几何形状。此外,对于所采用的几何形状和介质,使用有限元模拟分析了电场分布的影响。实验和仿真结果已经验证了施加的电压极性,所采用的几何形状以及系统介质对等离子体产生的重要作用。

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