DocumentCode
1783804
Title
Reduced order digital controller design for plants with large time delays
Author
Ergenc, Ali Fuat ; Alikoc, Baran
Author_Institution
Control & Autom. Eng. Dept., Istanbul Tech. Univ., Istanbul, Turkey
fYear
2014
fDate
21-23 May 2014
Firstpage
266
Lastpage
269
Abstract
In process control, inherited large time delays both in feedback line and actuator dynamics compromise the stability and the performance of the system especially with the fast acting controllers. The new method utilizes Kronecker multiplication and palindromic polynomials to reduce the order of the characteristic equation to ease the digital controller design. Furthermore, the method facilitates rightmost root placement to implement controllers which increases the performance of the control action. In this study, we present the new controller design method and its application on an industrial experimental case.
Keywords
control system synthesis; delay systems; digital control; discrete time systems; nonlinear control systems; polynomials; reduced order systems; stability; Kronecker multiplication; actuator dynamics; characteristic equation; discrete-time time delayed system; fast acting controllers; feedback line; large time delays; palindromic polynomials; plants; process control; reduced order digital controller design; root placement; stability; Delays; Discrete-time systems; Polynomials; Robust stability; Stability criteria; Vectors; discrete-time time-delay systems; dominant pole assignment; kronecker product; palindrome polynomials; two-tank liquid level;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, Control and Signal Processing (ISCCSP), 2014 6th International Symposium on
Conference_Location
Athens
Type
conf
DOI
10.1109/ISCCSP.2014.6877865
Filename
6877865
Link To Document