Assessment of the resistance of technical means of space systems and complexes to the effects of electrostatic discharges

A. Dementiev, Mikhail V. Aralkin, Yevgeny E. Krivobokov
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Abstract

In order to further improve the methods of protecting the onboard spacecraft equipment from the effects ofelectrostatic discharges, based on a comprehensive study of the problem of the occurrence of electrostatic discharges, theauthors carried out the studies described in this article to analyze the functioning of the onboard spacecraft equipment under the influence of electrostatic discharges. In the course of the research, the methodology for assessing the resistance ofthe onboard equipment of the spacecraft to the effects of electrostatic discharges was refined, based on the generalization of the calculation and analytical work. The analysis of the resistance of the onboard equipment of the spacecraft was carried out taking into account the main mechanisms of the effect of electrostatic discharges on the onboard space network. Taking into account the need to assess the resistance of the onboard space network equipment to electrostatic discharges outside real operating conditions, the authors assess the resistance of the onboard space network equipment on the basis of mathematical and physical modeling. Asaresult of the study, an algorithm was developed for assessing the resistance of the onboard equipment of a spacecraft to the effects of electrostatic discharges, which is described in detail in this article.
评估空间系统和综合体技术手段对静电放电影响的抵抗力
为了进一步完善保护航天器机载设备免受静电放电影响的方法,在全面研究静电发生问题的基础上,对航天器机载设备在静电放电影响下的功能进行了分析研究。在研究过程中,在总结计算和分析工作的基础上,改进了航天器机载设备对静电放电影响的评估方法。考虑到静电对空间网络影响的主要机理,对航天器机载设备的阻力进行了分析。考虑到评估机载空间网络设备在实际工作条件外的静电放电阻力的需要,作者在数学和物理建模的基础上对机载空间网络设备的电阻进行了评估。作为研究的结果,开发了一种用于评估航天器机载设备对静电放电影响的阻力的算法,本文对此进行了详细描述。
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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