Title :
A nonparametric method for mixed-sensitivity Frobenius norm H∞ controller design
Author :
Shenton, A.T. ; Zhao, Sicong
Author_Institution :
Dept. of Eng., Univ. of Liverpool, Liverpool, UK
Abstract :
This paper presents a nonparametric approach to the design of feedback for stable invertible MIMO plants using Frobenius norm H∞, Hadamard weighted feedback control for mixed-sensitivity criterea. It is shown that the corresponding mixed sensitivity performance function may be reduced to one of quasi-circular type, appropriate for using Nehari-solution algorithms to achieve good solution-convergence by disk iteration. A non-parametric interpolation scheme is developed to retain the quasi-circular function and to guarantee internal stability. The disk-iteration method of Helton-Merino for analytic function optimisation may then be applied to optimise the mixed sensitivity criterion subject to the required internal stability constraints. The complete design process is thus based entirely on the plant frequency response. A simulation study of a 2 × 2 MIMO automotive IC engine torque and fuelling controller is given which compares the Frobenius norm H∞ method with a maximum singular norm H∞ controller . It is shown that the Frobenius norm method gives direct control over disturbance decoupling but otherwise enjoys similar robustness and performance to the maximum singular norm controller. The approach thus presents a nonparametric alternative to the state-space Frobenius norm methods of Van Diggelen and Glover.
Keywords :
H∞ control; MIMO systems; control system synthesis; feedback; interpolation; stability; Hadamard weighted feedback control; Helton-Merino method; MIMO automotive IC engine torque; Nehari-solution algorithm; analytic function optimisation; disk iteration; feedback design; fuelling controller; internal stability constraint; mixed sensitivity performance function; mixed-sensitivity Frobenius norm H∞ controller design; nonparametric interpolation scheme; plant frequency response; quasicircular function; stable invertible MIMO plant; Decoupling; H∞; Hadamard weighting; Mixed-Sensitivity; Nonparametric;
Conference_Titel :
Control 2010, UKACC International Conference on
Conference_Location :
Coventry
Electronic_ISBN :
978-1-84600-038-6
DOI :
10.1049/ic.2010.0412