Title:
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A practical solution to implement nonlinear output regulation via dynamic mappings (English) |
Author:
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Armenta, Carlos |
Author:
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Álvarez, Jorge |
Author:
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Márquez, Raymundo |
Author:
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Bernal, Miguel |
Language:
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English |
Journal:
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Kybernetika |
ISSN:
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0023-5954 (print) |
ISSN:
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1805-949X (online) |
Volume:
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55 |
Issue:
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2 |
Year:
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2019 |
Pages:
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385-401 |
Summary lang:
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English |
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Category:
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math |
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Summary:
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This paper presents a novel error-feedback practical solution for real-time implementation of nonlinear output regulation. Sufficient and necessary conditions for both state- and error-feedback output regulation have been established for linear and nonlinear systems several decades ago. In their most general form, these solutions require solving a set of nonlinear partial differential equations, which may be hard or even impossible to solve analytically. In recent years, a methodology for dynamic calculation of the mappings required for state-feedback regulation has been put forward; following the latter, an error-feedback extension is hereby provided which, when combined with design conditions in the form of linear matrix inequalities, becomes suitable for real-time setups. Real-time results are presented for a nonlinear twin rotor MIMO system. Issues concerning the implementation as well as the solutions adopted, are discussed. (English) |
Keyword:
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nonlinear output regulation |
Keyword:
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linear matrix inequality |
Keyword:
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twin rotor |
Keyword:
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real-time |
MSC:
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93C10 |
MSC:
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93C95 |
MSC:
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93D05 |
idZBL:
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Zbl 07144944 |
idMR:
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MR4014593 |
DOI:
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10.14736/kyb-2019-2-0385 |
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Date available:
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2019-09-30T15:10:37Z |
Last updated:
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2020-04-02 |
Stable URL:
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http://hdl.handle.net/10338.dmlcz/147843 |
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Reference:
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