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Operating in the space plasma environment: A spacecraft charging study of the Solar X-ray Imager

机译:在空间等离子环境中运行:太阳X射线成像仪的航天器充电研究

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摘要

This study presents the results of a spacecraft charging effects protection study conducted on the Solar X-ray Imager (SXI). The SXI is being developed by NASA Marshall Space Flight Center for NOAA's Space Environment Laboratory, and will be used to aid in forecasting energetic particle events and geomagnetic storms. Images will provide information on the intensity and location of solar flares, coronal mass ejections, and high speed solar streams. The SXI will be flown on a next-generation GOES sometime in the mid to late 1990's. Charging due to the encounter with a worst-case magnetic substorm environment is modeled using the NASCAP/GEO computer code. Charging levels of exterior surfaces and the floating potential of the spacecraft relative to plasma are determined as a function of spacecraft design, operational configuration, and orbital conditions. Areas where large surface voltage gradients exist on or near the SXI are identified as possible arc-discharge sites. Results of the charging analysis are then used to develop design recommendations that will limit the effects of spacecraft charging on the SXI operation.
机译:这项研究提出了在太阳X射线成像仪(SXI)上进行的航天器带电效应保护研究的结果。 SXI由美国国家航空航天局(NASA)的马歇尔太空飞行中心(NASA Marshall Space Flight Center)为NOAA的空间环境实验室开发,将用于协助预测高能粒子事件和地磁风暴。图像将提供有关太阳耀斑的强度和位置,日冕物质抛射和高速太阳流的信息。 SXI将在1990年代中期到后期的某个时间使用下一代GOES进行飞行。使用NASCAP / GEO计算机代码对由于遇到最坏情况的亚暴磁环境而产生的充电进行建模。确定外表面的充电水平和航天器相对于等离子体的浮动电位,这取决于航天器的设计,运行配置和轨道条件。 SXI上或附近存在较大表面电压梯度的区域被标识为可能的电弧放电位置。充电分析的结果随后被用于制定设计建议,以限制航天器充电对SXI操作的影响。

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