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A METHODOLOGY FOR TRACKING CONTROL FOR FORMATION FLIGHT OF SATELLITES

机译:跟踪控制卫星形成飞行的方法

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This paper develops a methodology for the tracking control of satellite formation flight in the presence of external disturbances. The control methodology is composed of two steps. In the first step, an exact control strategy is developed for a nominal system model which provides the best assessment of real-life uncertainties. Upon using results from analytical dynamics, a closed-form control input is derived such that the formation configuration requirements are satisfied. In the second step, an additive robust controller is designed to compensate for the external disturbances to which the satellite formation system may be subjected. A gain adaptation law is developed that automatically updates the control gain in real time to adjust for the presence of environmental disturbances while keeping the precision of the tracking to within user-specified bounds. An additive combination of the two controllers enables precision tracking control for the satellite formation without a priori information about the bounds on the uncertainties and disturbances imposed on the formation system. Numerical simulations demonstrate the accuracy and effectiveness of the proposed two-step control methodology in which a desired formation configuration is to be maintained under unknown environmental disturbances.
机译:本文在存在外部干扰的情况下开发了卫星形成飞行的跟踪控制方法。控制方法由两个步骤组成。在第一步中,为标称系统模型开发了精确的控制策略,这提供了对现实生活不确定性的最佳评估。在使用分析动态的使用结果时,导出了闭合形​​式控制输入,使得满足形成配置要求。在第二步骤中,设计成鲁棒控制器被设计成补偿可以对卫星形成系统进行的外部干扰。开发了一个增益适应法,它将实时更新控制增益,以便在存在环境干扰的情况下,同时保持跟踪的精度在用户指定的界限内。两个控制器的添加剂组合使得能够为卫星形成的精确跟踪控制,而无需先验的信息,这些信息有关在地层系统上施加的不确定性和干扰上的界限。数值模拟证明了所提出的两步控制方法的准确性和有效性,其中需要在未知的环境干扰下维持所需的形成配置。

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