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INITIAL CONSIDERATIONS FOR NAVIGATION AND FLIGHT DYNAMICS OF A CREWED NEAR-EARTH OBJECT MISSION

机译:船员近地对象任务导航和飞行动态的初步思考

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A crewed mission to a Near-Earth Object (NEO) was recently identified as a NASA Space Policy goal and priority. In support of this goal, a study was conducted to identify the initial considerations for performing the navigation and flight dynamics tasks of this mission class. Although missions to a NEO are not new, the unique factors involved in human spaceflight present challenges that warrant special examination. During the cruise phase of the mission, one of the most challenging factors is the noisy acceleration environment associated with a crewed vehicle. Additionally, the presence of a human crew necessitates a timely return trip, which may need to be expedited in an emergency situation where the mission is aborted. Tracking, navigation, and targeting results are shown for sample human-class trajectories to NEOs. Additionally, the benefit of in-situ navigation beacons on robotic precursor missions is presented. This mission class will require a longer duration flight than Apollo and, unlike previous human missions, there will likely be limited communication and tracking availability. This will necessitate the use of more onboard navigation and targeting capabilities. Finally, the rendezvous and proximity operations near an asteroid will be unlike anything previously attempted in a crewed spaceflight. The unknown gravitational environment and physical surface properties of the NEO may cause the rendezvous to behave differently than expected. Symbiosis of the human pilot and onboard navigation/targeting are presented which give additional robustness to unforeseen perturbations.
机译:最近将近地球对象(Neo)的使命被确定为美国宇航局空间政策的目标和优先事项。为了支持这一目标,进行了一项研究,以确定执行该任务课程的导航和飞行动态任务的初步考虑因素。虽然对NEO的任务不是新的,但是人类航天界的独特因素当前挑战认证特殊考试。在使命的巡航阶段,最具挑战性的因素之一是与营业车辆相关的嘈杂的加速环境。此外,人船员的存在需要及时回程,可能需要在使命中止的紧急情况下加快。跟踪,导航和定位结果显示为NeoS的样品级轨迹。此外,提出了原位导航信标在机器人前体任务上的好处。这个使命课程将需要比Apollo更长的持续时间飞行,并且与以前的人类任务不同,通信和跟踪可用性可能会有限。这需要使用更多的车载导航和定位功能。最后,在小行星附近的Rendezvous和近距离操作将与先前在营业的航天飞行器中尝试的任何东西不同。未知的重力环境和Neo的物理表面特性可能导致与预期的不同程度不同。提出了人类飞行员和船上导航/靶向的共生,这给予不可预见的扰动额外的鲁棒性。

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