Title :
Digital controller design for analog MIMO systems with multiple I/O delays
Author :
Ali, Warsame H. ; Zhang, Yongpeng ; Cofie, Penrose ; Jian Zhang ; Vaman, Dhadesugoor
Author_Institution :
Dept. of Electr. & Comput. Eng., Prairie View A&M Univ., Prairie View, TX, USA
Abstract :
This paper proposes a discretization scheme and an optimal digital cascaded plus state-feedback controller for Multiple-Input-Multiple-Output (MIMO) continuous-time systems with multiple time delays in both inputs and outputs. Firstly, an equivalent discrete-time model is obtained from the MIMO analog time-delayed system. The equivalent discrete-time model and a partially predetermined digital cascaded controller are formulated as an augmented discrete-time state-space system for state-feed forward and state-feedback Linear Quadratic Regulator (LQR) design. As a result, the parameters of the cascaded controller and its associated state-feedback controller can be determined by tuning the weighting matrices in the LQR optimal design. Then a discrete-time optimal observer for the MIMO analog time-delayed system is constructed for the implementation of the designed state-feedback digital controller. The proposed methodology has been verified through both simulation and experiment on the induction motor drive system.
Keywords :
MIMO systems; continuous time systems; control system synthesis; delays; digital control; discrete time systems; feedforward; linear quadratic control; observers; state feedback; state-space methods; LQR design; MIMO analog time-delayed system; augmented discrete-time state-space system; digital controller design; equivalent discrete-time model; induction motor drive system; linear quadratic regulator design; multiple I-O delays; multiple-input-multiple-output continuous-time systems; optimal digital cascaded plus state-feedback controller; optimal observer; partially predetermined digital cascaded controller; state-feedforward; Delay; Delay effects; Equations; Induction motors; MIMO; Mathematical model; Observers; Digital control; LQR; MIMO; State-space model; Time delays;
Conference_Titel :
Control and Decision Conference (CCDC), 2012 24th Chinese
Conference_Location :
Taiyuan
Print_ISBN :
978-1-4577-2073-4
DOI :
10.1109/CCDC.2012.6244009