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Quantitative and Qualitative Results from Orbital Plane Precession of Medium-high Near-circular Orbits

机译:中高近圆形轨道的轨道平面预测的定量和定性结果

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The theoretical analysis of Allan & Cook on the mechanisms of orbital plane precession for medium-high circular orbits is briefly reviewed, and the fact that there are two types of possible precession mechanisms (not only the classical Laplace precession) for the long-term evolution of the orbital plane of medium-high near-circular orbits is especially emphasized.Based on two types of possible precession mechanisms, the analytical formulae of the quantitative variation ranges of orbital inclination derived by Zhao et al.are revised, and the complete analytical formulae for medium-high near-circular orbits are obtained.The qualitative characteristic formula for the variation of orbital inclination-longitude of the ascending node of geostationary orbits in Zhao et al.is generalized to medium-high near-circular orbits, and the more general analytical formulae are obtained.Taking the near-circular orbits with the altitudes as the geosynchronous and medium orbits of the BeiDou navigation satellites as examples, the theoretically quantitative and qualitative results from orbital plane precession are verified by the first-order semianalytical calculations with simplified models and numerical calculations with precise models to a certain extent.Moreover, the specific quantitative and qualitative results for medium-high near-circular orbits with the given initial inclinations and different initial longitudes of the ascending node are particularly presented, from which some conclusions are summarized.Due to the high similarity of orbital plane precession for natural satellites to that of artificial satellites, the results and methodology in this paper can be directly extended to the long-term evolution of the orbital plane for natural satellites and help to understand and explain some orbit dynamic phenomena of natural satellites.
机译:Allan&amp的理论分析;简要介绍了中高圆形轨道的轨道平面进展的机制,以及有两种类型的可能的进样机制(不仅是古典LAPALL PREAPES),用于介质的轨道平面的长期演变 - 在两种可能的进样机制上特别强调了高圆形轨道,通过Zhao等人修正的轨道倾向的定量变化范围的分析公式,以及用于中高附近的完整分析公式获得圆形轨道。Zhao等人在地球静止轨道上升节点的轨道倾斜度变化的定性特征公式推广到中高圆形轨道,并且获得了更通用的分析公式。扎根近圆形轨道与高度作为北欧导航卫星的地球同步和中型轨道作为示例,理论通过一定的模型和数值计算通过一定程度的模型和数值计算来验证来自轨道平面预示的定量和定性结果.OWOROVER,中高近圆形轨道的具体定量和定性结果,具有精确的模型和数值计算。鉴于初始倾向和升高节点的不同初始初始纵向,从中概括了一些结论。到轨道平面预测的高度相似性,用于天然卫星的轨道平面预测,对人造卫星的轨道飞机预测的高度相似,本文的结果和方法可以直接延伸到天然卫星的轨道飞机的长期演变,并有助于理解和解释自然卫星的一些轨道动态现象。

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