Title :
Sliding Mode Attitude and Vibration Control of Flexible Spacecraft with Actuator Dynamics
Author :
Hu, Qinglei ; Xie, Lihua ; Wang, Youyi
Author_Institution :
Nanyang Technol. Univ., Singapore
fDate :
May 30 2007-June 1 2007
Abstract :
This paper presents a dual-stage control system design method for the three-axis-rotational maneuver control and vibration stabilization of a spacecraft with flexible appendages embedded with piezoceramics as sensor and actuator. In this design approach, attitude control system and vibration suppression were designed separately using lower order model. Based on the sliding mode control (SMC) theory, a discontinuous attitude control law in the form of the input voltage of the reaction wheel is derived to control the orientation of the spacecraft actuated by the reaction wheel, in which the reaction wheel dynamics is also considered from the real applications point of view. For actively suppressing the induced vibration, strain rate feedback control methods are presented by using piezoelectric materials as additional sensors and actuators bonded on the surface of the flexible appendages. Numerical simulations are performed to show that rotational maneuver and vibration suppression are accomplished in spite of the presence of disturbance torque and parameter uncertainty.
Keywords :
attitude control; control system synthesis; feedback; piezoceramics; piezoelectric actuators; piezoelectric transducers; space vehicles; variable structure systems; vibration control; actuator dynamics; discontinuous attitude control law; disturbance torque; dual-stage control system; flexible spacecraft; lower order model; orientation control; parameter uncertainty; piezoceramics; piezoelectric materials; reaction wheel; sliding mode attitude control; strain rate feedback control methods; three-axis-rotational maneuver control; vibration control; vibration stabilization; vibration suppression; Actuators; Attitude control; Control systems; Piezoelectric materials; Sensor systems; Sliding mode control; Space vehicles; Vibration control; Voltage control; Wheels; actuator dynamics; flexible spacecraft; sliding modecontrol; vibration control;
Conference_Titel :
Control and Automation, 2007. ICCA 2007. IEEE International Conference on
Conference_Location :
Guangzhou
Print_ISBN :
978-1-4244-0818-4
Electronic_ISBN :
978-1-4244-0818-4
DOI :
10.1109/ICCA.2007.4376390