On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information

The notions of input-containing and detectability subspaces are developed within the context of observer synthesisfor two-dimensional (2-D) Fornasini-Marchesini models. Specifically, the paper considers observers which asymptotically estimate the local state, in the sense that the error tends to zer...

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Main Authors: Ntogramatzidis, Lorenzo, Cantoni, M.
Other Authors: Andras Edelmayer
Format: Conference Paper
Published: Computer and Automation Research Institute, Hungarian Academy of Sciences (MTA SZTAKI) 2010
Online Access:http://hdl.handle.net/20.500.11937/40623
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author Ntogramatzidis, Lorenzo
Cantoni, M.
author2 Andras Edelmayer
author_facet Andras Edelmayer
Ntogramatzidis, Lorenzo
Cantoni, M.
author_sort Ntogramatzidis, Lorenzo
building Curtin Institutional Repository
collection Online Access
description The notions of input-containing and detectability subspaces are developed within the context of observer synthesisfor two-dimensional (2-D) Fornasini-Marchesini models. Specifically, the paper considers observers which asymptotically estimate the local state, in the sense that the error tends to zero as the reconstructed local state evolves away from possibly mismatched boundary values, modulo a detectability subspace. Ultimately, the synthesis of such observers in the absence of explicit input information is addressed.
first_indexed 2025-11-14T09:03:59Z
format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T09:03:59Z
publishDate 2010
publisher Computer and Automation Research Institute, Hungarian Academy of Sciences (MTA SZTAKI)
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-406232017-01-30T14:44:22Z On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information Ntogramatzidis, Lorenzo Cantoni, M. Andras Edelmayer The notions of input-containing and detectability subspaces are developed within the context of observer synthesisfor two-dimensional (2-D) Fornasini-Marchesini models. Specifically, the paper considers observers which asymptotically estimate the local state, in the sense that the error tends to zero as the reconstructed local state evolves away from possibly mismatched boundary values, modulo a detectability subspace. Ultimately, the synthesis of such observers in the absence of explicit input information is addressed. 2010 Conference Paper http://hdl.handle.net/20.500.11937/40623 Computer and Automation Research Institute, Hungarian Academy of Sciences (MTA SZTAKI) restricted
spellingShingle Ntogramatzidis, Lorenzo
Cantoni, M.
On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title_full On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title_fullStr On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title_full_unstemmed On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title_short On asymptotically reconstructing local-state trajectories for 2-D systems without exploiting input information
title_sort on asymptotically reconstructing local-state trajectories for 2-d systems without exploiting input information
url http://hdl.handle.net/20.500.11937/40623