BACK to VOLUME 35 NO.1

Kybernetika 35(1):69-81, 1999.

H Control Design for an Adaptive Optics System.

Nikolaos Denis, Douglas Looze, Jim Huang and David Castañon


Abstract:

In this paper we first present a full order $H_\infty$ controller for a multi-input, multi-output (MIMO) adaptive optics system. We apply model reduction techniques to the full order $H_\infty$ controller and demonstrate that the closed-loop (CL) system with the reduced order $H_\infty$ controller achieves the same high level of performance. Upon closer examination of the structure of the reduced order $H_\infty$ controller it is found that the dynamical behavior of the reduced order $H_\infty$ controller can be accurately approximated by a single-input, single-output (SISO) transfer function (TF) multiplied by the inverse of the adaptive optics plant dc gain. This observation then leads to a general design methodology which only requires the synthesis of a SISO $H_\infty$ controller and multiplication by constant matrices.


AMS: 93B;


download abstract.pdf


BIB TeX

@article{kyb:1999:1:69-81,

author = {Denis, Nikolaos and Looze, Douglas and Huang, Jim and Casta\~{n}on, David},

title = {$H_{\infty}$ Control Design for an Adaptive Optics System.},

journal = {Kybernetika},

volume = {35},

year = {1999},

number = {1},

pages = {69-81}

publisher = {{\'U}TIA, AV {\v C}R, Prague },

}


BACK to VOLUME 35 NO.1