DocumentCode
696177
Title
Optimal control of second-order linear systems with fixed proportional-integral structure controller
Author
Hoang Bao Le ; Mendes, Eduardo
Author_Institution
Lab. of Conception & Integration of the Syst., Grenoble Inst. of Technol., Valence, France
fYear
2009
fDate
23-26 Aug. 2009
Firstpage
2566
Lastpage
2571
Abstract
This paper proposes a new semi-analytic robust mixed H2/H-infinity design method for fixed-structure controllers. Precisely, the method consists in determining the parameters of a controller with given structure such that it minimizes the influence of a step load disturbance to the process output with respect to robustness constraints, i.e. constraints on maximum amplification of measurement noise, minimum module margin and minimum phase margin. The design objective and the robustness constraints are first expressed as H2 and H-infinity norms in function of unknown controller parameters. The controller design problem is then reformulated into a nonlinear optimization problem with a set of inequality constraints that can be efficiently solved numerically. Finally, we obtain a controller design tool which provides, when it exists, an optimal controller that fulfills the design specifications. Furthermore, the proposed method enables also a graphical representation of the different design tradeoffs. In this paper, to demonstrate the results, this method is applied to second-order processes controlled by PI controller.
Keywords
H∞ control; H2 control; PI control; control system synthesis; linear systems; nonlinear programming; robust control; PI controller; controller design problem; fixed proportional-integral structure controller; graphical representation; inequality constraints; maximum amplification; measurement noise; minimum module margin; minimum phase margin; nonlinear optimization problem; optimal control; second-order linear systems; semianalytic robust mixed H2-H-infinity design method; step load disturbance; Frequency measurement; Noise; Noise measurement; Optimized production technology; Process control; Robustness;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (ECC), 2009 European
Conference_Location
Budapest
Print_ISBN
978-3-9524173-9-3
Type
conf
Filename
7074792
Link To Document