会议专题

Neural Network Adaptive Robust Attitude Control of Spacecraft

A neural network adaptive robust controller for spacecraft attitude tracking is developed in this paper. The proposed controller achieves attitude tracking for a rigid spacecraft with a VSCMG cluster in the presence of parametric uncertainties and timevariation, taking into account dynamics of actuator and external disturbance. It is constructed by a nonlinear feedback compensator, a neural network estimator and a robust controller. The three-layered neural network is used to estimate and eliminate the unknown function with uncertain parameters. The robust controller is used to enhance the robustness of controller to approximate error and external disturbance. Lyapunov stability theory is considered to guarantee the stability of the closed-loop dynamics with the control law. As a result, the proposed controller ensures the uniform ultimate boundedness in tracking error and robustness to disturbance.

Neural networks Adaptive control Robust Control Spacecraft attitude control

Xiyuan Huang Qing Wang Chaoyang Dong

School of Automation Science and Electrical Engineering Beijing University of Aeronautics and Astron School of Aeronautical Science and Engineering Beijing University of Aeronautics and Astronautics Be

国际会议

2009 IEEE International Conference on Intelligent Computing and Intelligent Systems(2009 IEEE 智能计算与智能系统国际会议)

上海

英文

1650-1654

2009-11-20(万方平台首次上网日期,不代表论文的发表时间)