DocumentCode :
3743580
Title :
Static anti-windup design for discrete-time large-scale cross-directional saturated linear control systems
Author :
I. Queinnec;S. Tarbouriech;S. Gayadeen;L. Zaccarian
Author_Institution :
CNRS, LAAS, 7 avenue du Colonel Roche, F-31400 Toulouse, France and Univ. Toulouse, F-31400, France
fYear :
2015
Firstpage :
3331
Lastpage :
3336
Abstract :
The paper proposes some design strategies of static anti-windup control schemes for systems describing cross-directional processes. These are processes in which the variations of a variable in a profile orthogonal to the direction of propagation of the variable are controlled. Actually, the anti-windup synthesis approach takes advantages of the particular structure of such systems for which the interaction map between sensors and actuators along the propagation direction is expressed in terms of reduced singular value decompositions. The approach is developed within the framework of a synchrotron machine, in which electrons are accelerated in a closed circular path and bent by strong electromagnetic fields. Different results are proposed with increasing computational complexity to evaluate the potential interest of low dimension problems to solve the anti-windup design problem.
Keywords :
"Actuators","Chlorine","Saturation magnetization","Transfer functions","Yttrium","Process control","Sensors"
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type :
conf
DOI :
10.1109/CDC.2015.7402720
Filename :
7402720
Link To Document :
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