Artículo
Characterization of Integral Input-to-State Stability for Nonlinear Time-Varying Systems of Infinite Dimension
Fecha de publicación:
08/2023
Editorial:
Society for Industrial and Applied Mathematics
Revista:
Siam Journal On Control And Optimization
ISSN:
0363-0129
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
For large classes of infinite-dimensional time-varying control systems, the equivalence between integral input-to-state stability (iISS) and the combination of global uniform asymptotic stability under zero input (0-GUAS) and the property of uniformly bounded-energy input/bounded state (UBEBS) is established under a reasonable assumption of continuity of the trajectories with respect to the input, at the zero input. By particularizing to specific instances of infinite-dimensional systems, such as time-delay, or semilinear over Banach spaces, sufficient conditions are given in terms of the functions defining the dynamics. In addition, it is also shown that for semilinear systems whose nonlinear term satisfies an affine-in-the-state norm bound, it holds that iISS becomes equivalent to just 0-GUAS, a fact known to hold for bilinear systems. An additional important aspect is that the iISS notion considered is more general than the standard one.
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(CIFASIS)
Articulos de CENTRO INT.FRANCO ARG.D/CS D/L/INF.Y SISTEM.
Articulos de CENTRO INT.FRANCO ARG.D/CS D/L/INF.Y SISTEM.
Citación
Mancilla Aguilar, Jose Luis; Rojas Ruiz, Jose Esteban; Haimovich, Hernan; Characterization of Integral Input-to-State Stability for Nonlinear Time-Varying Systems of Infinite Dimension; Society for Industrial and Applied Mathematics; Siam Journal On Control And Optimization; 61; 4; 8-2023; 1979-2003
Compartir
Altmétricas