Title :
Centralized P/PI control system design based on equivalent transfer functions for unstable TITO process
Author :
Besta, Chandra Shekar ; Chidambaram, M.
Author_Institution :
Dept. of Chem. Eng., Indian Inst. of Technol. Madras, Chennai, India
Abstract :
Established equivalent transfer function (ETF) matrix method for stable MIMO systems is extended to unstable systems to design multivariable proportional and integral (PI) controllers. The simplified decoupler decomposes the unstable multi-loop systems into independent loops with ETFs as the resultant decoupled process model having unstable poles. Single loop PI controllers are designed by the synthesis method based on the unstable ETFs. Since the overshoot is higher for the unstable systems, a double-loop structure is used to reduce the overshoot. To stabilize the unstable system, inner loop P controllers are designed for the diagonal elements of ETFs by the synthesis method. Further, for the stabilized inner-loop system, diagonal PI controllers are designed based on the identified simple First order plus time-delay (FOPTD) model. Simulation results show that the designed control system gives a better performance than that reported in literature.
Keywords :
MIMO systems; PI control; centralised control; control system synthesis; delays; multivariable control systems; transfer functions; ETF matrix method; FOPTD model; TITO process; centralized P-PI control system design; control system design; decoupled process model; diagonal PI controllers; double-loop structure; equivalent transfer function matrix method; first order plus time-delay model; inner loop P controllers; multiloop systems; multivariable proportional-integral controllers; single loop PI controllers; Arrays; Control systems; Delay effects; Equations; Mathematical model; Process control; Transfer functions;
Conference_Titel :
Industrial and Information Systems (ICIIS), 2014 9th International Conference on
Conference_Location :
Gwalior
Print_ISBN :
978-1-4799-6499-4
DOI :
10.1109/ICIINFS.2014.7036613