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GeoSail: an elegant solar sail demonstration mission

机译:GeoSail:优雅的太阳帆示范任务

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摘要

In this paper a solar sail magnetotail mission concept was examined. The 43-m square solar sail is used to provide the required propulsion for continuous sun-synchronous apse-line precession. The main driver in this mission was found to be the reduction of launch mass and mission cost while enabling a nominal duration of 2 years within the framework of a demonstration mission. It was found that the mission concept provided an excellent solar sail technology demonstration option. The baseline science objectives and engineering goals were addressed, and mission analysis for solar sail, electric, and chemical propulsion performed. Detailed subsystems were defined for each propulsion system and it was found that the optimum propulsion system is solar sailing. A detailed tradeoff as to the effect of spacecraft and sail technology levels, and requirements, on sail size is presented for the first time. The effect of, for example, data acquisition rate and RF output power on sail size is presented, in which it is found that neither have a significant effect. The key sail technology requirements have been identified through a parametric analysis.
机译:本文研究了太阳帆磁尾任务概念。 43平方米的太阳帆用于提供连续的太阳同步近地点线进动所需的推进力。发现该任务的主要推动力是减少发射质量和任务成本,同时使示范任务框架内的标称期限为2年。结果发现,任务概念提供了一个出色的太阳帆技术演示选项。解决了基准科学目标和工程目标,并进行了太阳帆,电力和化学推进的任务分析。为每个推进系统定义了详细的子系统,发现最佳的推进系统是太阳航行。首次提出了有关航天器和帆技术水平以及要求对帆尺寸的影响的详细权衡。提出了例如数据采集速率和RF输出功率对帆尺寸的影响,其中发现两者均没有显着影响。通过参数分析确定了关键帆技术要求。

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