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Identification for port-controlled Hamiltonian systems

Abstract : The objective of this thesis is to develop a specific identification theory for Port Controlled Hamiltonian (PCH) systems. The main reasons to develop this theory comes from their remarkable properties like power conservation and stability under power preserving interconnection (e.g. parallel, series or feedback interconnections). In a first part PCH systems are analysed for structural identifiability using some classical or new techniques: observability/controllability identifiability, direct test, power series expansion or a new power energy approach, defining also a new concept of port identifiability. Further it is proposed a perturbation model by means of the interaction port together with a practical identifiability analysis realized using the controllability and observability concepts. The fourth part presents a new framework for time-discretization of PCH systems in the nonlinear or linear case, by combined discretization of the flows and efforts preserving in the same time their characteristic properties. Also in this part it is proposed a discretization error Hamiltonian to distinguish the continuous-time PCH system from the discrete-time one. The fifth part of the thesis makes an analysis of PCH systems identifiability using the subspace identification approach in the deterministic case, proposing also a new power energy approach in direct connection with the structural identifiability results. In the end are presented the main conclusions, personal contributions and perspectives for future work.
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Submitted on : Tuesday, July 17, 2018 - 10:46:11 AM
Last modification on : Wednesday, October 14, 2020 - 4:18:00 AM
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  • HAL Id : tel-01841237, version 1




Silviu Medianu. Identification for port-controlled Hamiltonian systems. Other. Universitatea politehnica (Bucarest), 2017. English. ⟨NNT : 2017GREAT116⟩. ⟨tel-01841237⟩



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