DocumentCode :
1858877
Title :
A self-conditioned implementation of switching controllers for smooth transition in multimode systems
Author :
Yamé, Joseph J. ; Qiao, Hanping ; Kinnaert, Michel
Author_Institution :
Centre de Rech. en Autom. de Nancy, Univ. Henri Poincare, Vandœuvre-lés-Nancy, France
fYear :
2010
fDate :
6-8 Oct. 2010
Firstpage :
528
Lastpage :
533
Abstract :
This paper deals with an important practical control problem in systems that can switch between different operating modes. We presents a self-conditioned implementation of any two-degree-of-freedom (TDOF) controller which allows a smooth transition when switching between a controller acting in closed-loop and another controller in a bank of idle controllers waiting to take over the control loop. Here, the concept underlying the smoothness of mode transition is that of conditioned transfer which is used to mean that after switching, good tracking performance is ensured albeit a jump at plant input may occur. This notion of conditioned transfer is different from the classical notion of bumpless transfer which refers to the requirement that no bump occurs at the plant input when switching between different controllers. The main feature of our study is that the switching among controllers is driven by the changing dynamics of the controlled-plant and moreover the technique is model-free. This is in contrast with most works reported in the literature on bumpless switching, where switching occurs between controllers driving a plant with fixed dynamics.
Keywords :
closed loop systems; multivariable control systems; performance index; time-varying systems; tracking; bumpless switching; bumpless transfer; closed-loop controller; mode transition; multimode system; self-conditioned implementation; switching controllers; tracking performance; Closed loop systems; Joints; Polynomials; Switches; Transient analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Fault-Tolerant Systems (SysTol), 2010 Conference on
Conference_Location :
Nice
Print_ISBN :
978-1-4244-8153-8
Type :
conf
DOI :
10.1109/SYSTOL.2010.5676005
Filename :
5676005
Link To Document :
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