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首页> 外文期刊>Journal of guidance, control, and dynamics >Point Targeting of Multisatellites via a Virtual Structure Formation Flight Scheme
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Point Targeting of Multisatellites via a Virtual Structure Formation Flight Scheme

机译:通过虚拟结构编队飞行方案进行多卫星点瞄准

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This paper proposes a formation flight control scheme for spacecraft based on the virtual structure approach. The virtual structure approach treats the entire formation as a virtual rigid-body structure. With this approach, the geometric relationship among the spacecraft can be maintained during a maneuver. The information on the geometric relationships is used to complete the formation flight mission. Using rotational kinematics and rigid-body dynamics, the virtual structure formation algorithm calculates the reference position and attitude command to perform the synchronized maneuvers required to point to the desired target. The adaptive sliding mode control law is adopted to make the system track the reference command generated by the formation algorithm. An adaptive sliding mode controller, which combines the merits of the adaptive control scheme and the sliding mode control scheme, is proposed and used to make the spacecraft follow the specified position and attitude command. The stability of the proposed controller is analyzed by using the Lyapunov stability theorem, and a numerical simulation is performed to verify the effectiveness of the proposed formation algorithm and the adaptive sliding mode controller.
机译:提出了一种基于虚拟结构方法的航天器编队飞行控制方案。虚拟结构方法将整个结构视为虚拟刚体结构。通过这种方法,可以在操纵期间维持航天器之间的几何关系。有关几何关系的信息用于完成编队飞行任务。使用旋转运动学和刚体动力学,虚拟结构形成算法计算参考位置和姿态命令,以执行指向所需目标所需的同步操作。采用自适应滑模控制律,使系统跟踪编队算法生成的参考指令。提出了一种自适应滑模控制器,结合了自适应控制方案和滑模控制方案的优点,用于使航天器遵循指定的位置和姿态指令。利用Lyapunov稳定性定理分析了所提出控制器的稳定性,并进行了数值模拟,验证了所提出的编队算法和自适应滑模控制器的有效性。

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