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首页> 外文期刊>International journal of aerospace engineering >Dynamics and Control of Tethered Satellite System in Elliptical Orbits under Resonances
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Dynamics and Control of Tethered Satellite System in Elliptical Orbits under Resonances

机译:共振下椭圆轨道卫星卫星系统的动态与控制

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This paper studies resonance motions of a tethered satellite system (TSS) in elliptical orbits. A perturbation analysis is carried out to obtain all possible resonance types and corresponding parameter relations, including internal resonances and parametrically excited resonances. Besides, a resonance parametric domain is given to provide a reference for the parameter design of the system. The bifurcation behaviors of the system under resonances are studied numerically. The results show that resonant cases more easily enter chaotic motion than nonresonant cases. The extended time-delay autosynchronization (ETDAS) method is applied to stabilize the chaotic motion to a periodic one. Stability analysis shows that the stable domains become smaller in resonance cases than in the nonresonance case. Finally, it is shown that the large amplitudes of periodic solutions under resonances are the main reason why the system is difficult to control.
机译:本文在椭圆轨道中研究系环卫星系统(TSS)的共振运动。进行扰动分析以获得所有可能的谐振类型和相应的参数关系,包括内部共振和参数激发共振。此外,给出了谐振参数域以提供系统参数设计的参考。在数值上研究了系统下系统的分叉行为。结果表明,共振案例比非共存案例更容易进入混沌运动。应用延长的时间延迟自动同步(ETDAS)方法以使混沌运动稳定到周期性的方法。稳定性分析表明,稳定域在共振壳体中变小于非谐振案例。最后,结果表明,在共振下的周期性溶液的大幅度是系统难以控制的主要原因。

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