Keywords: design technique; linear system; feedback stabilization; constant output-feedback controller; control weighting matrices; aircraft stabilization
@article{KYB_1998_34_2_a6,
author = {AL-Sunni, Fouad M. and Lewis, Frank L.},
title = {Simultaneous output-feedback stabilization for continuous systems in {Banach} spaces},
journal = {Kybernetika},
pages = {199--202},
year = {1998},
volume = {34},
number = {2},
mrnumber = {1621511},
zbl = {1274.93225},
language = {en},
url = {http://geodesic.mathdoc.fr/item/KYB_1998_34_2_a6/}
}
AL-Sunni, Fouad M.; Lewis, Frank L. Simultaneous output-feedback stabilization for continuous systems in Banach spaces. Kybernetika, Tome 34 (1998) no. 2, pp. 199-202. http://geodesic.mathdoc.fr/item/KYB_1998_34_2_a6/
[1] Al–Sunni F., Lewis F. L.: Gain scheduling simplification by simultaneous stabilization. Trans. ASME: J. Guidance, Control, and Dynamics 16 (1993), 3, 602–603
[2] Ghosh B., Byrns C.: Simultaneous stabilization and pole placement by nonswitching dynamic compensation. IEEE Trans. Automat. Control AC–28 (1983), 735–741 | DOI | MR
[3] Looze D.: A dual optimization prcedure for linear quadatic robust control problems. Automatica 19 (1983), 3, 299–302 | DOI
[4] Moore J., Lige X.: Loop recovery and robust state estimate feedback design. IEEE Trans. Automat. Control AC–32 (1987), 6, 512–517 | DOI
[5] Paduano J., Downing D.: Sensitivity analysis of digital flight control systems using singular–value concepts. Trans. ASME: J. Guidance, Control, and Dynamics 12 (1989), 3, 297-303 | MR
[6] Peterson I.: A procedure for simultaneously stabilizing a collection of single input linear systems using nonlinear state–feedback control. Automatica 23 (1987), 33–40 | DOI | MR
[7] Schmitendorf W., Holot C.: Simultaneous stabilization via linear state feedback control. IEEE Trans. Automat. Control AC–34 (1989), 9, 1001–1005 | DOI | MR
[8] G. G. Zames, Frances B.: Feedback minimax sensitivity, and optimal robustness. IEEE Trans. Automat. Control AC–28 (1983), 5, 585–601 | DOI | MR