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High-Power Solar Electric Propulsion for Future NASA Missions

机译:用于未来NASA任务的大功率太阳能电力推进器

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NASA has sought to utilize high-power solar electric propulsion as means of improving the affordability of in-space transportation for almost 50 years. Early efforts focused on 25 to 50 kilowatt systems that could be used with the Space Shuttle, while later efforts focused on systems nearly an order of magnitude higher power that could be used with heavy lift launch vehicles. These efforts never left the concept development phase in part because the technology required was not sufficiently mature. Since 2012 the NASA Space Technology Mission Directorate has had a coordinated plan to mature the requisite solar array and electric propulsion technology needed to implement a 30 to 50 kilowatt solar electric propulsion technology demonstration mission. Multiple solar electric propulsion technology demonstration mission concepts have been developed based on these maturing technologies with recent efforts focusing on an Asteroid Redirect Robotic Mission. If implemented, the Asteroid Redirect Vehicle will form the basis for a capability that can be cost-effectively evolved over time to provide solar electric propulsion transportation for a range of follow-on mission applications at power levels in excess of 100 kilowatts.
机译:近50年来,NASA一直在寻求利用大功率太阳能发电作为提高太空运输负担能力的手段。早期的工作重点是可以与航天飞机一起使用的25至50千瓦系统,而后来的工作重点是可以用于重型运载火箭的功率高出近一个数量级的系统。这些努力从未离开概念开发阶段,部分原因是所需的技术还不够成熟。自2012年以来,NASA太空技术任务局制定了一项协调计划,以成熟实施30至50千瓦太阳能电力推进技术示范任务所需的必要太阳能阵列和电力推进技术。基于这些成熟的技术,已经开发了多种太阳能电力推进技术示范任务概念,最近的工作重点是小行星重定向机器人任务。如果实施,小行星重定向飞行器将成为这种能力的基础,该能力可以随着时间的推移经济有效地发展,以提供功率超过100千瓦的一系列后续任务应用的太阳能电力推进运输。

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