Title :
Disturbance attenuation in test turntable dynamic unbalance of iterative learning control
Author :
Zhongda, Lu ; Fengxia, Xu ; Jinfeng, Zhang ; Furong, Liu
Author_Institution :
Coll. of Comput. & Control Eng., Qiqihar Univ., Qiqihar, China
Abstract :
The turntable exist multi-period disturbance torque be obtained by setting up the dynamic unbalance model of three-axis test turntable. The multi-period disturbance torque relate to three-axis rotate speed of test turntable. Where presents the system model with position dependent periodic disturbance with only continuous Lipschitz condition imposed, deduces the condition of position dependent multi-period disturbance translating into time dependent periodic steady-state error. A novel iterative learning control method is proposed for attenuation multi-period error of three-axis test turntable, constructed learning operator by error convergence analytic, proposes the condition of compensate multi-period steady-state error, Simulation results verify which can compensate successfully period steady-stat error caused by dynamic unbalance of test turntable system, and proves this method can improve the control precision of test turntable system.
Keywords :
adaptive control; compensation; convergence; gauges; inertial systems; iterative methods; learning systems; attenuation multiperiod error; continuous Lipschitz condition; disturbance attenuation; error convergence analytic; inertial gauge measurement device; iterative learning control; learning operator; multiperiod disturbance torque; multiperiod steady-state error compensation; test turntable dynamic unbalance; three-axis test turntable; Angular velocity; Convergence; Equations; Iterative methods; Mathematical model; Steady-state; Torque;
Conference_Titel :
Systems and Control in Aeronautics and Astronautics (ISSCAA), 2010 3rd International Symposium on
Conference_Location :
Harbin
Print_ISBN :
978-1-4244-6043-4
Electronic_ISBN :
978-1-4244-7505-6
DOI :
10.1109/ISSCAA.2010.5632309