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Ensuring Dynamic Stability of the Orbital Structure of the Arktika-M Space System

机译:确保Arktika-M空间系统轨道结构的动态稳定性

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The control of the orbital structure of the satellite constellation (SC) of continuous service with spacecraft in highly elliptical orbits of the Molniya type is considered. For ensuring the SC dynamic stability, it is proposed to use passive, active, and combined approaches to the SC orbital structure control. A statement of the problem to ensur e dynamic stability is given and results of its solution for a particular variant of the orbital construction of the Arktika-M space system are presented for the passive control approach. The proposed orbital structure control is based on minimizing the evolution-induced space-time deformation of the orbital structure by means of differentiated selection of initial parameters of orbits at the stages of the SC deployment and replenishment and by means of control of the spacecraft's ground track at the SC operation stage. Using this control method is especially important with long active life spans of spacecraft and limitations on propellant margins for orbit correction.
机译:考虑了在莫利尼亚型高椭圆轨道上利用航天器控制连续服务的卫星星座(SC)的轨道结构。为了确保SC的动态稳定性,建议采用被动,主动和组合的方法进行SC轨道结构控制。给出了确保动态稳定性的问题的陈述,并针对被动控制方法提出了针对Arktika-M空间系统的轨道构造特定变体的解决方案结果。拟议的轨道结构控制是基于通过在SC部署和补充阶段对轨道的初始参数进行有区别的选择以及通过控制航天器的地面轨道来使轨道结构因演化引起的时空变形最小化而进行的在SC操作阶段。使用这种控制方法对于航天器的长寿命寿命以及推进轨道的推进剂余量的限制特别重要。

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