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Inverse optimal stabilization for spacecraft rendezvous on elliptical orbits

机译:椭圆轨道交会航天器的最优逆稳定性

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This paper investigates the spacecraft rendezvous problem with the target spacecraft on an arbitrary elliptical orbit. The relative motion of two spacecrafts is established based on the T-H equations. In order to avert some time-varying model parameters, a variable transformation approach is introduced to obtain the new state-space equations. Then, the control laws are designed based on backstepping method. With the analysis by a Lyapunov approach, the proposed control laws can guarantee the asymptotic stability of the closed-loop system and are also optimal with respect to a certain performance index, simulation results are presented to illustrate the effectiveness of the proposed approach.
机译:本文研究目标航天器在任意椭圆轨道上的航天器交会问题。基于T-H方程建立两个航天器的相对运动。为了避免某些随时间变化的模型参数,引入了一种变量转换方法来获得新的状态空间方程。然后,基于反推法设计控制律。通过Lyapunov方法的分析,所提出的控制律可以保证闭环系统的渐近稳定性,并且在一定的性能指标上也是最优的,仿真结果表明了所提出方法的有效性。

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