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Dynamics and nonlinear control of space electromagnetic docking
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作者 Yuanwen Zhang Leping Yang +1 位作者 Yanwei Zhu Huan Huang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2013年第3期454-462,共9页
Space electromagnetic docking technology, free of propellant and plume contamination, offers continuous, reversible and synchronous controllability, which is widely applied in the future routine on-orbit servicing mis... Space electromagnetic docking technology, free of propellant and plume contamination, offers continuous, reversible and synchronous controllability, which is widely applied in the future routine on-orbit servicing missions. Due to the inherent nonlinearities, couplings and uncertainties of an electromagnetic force model, the dynamics and control problems of them are difficult. A new modeling approach for relative motion dynamics with intersatellite force is proposed. To resolve these control problems better, a novel nonlinear control method for soft space electro-magnetic docking is proposed, which combines merits of artificial potential function method, Lyapunov theory and extended state observer. In addition, the angular momentum management problem of space electromagnetic docking and approaches of handling it by exploiting the Earth's magnetic torque are investigated. Finally, nonlinear simulation results demonstrate the feasibility of the dynamic model and the novel nonlinear control method. 展开更多
关键词 space electromagnetic docking dynamic model soft docking control angular momentum management inter-satellite electromagnetic force on-orbit servicing.
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On Hierarchical Compensation Based Active Disturbance Rejection Control for ACMM Problem of Spacecraft
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作者 LIU Ping CHEN Seng +1 位作者 XUE Wenchao LI Wenbo 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2023年第4期1480-1497,共18页
The attitude control and momentum management(ACMM)problem is quite fundamental for many spacecrafts including space stations,sky laboratories and etc.Instead of single attitude control problem,ACMM problem has to take... The attitude control and momentum management(ACMM)problem is quite fundamental for many spacecrafts including space stations,sky laboratories and etc.Instead of single attitude control problem,ACMM problem has to take account of both disturbance rejection and energy optimization.This paper studies the ACMM problem for general spacecraft.A practical active disturbance rejection control architecture is proposed with hierarchical compensation to different kinds of uncertain dynamics or disturbances.In particular,by integrating RLS into ESO,the constant and sinusoidal disturbance terms to be compensated are reconstructed.Also,the LQR law is implemented to achieve the desired performance of control systems after disturbance compensation.Furthermore,quantitative performances of the generalized ESO,the RLS algorithm and the closed-loop tracking system are rigorously analyzed.Finally,the results under 9-DOF semi-physical test environment show the effectiveness of our control method. 展开更多
关键词 Active disturbance rejection control attitude control and momentum management extended state observer hierarchical compensation
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