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Flyby Characterization of Lower-degree Spherical Harmonics around Small Bodies

机译:小物体周围低度球面谐波的Flyby表征

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Interest in studying small bodies has grown significantly in the last two decades, and there are a number of past, present, and future missions. These small body missions challenge navigators with significantly different kinds of problems than the planets and moons do. The small bodies' shape is often irregular and their gravitational field significantly weak, which make the designing of a stable orbit a complex dynamical problem. In the initial phase of spacecraft rendezvous with a small body, the determination of the gravitational parameter and lower-degree spherical harmonics are of crucial importance for safe navigation purposes. This motivates studying how well one can determine the total mass and lower-degree spherical harmonics in a relatively short time in the initial phase of the spacecraft rendezvous via flybys. A quick turnaround for the gravity data is of high value since it will facilitate the subsequent mission design of the main scientific observation campaign. We will present how one can approach the problem to determine a desirable flyby geometry for a general small body. We will work in the non-dimensional formulation since it will generalize our results across different size/mass bodies and the rotation rate for a specific combination of gravitational coefficients.
机译:在过去的二十年中,对研究小型机构的兴趣显着增加,并且有许多过去,现在和将来的任务。这些小任务使导航员面临的问题与行星和卫星所面临的问题大不相同。小物体的形状通常是不规则的,其引力场明显较弱,这使得稳定轨道的设计成为一个复杂的动力学问题。在航天器交会的初期,小物体的重力参数和低度球谐函数的确定对于安全导航至关重要。这激发了人们研究如何在相对较短的时间内通过飞越式交会在较短的时间内确定总质量和较低度的球谐函数的能力。快速处理重力数据具有很高的价值,因为它将有助于主要科学观测活动的后续任务设计。我们将介绍如何解决这个问题,从而为一般的小型机体确定理想的飞越几何形状。我们将采用无量纲公式,因为它将概括我们在不同尺寸/质量物体和特定重力系数组合的旋转速率下的结果。

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