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Evaluation of the dynamic environment of an asteroid: applications to 433 eros

机译:小行星动态环境评估:应用于433 eros

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This paper presents methods of analysis to quickly and systematically evaluate the dynamical environment close to an asteroid, concentrating on the effect of the asteroid's gravity field and rotation state on a spacecraft orbit. Such an analysis is useful and needed for missions to small solar system bodies such as asteroids and comets where the true mass, gravity field, and rotation state will not be known until after the spacecraft rendezvous with the body and these quantities are estimated. Generally, after these quantities have been estimated the complete mission profile must be re-designed in accordance with the actual values found at the asteroid. An integral part of this re-design is the characterization of dynamics close to the asteroid, specifically the computation of orbit stability close to the body before large perturbations are experienced. This paper presents numerical computations of such an evaluation applied to the asteroid 433 Eros, the target of the NEAR mission, using preliminary models of the asteroid obtained during NEAR's December 1998 flyby of Eros.
机译:本文提出了分析方法,以快速,系统地评估靠近小行星的动力学环境,着重研究小行星的重力场和旋转状态对航天器轨道的影响。这样的分析对于执行对小型太阳系物体(如小行星和彗星)的任务是有用的,并且是必需的,在航天器与物体会合并估算出这些量之后,才知道真实的质量,重力场和旋转状态。通常,在估算了这些数量之后,必须根据在小行星上发现的实际值来重新设计完整的任务概况。重新设计不可或缺的部分是接近小行星的动力学特性,特别是在经历大的扰动之前计算靠近人体的轨道稳定性。本文使用在NEAR 1998年12月掠过爱神星时获得的小行星的初步模型,对应用于NEAR 433小行星的评估进行了数值计算。

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