DocumentCode :
115658
Title :
Robust synthesis for linear parameter varying systems using integral quadratic constraints
Author :
Shu Wang ; Pfifer, Harald ; Seiler, Peter
Author_Institution :
Dept. of Aerosp. Eng. & Mech., Univ. of Minnesota, Minneapolis, MN, USA
fYear :
2014
fDate :
15-17 Dec. 2014
Firstpage :
4789
Lastpage :
4794
Abstract :
A robust synthesis algorithm is proposed for a class of uncertain linear parameter varying (LPV) systems. The uncertain system is described as an interconnection of a nominal (not-uncertain) LPV system and an uncertainty whose input/output behavior is described by an integral quadratic constraint (IQC). The proposed algorithm is a coordinate-wise ascent that is similar to the well-known DK iteration for μ-synthesis. In the first step, a nominal controller is designed for the LPV system without uncertainties. In the second step, the robustness of the designed controller is evaluated and a new scaled plant for the next synthesis step is created. The robust performance condition used in the analysis step is formulated as a dissipation inequality that incorporates the IQC and generalizes the Bounded Real Lemma like condition for performance of nominal LPV systems. Both steps can be formulated as a semidefinite program (SDP) and efficiently solved using available optimization software. The effectiveness of the proposed method is demonstrated on a simple numerical example.
Keywords :
control system synthesis; integral equations; iterative methods; linear parameter varying systems; mathematical programming; robust control; uncertain systems; μ-synthesis; DK iteration; IQC; SDP; bounded real lemma like condition; coordinate-wise ascent; dissipation inequality; input/output behavior; integral quadratic constraints; nominal LPV systems; nominal controller design; not-uncertain LPV system; optimization software; robust performance condition; robust synthesis algorithm; robustness; scaled plant; semidefinite program; uncertain linear parameter varying systems; Algorithm design and analysis; Equations; Linear matrix inequalities; Optimized production technology; Robustness; Standards; Uncertainty;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2014 IEEE 53rd Annual Conference on
Conference_Location :
Los Angeles, CA
Print_ISBN :
978-1-4799-7746-8
Type :
conf
DOI :
10.1109/CDC.2014.7040136
Filename :
7040136
Link To Document :
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