Energy-Based In-Domain Control and Observer Design for Infinite-Dimensional Port-Hamiltonian Systems
Affiliation auteurs | !!!! Error affiliation !!!! |
Titre | Energy-Based In-Domain Control and Observer Design for Infinite-Dimensional Port-Hamiltonian Systems |
Type de publication | Journal Article |
Year of Publication | 2021 |
Auteurs | Malzer T, Toledo J, Le Gorrec Y, Schoberl M |
Journal | IFAC PAPERSONLINE |
Volume | 54 |
Pagination | 468-475 |
Type of Article | Proceedings Paper |
ISSN | 2405-8963 |
Mots-clés | in-domain actuation, Infinite-dimensional systems, partial differential equations, port-Hamiltonian systems, structural invariants |
Résumé | In this paper, we consider infinite-dimensional port-Hamiltonian systems with indomain actuation by means of an approach based on Stokes-Dirac structures as well as in a framework that exploits an underlying jet-bundle structure. In both frameworks, a dynamic controller based on the energy-Casimir method is derived in order to stabilise certain equilibrias. Moreover, we propose distributed-parameter observers deduced by exploiting damping injection for the observer error. Finally, we compare the approaches by means of an in-domain actuated vibrating string and show the equivalence of the control schemes derived in both frameworks. Copyright (C) 2021 The Authors. |
DOI | 10.1016/j.ifacol.2021.06.104 |