Global asymptotic controllability implies input-to-state stabilization
Rifford, Ludovic ; Sontag, E.D. ; Malisoff, M.
HAL, hal-00769004 / Harvested from HAL
The main problem addressed in this paper is the design of feedbacks for globally asymptotically controllable (GAC) control affine systems that render the closed-loop systems input-to-state stable (ISS) with respect to actuator errors. Extensions for fully nonlinear GAC systems with actuator errors are also discussed. Our controllers have the property that they tolerate small observation noise as well.
Publié le : 2004-04-07
Classification:  [MATH.MATH-OC]Mathematics [math]/Optimization and Control [math.OC]
@article{hal-00769004,
     author = {Rifford, Ludovic and Sontag, E.D. and Malisoff, M.},
     title = {Global asymptotic controllability implies input-to-state stabilization},
     journal = {HAL},
     volume = {2004},
     number = {0},
     year = {2004},
     language = {en},
     url = {http://dml.mathdoc.fr/item/hal-00769004}
}
Rifford, Ludovic; Sontag, E.D.; Malisoff, M. Global asymptotic controllability implies input-to-state stabilization. HAL, Tome 2004 (2004) no. 0, . http://gdmltest.u-ga.fr/item/hal-00769004/