DocumentCode :
3852170
Title :
Parameterized Tube Model Predictive Control
Author :
Saša V. Rakovic;Basil Kouvaritakis;Mark Cannon;Christos Panos;Rolf Findeisen
Author_Institution :
University of Maryland, College Park, United States of America
Volume :
57
Issue :
11
fYear :
2012
Firstpage :
2746
Lastpage :
2761
Abstract :
This paper develops a parameterized tube model predictive control (MPC) synthesis method. The most relevant novel feature of our proposal is the online use of a single tractable linear program that optimizes parameterized, Minkowski decomposable, state and control tubes and an associated, fully separable, nonlinear, control policy. The induced control policy enjoys a higher degree of nonlinearity than existing tube MPC and robust MPC using disturbance affine control policy. Our proposal offers greater generality than the state of the art robust MPC methods. It is conjectured, and also established in three cases, that our proposal is equivalent, feasibility-wise, to dynamic programming (DP). It is also shown that, under natural assumptions, our method is computationally efficient while it possesses rather strong system theoretic properties.
Keywords :
"Electron tubes","Robustness","Proposals","Predictive control","Optimal control","Optimization","Linearity"
Journal_Title :
IEEE Transactions on Automatic Control
Publisher :
ieee
ISSN :
0018-9286
Type :
jour
DOI :
10.1109/TAC.2012.2191174
Filename :
6170547
Link To Document :
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