1.

Record Nr.

UNINA9910150526403321

Autore

Li Tatsien

Titolo

Exact boundary controllability of nodal profile for quasilinear hyperbolic systems / / by Tatsien Li, Ke Wang, Qilong Gu

Pubbl/distr/stampa

Singapore : , : Springer Singapore : , : Imprint : Springer, , 2016

ISBN

981-10-2842-7

Edizione

[1st ed. 2016.]

Descrizione fisica

1 online resource (IX, 108 p. 27 illus.)

Collana

SpringerBriefs in Mathematics, , 2191-8198

Disciplina

510

Soggetti

System theory

Differential equations, Partial

Systems Theory, Control

Partial Differential Equations

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di bibliografia

Includes bibliographical references and index.

Nota di contenuto

First Order Quasilinear Hyperbolic Systems -- Quasilinear Wave Equations -- Semi-global Piecewise Classical Solutions on a Tree-like Network -- Exact Boundary Controllability of Nodal Prole for 1-D First Order Quasilinear Hyperbolic Systems -- Exact Boundary Controllability of Nodal Prole for 1-D First Order Quasilinear Hyperbolic Systems on a Tree-like Network -- Exact Boundary Controllability of Nodal Prole for 1-D Quasilinear Wave Equations -- Exact Boundary Controllability of Nodal Prole for 1-D Quasilinear Wave Equations on a Planar Tree-like Network of Strings.

Sommario/riassunto

This book provides a comprehensive overview of the exact boundary controllability of nodal profile, a new kind of exact boundary controllability stimulated by some practical applications. This kind of controllability is useful in practice as it does not require any precisely given final state to be attained at a suitable time t=T by means of boundary controls, instead it requires the state to exactly fit any given demand (profile) on one or more nodes after a suitable time t=T by means of boundary controls. In this book we present a general discussion of this kind of controllability for general 1-D first order quasilinear hyperbolic systems and for general 1-D quasilinear wave equations on an interval as well as on a tree-like network using a



modular-structure construtive method, suggested in LI Tatsien's monograph "Controllability and Observability for Quasilinear Hyperbolic Systems"(2010), and we establish a complete theory on the local exact boundary controllability of nodal profile for 1-D quasilinear hyperbolic systems.