Title :
Mixed Saturating H2 / H∞ state-feedback design for microsatellite attitude control
Author :
Liu Hua ; Guo Lei ; Yang Zhaohua ; Han Chao
Author_Institution :
Sch. of Instrum. Sci. & Opto-Electron. Eng., Beijing Univ. of Aeronaut. & Astronaut., Beijing, China
Abstract :
The pointing accuracy of microsatellite is vulnerable to space environmental disturbances and the internal uncertainty of moment-of-inertia variation due to its smaller size and weight. The attitude control of microsatellite has been a difficult problem due to the disturbances and uncertainty, as well as the combination of control actuators. The H∞ control can guarantee the robustness stability against the disturbances and the moment-of-inertia uncertainty, and the H2 control gives considerations to the rms performance. In this paper the mixed H2/H∞ state-feedback controller is designed for attitude controller design of microsatellite. The nonlinear input uncertainty and input saturation is considered, by using linear matrix inequality method, the mixed H2/H∞ state-feedback controller is designed, which achieves a balanced performance between H2 and H∞ objectives. The simulation results demonstrate that the presented controller is robust and have good steady-state and dynamic performance.
Keywords :
H∞ control; actuators; attitude control; control system synthesis; linear matrix inequalities; nonlinear control systems; stability; state feedback; uncertain systems; H∞ control; H2-H∞ state-feedback design; control actuators; linear matrix inequality method; microsatellite attitude control; moment-of-inertia variation; nonlinear input uncertainty; rms performance; robustness stability; space environmental disturbances; Analytical models; Attitude control; Educational institutions; Electronic mail; Robustness; Stability analysis; Uncertainty; Attitude Control; Control Saturation; H2 / H∞; Microsatellite; Robust Control;
Conference_Titel :
Control Conference (CCC), 2010 29th Chinese
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-6263-6