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Attitude control of magnetically actuated satellites with an uneven inertia distribution

机译:惯性分布不均匀的磁控卫星的姿态控制

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This paper addresses magnetic attitude control of a satellite with one axis of inertia significantly lower than that of the other two. With onboard resources often limited, this paper considers the development of an effective control strategy that remains easy to implement. Often used in this type of application, the classical 'torque-projection' approach is shown to be unsuitable for satellites with an uneven inertia distribution. To tackle the weaknesses in this approach a new 'weighted' PD approach is proposed, with the control torque determined through minimization of a simple cost function. Through a similar philosophy, a feed-forward compensator is designed to supplement the feedback control and improve the disturbance rejection characteristics of the controller. Floquet analysis is used to verify stability of the control strategy for the nominal case and satellites with uncertainties. Simulations carried out on a high fidelity model demonstrate the effectiveness of the proposed control law and the significant performance benefits offered over existing approaches.%Department of Aeronautical and Automotive Engineering, Loughborough University, Loughborough, LE11 3TU, UK;Department of Aeronautical and Automotive Engineering, Loughborough University, Loughborough, LE11 3TU, UK;
机译:本文讨论了一个惯性轴显着低于其他两个惯性轴的卫星的磁姿态控制。由于板载资源通常很有限,因此本文考虑了开发一种易于实施的有效控制策略。经典的“扭矩投影”方法通常用于这种类型的应用中,不适用于惯性分布不均匀的卫星。为了解决该方法的缺点,提出了一种新的“加权” PD方法,其控制扭矩通过最小化简单成本函数来确定。通过类似的原理,设计了前馈补偿器,以补充反馈控制并改善控制器的干扰抑制特性。浮球分析用于验证标称情况和不确定性卫星的控制策略的稳定性。在高保真度模型上进行的仿真证明了拟议的控制法的有效性以及与现有方法相比所提供的显着性能优势。英国拉夫堡大学拉夫堡大学航空与汽车工程系,LE11 3TU,英国;航空和汽车工程系英国拉夫堡拉夫堡大学,LE11 3TU;

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