Robust constrained model predictive control based on parameter-dependent Lyapunov functions

Xia, Yuanqing, Liu, Guo-Ping, Shi, Peng, Cheng, Jie and Rees, David (2008) Robust constrained model predictive control based on parameter-dependent Lyapunov functions. Circuits Systems and Signal Processing, 27 (4). pp. 429-446. ISSN 0278-081X

Abstract

The problem of robust constrained model predictive control (MPC) of systems with polytopic uncertainties is considered in this paper. New sufficient conditions for the existence of parameter-dependent Lyapunov functions are proposed in terms of linear matrix inequalities (LMIs), which will reduce the conservativeness resulting from using a single Lyapunov function. At each sampling instant, the corresponding parameter-dependent Lyapunov function is an upper bound for a worst-case objective function, which can be minimized using the LMI convex optimization approach. Based on the solution of optimization at each sampling instant, the corresponding state feedback controller is designed, which can guarantee that the resulting closed-loop system is robustly asymptotically stable. In addition, the feedback controller will meet the specifications for systems with input or output constraints, for all admissible time-varying parameter uncertainties. Numerical examples are presented to demonstrate the effectiveness of the proposed techniques.

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Item type Article
URI https://vuir.vu.edu.au/id/eprint/4063
DOI 10.1007/s00034-008-9036-9
Official URL http://dx.doi.org/10.1007/s00034-008-9036-9
Subjects Historical > Faculty/School/Research Centre/Department > Institute for Logistics and Supply Chain Management (ILSCM)
Historical > FOR Classification > 0199 Other Mathematical Sciences Information Systems
Keywords ResPubID18741, MPC, robust control, polytopic uncertainty, stability, optimization, LMI
Citations in Scopus 29 - View on Scopus
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