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NEXT Ion Propulsion System Configurations and Performance for Saturn System Exploration

机译:NEXT离子推进系统的配置和用于土星系统探索的性能

摘要

The successes of the Cassini/Huygens mission have heightened interest to return to the Saturn system with focused robotic missions. The desire for a sustained presence at Titan, through a dedicated orbiter and in-situ vehicle, either a lander or aerobot, has resulted in definition of a Titan Explorer flagship mission as a high priority in the Solar System Exploration Roadmap. The discovery of active water vapor plumes erupting from the tiger stripes on the moon Enceladus has drawn the attention of the space science community. The NASA's Evolutionary Xenon Thruster (NEXT) ion propulsion system is well suited to future missions to the Saturn system. NEXT is used within the inner solar system, in combination with a Venus or Earth gravity assist, to establish a fast transfer to the Saturn system. The NEXT system elements are accommodated in a separable Solar Electric Propulsion (SEP) module, or are integrated into the main spacecraft bus, depending on the mission architecture and performance requirements. This paper defines a range of NEXT system configurations, from two to four thrusters, and the Saturn system performance capability provided. Delivered mass is assessed parametrically over total trip time to Saturn. Launch vehicle options, gravity assist options, and input power level are addressed to determine performance sensitivities. A simple two-thruster NEXT system, launched on an Atlas 551, can deliver a spacecraft mass of over 2400 kg on a transfer to Saturn. Similarly, a four-thruster system, launched on a Delta 4050 Heavy, delivers more than 4000 kg spacecraft mass. A SEP module conceptual design, for a two thruster string, 17 kW solar array, configuration is characterized.
机译:卡西尼号/惠更斯号任务的成功引起了人们对重返机器人任务土星系统的兴趣。人们希望通过专用的轨道飞行器和就地飞行器(无论是着陆器还是自动飞行器)在土卫六持续存在,导致将土卫六探险家的旗舰任务定义为太阳系探索路线图中的高度优先事项。月亮土卫二上的老虎条纹喷出的活跃水蒸气羽流的发现引起了空间科学界的关注。 NASA的进化型氙气推进器(NEXT)离子推进系统非常适合未来的土星飞行任务。 NEXT在内部太阳系中使用,与金星或地球引力辅助装置结合使用,以建立向土星系统的快速转移。 NEXT系统元素可容纳在可分离的太阳能推进(SEP)模块中,或根据任务架构和性能要求集成到主航天器总线中。本文定义了一系列NEXT系统配置(从两个到四个推进器)以及所提供的Saturn系统性能。在到达土星的整个行程时间内,对传递的质量进行参数评估。解决了运载火箭选件,重力辅助选件和输入功率水平以确定性能敏感性的问题。在Atlas 551上发射的一个简单的两推进器NEXT系统可以在转移到土星的过程中传送超过2400千克的航天器质量。同样,在Delta 4050 Heavy上发射的四推力系统可运载4000公斤以上的航天器。针对两个推进器管柱,17 kW太阳能电池阵列的SEP模块概念设计进行了表征。

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