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Spacecraft reorientation control in presence of attitude constraint considering input saturation and stochastic disturbance

机译:考虑输入饱和度和随机干扰的姿态约束下的航天器重定向控制

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摘要

This paper proposes a novel feedback control law for spacecraft to deal with attitude constraint, input saturation, and stochastic disturbance during the attitude reorientation maneuver process. Applying the parameter selection method to improving the existence conditions for the repulsive potential function, the universality of the potential-function-based algorithm is enhanced. Moreover, utilizing the auxiliary system driven by the difference between saturated torque and command torque, a backstepping control law, which satisfies the input saturation constraint and guarantees the spacecraft stability, is presented. Unlike some methods that passively rely on the inherent characteristic of the existing controller to stabilize the adverse effects of external stochastic disturbance, this paper puts forward a nonlinear disturbance observer to compensate the disturbance in real-time, which achieves a better performance of robustness. The simulation results validate the effectiveness, reliability, and universality of the proposed control law.
机译:提出了一种新颖的航天器反馈控制律,用以处理姿态重新定向过程中的姿态约束,输入饱和和随机干扰。将参数选择方法应用于改善排斥势函数的存在条件,增强了基于势函数的算法的通用性。此外,利用由饱和转矩与指令转矩之差驱动的辅助系统,提出了一种满足输入饱和约束并保证航天器稳定性的反推控制律。与某些被动地依靠现有控制器的固有特性来稳定外部随机干扰的不利影响的方法不同,本文提出了一种非线性干扰观测器来实时补偿干扰,从而实现了更好的鲁棒性。仿真结果验证了所提控制律的有效性,可靠性和通用性。

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