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Stabilization of control contact systems

Wang, L., Maschke, B. & Van Der Schaft, A. J., 1-Oct-2015, 5th IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control LHMNC 2015. Gorrec, Y. L. (ed.). IFAC, p. 144-149 6 p. (IFAC-PapersOnLine; vol. 48, no. 13).

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  • Stabilization of Control Contact Systems

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DOI

The control input-output contact system is a comprehensive representation of the irreversible Thermodynamic systems following the Gibbs' fundamental equations. In this paper, some syntheses of a preserving structure state feedback, which allows stabilization of the closed-loop contact system, will be analysed. For the partial stabilization of the closed-loop contact system: At equilibrium point, the analyses are based on the technical linearisation; on the invariant Legendre submanifold, the analyses are center manifold theory. For the global stabilization of the closed-loop contact system, the possibility for defining an availability function as Lyapunov function will be investigated as well. In order to demonstrate the effectiveness of these concepts, they are further applied to the heat exchanger as an experimental example.

Original languageEnglish
Title of host publication5th IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control LHMNC 2015
EditorsYann Le Gorrec
PublisherIFAC
Pages144-149
Number of pages6
Publication statusPublished - 1-Oct-2015
Event5th IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control, LHMNC 2015 - Lyon, France
Duration: 4-Jul-20157-Jul-2015

Publication series

NameIFAC-PapersOnLine
PublisherIFAK in colaboration with Elsevier
Number13
Volume48
ISSN (Print)2405-8963

Conference

Conference5th IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control, LHMNC 2015
CountryFrance
CityLyon
Period04/07/201507/07/2015

Event

5th IFAC Workshop on Lagrangian and Hamiltonian Methods for Nonlinear Control, LHMNC 2015

04/07/201507/07/2015

Lyon, France

Event: Conference

    Keywords

  • Contact systems, Heat exchangers, Irreversible thermodynamics, Nonlinear control, Stability analysis

ID: 116872425