Modeling the influence of an electric thruster’s ion beam on its global EMC

Y. Rover, R. Thueringer, Uwe Probst, Chris Volkmar
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Abstract

This research deals with electromagnetic compatibility (EMC) in the field of electric propulsion (EP). To complete previous investigations, the emissions of a fully operating radio-frequency thruster (RIT)—including its extracted ion beam—were numerically analyzed. The ion beam was simulated and investigated with various characteristics. The simulations were performed by means of transient co-simulation. It is clear that the ion beam had a significant impact on the thruster emissions. Properties such as divergence angle and the conductivity of the beam, which can be directly attributed to the operating point of the plasma discharge inside the thruster, play a major role. The next steps will be to bring together all the knowledge gained about the emissions of the individual thruster components as well as the peripheral electronics.
模拟电推进器离子束对其全球电磁兼容性的影响
本研究涉及电力推进(EP)领域的电磁兼容性(EMC)。为了完成之前的研究,我们对完全运行的射频推进器(RIT)(包括其提取的离子束)的发射进行了数值分析。对离子束的各种特性进行了模拟和研究。模拟是通过瞬态协同模拟进行的。很明显,离子束对推进器的发射有重大影响。离子束的发散角和电导率等特性可直接归因于推进器内部等离子体放电的工作点,起着重要作用。下一步工作将是汇集所获得的有关单个推进器组件以及外围电子设备排放的所有知识。
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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