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A Survey Of Earth-Moon Libration Orbits: Stationkeeping Strategies And Intra-Orbit Transfers

机译:地面月球轨道的调查:站台策略和轨道内转移

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摘要

Cislunar space is a readily accessible region that may well develop into a prime staging area in the effort to colonize space near Earth or to colonize the Moon. While there have been statements made by various NASA programs regarding placement of resources in orbit about the Earth-Moon Lagrangian locations, there is no survey of the total cost associated with attaining and maintaining these unique orbits in an operational fashion. Transfer trajectories between these orbits required for assembly, servicing, and positioning of these resources have not been extensively investigated. These orbits are dynamically similar to those used for the Sun-Earth missions, but differences in governing gravitational ratios and perturbation sources result in unique characteristics. We implement numerical computations using high fidelity models and linear and nonlinear targeting techniques to compute the various maneuver (Delta)V and temporal costs associated with orbits about each of the Earth-Moon Lagrangian locations (L1, L2, L3, L4, and L5). From a dynamical system standpoint, we speak to the nature of these orbits and their stability. We address the cost of transfers between each pair of Lagrangian locations.
机译:顺月空间是一个易于接近的区域,可以很容易地发展成一个主要的登台区域,以努力殖民地球附近的空间或殖民月球。尽管各种NASA计划已就拉格朗日地位置的轨道上的资源放置问题发表了声明,但并未对与以运营方式获得和维持这些独特轨道相关的总成本进行调查。这些资源的组装,维修和定位所需的这些轨道之间的转移轨迹尚未得到广泛研究。这些轨道与用于太阳-地球任务的轨道动态相似,但是控制引力比和扰动源的差异会产生独特的特征。我们使用高保真模型以及线性和非线性目标技术来实施数值计算,以计算与每个地球月亮拉格朗日位置(L1,L2,L3,L4和L5)的轨道相关的各种机动(V)和时间成本。从动力学系统的角度,我们谈到这些轨道的性质及其稳定性。我们解决了每对拉格朗日位置之间的交通费用。

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    Vaughn, Frank; Folta, David;

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  • 年度 2004
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