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Real time control of satellite formation reconfiguration based on Gauss Pseudospectral Method

机译:基于高斯伪谱方法的卫星编队重构实时控制

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摘要

In this paper, a real-time controller is presented to control the reconfiguration of satellite formation. The control algorithm is based on Gauss Pseudospectral Method (GPM). Different from the way using GPM for trajectory planning, the proposed controller only utilizes the Karash-Kuhn-Tucker (KKT) multipliers generated during GPM. By using costate mapping theory, the initial costate information is obtained, which, together with the Hamilton canonical model, could be conveniently used to compute the optimal control for the formation reconfiguration. To eliminate the errors caused by model linearization and external disturbance, costate information is re-initialized periodically during the control process. The rapid convergence of GPM ensures that the reinitialization will not cause time lag in the real-time control. Also, compared to the conventional formation control methods, the controller does not need a guidance law during the reconfiguration maneuver. The simulations demonstrated the validity of the controller. The reconfiguration of formation can be carried out effectively both in time optimal case and in fuel optimal case.
机译:在本文中,提出了一种实时控制器来控制卫星编队的重新配置。该控制算法基于高斯伪谱方法(GPM)。与使用GPM进行轨迹规划的方式不同,建议的控制器仅利用在GPM期间生成的Karash-Kuhn-Tucker(KKT)乘数。通过使用肋骨映射理论,可以获得初始肋骨信息,该信息与汉密尔顿规范模型一起可以方便地用于计算地层重构的最优控制。为了消除由模型线性化和外部干扰引起的误差,在控制过程中会定期重新初始化昂贵的信息。 GPM的快速收敛确保了重新初始化不会在实时控制中造成时间延迟。而且,与常规的编队控制方法相比,在重新配置操纵期间,控制器不需要制导律。仿真证明了控制器的有效性。在时间最佳的情况下和在燃料最佳的情况下,都可以有效地进行地层的重构。

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