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Design of Electrostatic Discharge Test System Induced by Electromagnetic Field in Space Radiation Environment

机译:空间辐射环境中电磁场诱导静电放电试验系统的设计

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Electrostatic discharge induced by strong electromagnetic field refers to the electrostatic discharge process of spacecraft surface materials, cables, some special structural parts and other areas with low charging potential induced by strong electromagnetic field. In general, the spacecraft surface low charge potential sensitive area of the electric field is weak, and electron energy is lower than the ionization energy of molecules, atoms, collision ionization probability is low, when the strong electromagnetic field action, stimulate low-pressure gas to produce dense plasma, thereby reducing the discharge threshold and induce the generation of electrostatic charge discharge. The establishment of testing method for electrostatic discharge induced by strong electromagnetic field is the premise of research on law and protection method of electrostatic discharge induced by strong electromagnetic field. At present, there are no experimental conditions for the interaction between strong electromagnetic field and space environment in China. Therefore, this article established the strong electromagnetic radiation environment and space radiation environment at the same time, under the action of induced discharge test system, not only to be able to carry out electrostatic discharge, high power microwave, nuclear electromagnetic pulse, ultra-wideband electromagnetic pulse and continuous wave such as strong electromagnetic field radiation studies, but also need to solve the high vacuum environment at the same time for sample production and discharge, the discharge parameters and the effect of real-time monitoring, etc. For the research on the rules of space equipment of strong electromagnetic field induced electrostatic discharge is of great significance.
机译:由强电磁场引起的静电放电是指航天器表面材料,电缆,一些特殊结构部件等具有强大电磁场诱导的低充电电势的静电放电过程。在一般情况下,电场的宇宙飞船表面低充电电位敏感区域弱,和电子能量比分子,原子,碰撞电离概率是低的,当强电磁场作用,刺激低压气体的电离能低以产生高密度等离子体,从而降低了放电阈值,并诱导静电荷放电的产生。强电磁场诱导静电放电试验方法的建立是强电磁场诱导静电放电定律和保护方法的前提。目前,中国强大电磁场与中国空间环境之间的相互作用没有实验条件。因此,本文建立的同时的强电磁辐射环境和空间辐射的环境中,感应放电试验系统的作用下,不仅要能进行静电放电,高功率微波,核电磁脉冲,超宽带电磁脉冲和连续波例如强电磁场辐射研究,但还需要在同一时间用于样品的生产和放电,放电参数和实时监控等上的效果为了研究以解决在高真空环境强电磁场引起的静电放电的设备空间的规则,具有十分重要的意义。

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