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Analysis on the long term orbital evolution of Molniya satellites

机译:Molniya卫星的长期轨道演化分析

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摘要

Long term evolution of the Molniya satellites are investigated by means of historical data analysis, theoretical analysis and numerical integration. Both the mean motion resonance problem and the critical inclination problem are studied. The period and the amplitude of the semi-major axis for each satellite are obtained analytically and compared with the observational data. In addition, the reason of the observed sudden changes in the center and the amplitude of the oscillating semi-major axes is determined as the effect of the atmosphere drag. For the long period perigee motion, the dominant perturbations come from the luni-solar gravity. A two-degree-of freedom system is established by adding the two periodic terms of the neighbor resonances to the Hamiltonian of the classical single resonance model. In theory, the resulting resonance overlap model is responsible for the chaotic layer between the libration region and the circulation region. In practice, it is applied to explain the quick decay of the earliest Molniya satellites and to study the satellites that still orbiting the Earth at present.
机译:通过历史数据分析,理论分析和数值积分的方法,研究了Molniya卫星的长期演变。研究了平均运动共振问题和临界倾角问题。通过分析获得每个卫星的半长轴的周期和振幅,并将其与观测数据进行比较。另外,观察到的中心和摆动的半长轴的振幅突然变化的原因被确定为大气阻力的影响。对于长时间的近地点运动,主要的扰动来自月球太阳能引力。通过将相邻共振的两个周期项与经典单共振模型的哈密顿量相加,可以建立一个两自由度系统。从理论上讲,所产生的共振重叠模型负责释放区域和循环区域之间的混沌层。在实践中,它被用来解释最早的莫利尼亚(Molniya)卫星的快速衰减,并研究目前仍在绕地球运行的卫星。

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