DocumentCode
1830290
Title
Using LQG-LTR control law to improve the performance of direct drive rotary positioning system subject to uncertain inertia load
Author
Wang, Xiaodong
Author_Institution
Sch. of Autom. Sci. & Electr. Eng., Beihang Univ., Beijing, China
fYear
2011
fDate
17-20 Aug. 2011
Firstpage
945
Lastpage
948
Abstract
Rotary positioning system, which usually uses direct drive scheme, is often used as motion simulator, radar or satellite antenna, etc. Direct drive is that the torque motor drives the load directly without any transmission like gears, belt or ball-screw. This cancels the gap and simplifies the machine. However, in motion simulator, changing loads endues it with uncertainty. The LQG (Linear Quadratic Gaussian) control law which is widely used in aeronautics is based on a state representation to control. This sort of control law integrates a Kalman filter that estimates the state space vector of the system, and an optimized state feedback depending on one quadratic criterion. The LTR (Loop Transfer Recovery) tuning is also used and provides an excellent robustness/performance compromise. The LQG-LTR control law is proposed for a single axis motion simulator, which is a DDR rotary position servo system with uncertain inertia load, in this paper. Mathematical model is built, based on which some analyses, which focus on the uncertain load, are made. Moreover, the LQG-LTR control law is designed and analyzed. How to tune the parameters is discussed. The results of simulation and experiment show that, LQG-LTR improves the robustness and dynamic performance significantly.
Keywords
Kalman filters; control system analysis; control system synthesis; linear quadratic Gaussian control; machine control; motion control; motor drives; position control; servomechanisms; state feedback; torque motors; DDR rotary position servo system; Kalman filter; LQG-LTR control law; direct drive rotary positioning system; linear quadratic Gaussian control law; loop transfer recovery tuning; motion simulator; quadratic criterion; state feedback; state space vector estimation; torque motor drives; uncertain inertia load; Load modeling; Mathematical model; Robustness; Servomotors; Synchronous motors; Transfer functions; Uncertainty; LQG-LTR; direct drive; position servo; uncertain inertia;
fLanguage
English
Publisher
ieee
Conference_Titel
Fluid Power and Mechatronics (FPM), 2011 International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-8451-5
Type
conf
DOI
10.1109/FPM.2011.6045898
Filename
6045898
Link To Document