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Some orbital characteristics of lunar artificial satellites

机译:月球人造卫星的一些轨道特征

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In this paper we present an analytical theory with numerical simulations to study the orbital motion of lunar artificial satellites. We consider the problem of an artificial satellite perturbed by the non-uniform distribution of mass of the Moon and by a third-body in elliptical orbit (Earth is considered). Legendre polynomials are expanded in powers of the eccentricity up to the degree four and are used for the disturbing potential due to the third-body. We show a new approximated equation to compute the critical semi-major axis for the orbit of the satellite. Lie-Hori perturbation method up to the second-order is applied to eliminate the terms of short-period of the disturbing potential. Coupling terms are analyzed. Emphasis is given to the case of frozen orbits and critical inclination. Numerical simulations for hypothetical lunar artificial satellites are performed, considering that the perturbations are acting together or one at a time.
机译:在本文中,我们提出了一种具有数值模拟的分析理论,以研究月球人造卫星的轨道运动。我们考虑了人造卫星的问题,它受到月球质量的不均匀分布和椭圆轨道上的第三物体(考虑到地球)的干扰。勒让德多项式的偏心度幂次扩展到四次,并用于第三体引起的潜在干扰。我们显示了一个新的近似方程,可以计算卫星轨道的关键半长轴。运用Lie-Hori摄动法直至二阶,以消除扰动电位的短周期项。分析耦合项。重点是冻结轨道和临界倾角的情况。考虑到扰动是一起作用还是一次作用,对假设的月球人造卫星进行了数值模拟。

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