On-Orbit-Servicing Spacecraft Flyaround Orbit Design and LQR Keep Control in Eccentric Orbits

Wang Feng, Cao Xi-bin, Chen Xueqin
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引用次数: 6

Abstract

The paper presents the initialization condition for chaser flying around target and optimal keeping control algorithm to satisfy the requirement of on-orbit-servicing in eccentric orbits. The necessary condition for chaser fly around is presented by detailed analyzing with the time variant linear relative motion formula and resolution. Then, the condition for target to locate at the center of fly around cycle and the method to determine the shape and aperture of cycle are also presented. Considering the effect of perturbation, the paper designs a discrete LQR optimal controller with constraint control vector to keep chaser in scheduled cycle. And three control error boxes, which enable the controller work in the reasonable error areas and avoid much fuel be wasted for the measure error are designed. Finally, example design and simulation are carried out. The results are analyzed, and it is shown that the design method and control algorithm are rational and valid.
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在轨服务航天器绕轨道设计与偏心轨道LQR保持控制
提出了跟踪器绕目标飞行的初始化条件和最优保持控制算法,以满足偏心轨道上的在轨服务要求。通过对时变线性相对运动公式和分辨率的详细分析,给出了追逐器绕飞的必要条件。在此基础上,给出了目标位于绕飞环中心的条件以及绕飞环形状和孔径的确定方法。考虑扰动的影响,设计了一种带约束控制向量的离散LQR最优控制器,使跟踪器保持在预定周期内。设计了三个控制误差盒,使控制器工作在合理的误差范围内,避免了测量误差造成的大量燃料浪费。最后进行了算例设计和仿真。分析结果表明,设计方法和控制算法是合理有效的。
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