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Recent advances in nuclear powered electric propulsion for space exploration

机译:太空探索用核动力推进技术的最新进展

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Nuclear and radioisotope powered electric thrusters are being developed as primary in space propulsion systems for potential future robotic and piloted space missions. Possible applications for high-power nuclear electric propulsion include orbit raising and maneuver-ing of large space platforms, lunar and Mars cargo transport, asteroid rendezvous and sample return, and robotic and piloted planetary missions, while lower power radioisotope electric propulsion could significantly enhance or enable some future robotic deep space science missions. This paper provides an overview of recent US high-power electric thruster research programs, describing the operating prin-ciples, challenges, and status of each technology. Mission analysis is presented that compares the benefits and performance of each thrus-ter type for high priority NASA missions. The status of space nuclear power systems for high-power electric propulsion is presented. The paper concludes with a discussion of power and thruster development strategies for future radioisotope electric propulsion systems.
机译:核动力和放射性同位素动力电动推进器正在发展成为空间推进系统的主要设备,用于未来可能进行的机器人和无人驾驶太空任务。大功率核电推进的可能应用包括大型空间平台的升轨和机动,月球和火星的货物运输,小行星的会合和样品返回以及机器人和无人驾驶的行星飞行任务,而低功率的放射性同位素电推进则可能会显着增强或进行一些未来的机器人深空科学任务。本文概述了最近的美国大功率电动推进器研究计划,描述了每种技术的工作原理,挑战和现状。提出了任务分析,比较了高优先级NASA任务的每种推土机类型的收益和性能。介绍了用于大功率电力推进的空间核动力系统的现状。本文最后讨论了未来放射性同位素电力推进系统的动力和推进器开发策略。

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