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An enhanced anti-disturbance attitude control law for flexible spacecrafts subject to multiple disturbances

机译:受到多种干扰的挠性航天器的增强抗干扰姿态控制律

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摘要

As well-known disturbance rejection methods, active disturbance rejection control and disturbance observer-based control can effectively improve the control performances of complex systems in the presence of disturbances. However, the accurate rejection of multiple disturbances for control systems of practical engineering, for example, the attitude control system of flexible spacecraft, is still a bottleneck problem. In order to further improve the anti-disturbance capability and reduce the conservativeness, this paper proposes a novel enhanced anti-disturbance control law for the attitude control system of flexible spacecraft by combining active disturbance rejection control and disturbance observer-based control in a unified framework. More specifically, the disturbance from flexible vibration is described by an uncertain exogenous system based on the partially known information including elastic damping ratios and modal frequencies. The disturbance observer-based control is utilized to estimate and thereby reject this disturbance. On the other hand, the other disturbances such as external environmental disturbance and complex model nonlinearity are merged into a equivalent disturbance with bounded derivative, which is compensated by using the active disturbance rejection control law. Stability and robustness analysis are carried out for the disturbance observer and extended state observer. Finally, simulation results of low-earth-orbit flexible satellite are presented to verify the effectiveness of proposed methods.
机译:作为众所周知的扰动抑制方法,主动扰动抑制控制和基于扰动观察者的控制可以有效地改善存在扰动的复杂系统的控制性能。然而,对于实际工程的控制系统,例如挠性航天器的姿态控制系统,如何准确地消除多重干扰仍然是一个瓶颈问题。为了进一步提高抗干扰能力,降低保守性,在统一框架下将主动扰动抑制控制和基于扰动观测器的控制相结合,提出了一种新的增强型挠性航天器姿态控制系统的增强抗扰动控制律。 。更具体地,基于不确定的外源系统,基于包括弹性阻尼比和模态频率在内的部分已知信息,来描述来自柔性振动的干扰。基于干扰观察者的控制用于估计并因此拒绝此干扰。另一方面,将其他干扰(例如外部环境干扰和复杂模型非线性)合并为带边界导数的等效干扰,并使用主动干扰抑制控制律对其进行补偿。针对干扰观测器和扩展状态观测器进行了稳定性和鲁棒性分析。最后,给出了低地球轨道柔性卫星的仿真结果,验证了所提方法的有效性。

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