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The effect of surface contamination of tiny satellite on DC probe ionosphere measurement

机译:微小卫星表面污染对DC探针电离层测量的影响

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The DC Langmuir probe is a widely-used instrument for the plasma measurement in the space missions. But to apply DC Langmuir probe to a tiny satellite, such as a cubesat, for ionosphere study is difficult to get accurate electron density ( n sub e /sub) and electron temperature ( T sub e /sub) for two reasons: the contamination on both satellite surface and the electrode to be used, and a lack of conductive surface area of the tiny satellite. Under the charging effect of the satellite with an insufficient area ratio between the surface of the probe and the spacecraft, the contaminations on the surface of both probe and the satellite, acting as equivalent capacitances and resistances, modify both the potentials on the satellite and the probe, and an elevated T sub e /sub and a suppressed n sub e /sub are derived incorrectly. In this paper, the effect of the surface contamination on the DC Langmuir probe measurements onboard a tiny satellite is investigated in detail. The effects of the accumulated charge and the impedances on the contamination layers have been identified in the experiments done in a ground chamber with similar plasma conditions in the Earth’s ionosphere, and the characteristic dependences of the probe sweeping frequency and the plasma density are presented. The experiment result suggests that a contamination-free instrument TeNeP, operated at 0.2~10 MHz probe sweeping frequency and sweeping potentials below 500 mV, is a better solution to obtain accurate T sub e /sub and n sub e /sub, onboard a satellite with a surface area ratio below 100.
机译:DC Langmuir探头是用于空间任务中的等离子体测量的广泛使用的仪器。但是为了将DC Langmuir探针施加到一个微小的卫星(例如立方体),对于电离层的研究难以获得精确的电子密度(n e )和电子温度(t e )有两个原因:卫星表面上的污染和要使用的电极,以及微小卫星的导电表面区域。在探头和航天器之间具有不足面积比的卫星的充电效果,探头和卫星表面的污染,作用为等效电容和电阻,改变卫星和卫星上的电位探针和升高的T e 和抑制的n e 被错误地得出。在本文中,详细研究了表面污染对DC Langmuir探针测量的影响微小卫星的效果。累积电荷和污染层上的阻抗的效果已经在地面室中的实验中鉴定在地球电离层中具有类似等离子体条件的实验中,并且呈现了探针扫描频率和等离子体密度的特征依赖性。实验结果表明,无污染的仪器仪表,在0.2〜10MHz探针下扫描频率和低于500 mH的扫描电位,是获得精确的T E 和N E的更好的解决方案,船上卫星,表面积比在100以下。

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