Large-scale nonlinear dynamical systems: A vector dissipative systems approach.
Recent technological demands have required the analysis and control design of increasingly complex, large-scale nonlinear dynamical s ,stems. In analyzing these largescale systems, it is often desirable to treat the overall system as a collection of interconnected subsystems. Solution properties of...
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2003
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Large-scale nonlinear dynamical systems: A vector dissipative systems approach. Haddad, Wassim. Chellaboina, VijaySekhar. Nersesov, Sergey. Recent technological demands have required the analysis and control design of increasingly complex, large-scale nonlinear dynamical s ,stems. In analyzing these largescale systems, it is often desirable to treat the overall system as a collection of interconnected subsystems. Solution properties of the large-scale sptem, are ?hen deduced from the solution properties o the individual subsystems and the nature of the system interconnections. In this paper we develop an energy flow modeling framework for large-scale dynamical systems based on vector dzsszpativity notions. Specifically, using vector storage functions and vector supply rates, dissipativity properties of the composite large-scale system are shown to be determined from the dissipativity properties of the subsystems and their interconnections. 2003 Villanova Faculty Authorship vudl:178313 Proceedings ofthe 42nd IEEE Conference on Decision and Control Maui. Hawaii USA, December 2003 en |
dc.title_txt_mv |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
dc.creator_txt_mv |
Haddad, Wassim. Chellaboina, VijaySekhar. Nersesov, Sergey. |
dc.description_txt_mv |
Recent technological demands have required the analysis
and control design of increasingly complex, large-scale
nonlinear dynamical s ,stems. In analyzing these largescale
systems, it is often desirable to treat the overall
system as a collection of interconnected subsystems.
Solution properties of the large-scale sptem, are ?hen
deduced from the solution properties o the individual
subsystems and the nature of the system interconnections.
In this paper we develop an energy flow modeling
framework for large-scale dynamical systems based on
vector dzsszpativity notions. Specifically, using vector
storage functions and vector supply rates, dissipativity
properties of the composite large-scale system are shown
to be determined from the dissipativity properties of the
subsystems and their interconnections. |
dc.date_txt_mv |
2003 |
dc.format_txt_mv |
Villanova Faculty Authorship |
dc.identifier_txt_mv |
vudl:178313 |
dc.source_txt_mv |
Proceedings ofthe 42nd IEEE Conference on Decision and Control Maui. Hawaii USA, December 2003 |
dc.language_txt_mv |
en |
author |
Haddad, Wassim. Chellaboina, VijaySekhar. Nersesov, Sergey. |
spellingShingle |
Haddad, Wassim. Chellaboina, VijaySekhar. Nersesov, Sergey. Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
author_facet |
Haddad, Wassim. Chellaboina, VijaySekhar. Nersesov, Sergey. |
dc_source_str_mv |
Proceedings ofthe 42nd IEEE Conference on Decision and Control Maui. Hawaii USA, December 2003 |
format |
Villanova Faculty Authorship |
author_sort |
Haddad, Wassim. |
dc_date_str |
2003 |
dc_title_str |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
description |
Recent technological demands have required the analysis
and control design of increasingly complex, large-scale
nonlinear dynamical s ,stems. In analyzing these largescale
systems, it is often desirable to treat the overall
system as a collection of interconnected subsystems.
Solution properties of the large-scale sptem, are ?hen
deduced from the solution properties o the individual
subsystems and the nature of the system interconnections.
In this paper we develop an energy flow modeling
framework for large-scale dynamical systems based on
vector dzsszpativity notions. Specifically, using vector
storage functions and vector supply rates, dissipativity
properties of the composite large-scale system are shown
to be determined from the dissipativity properties of the
subsystems and their interconnections. |
title |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
title_full |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
title_fullStr |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
title_full_unstemmed |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
title_short |
Large-scale nonlinear dynamical systems: A vector dissipative systems approach. |
title_sort |
large-scale nonlinear dynamical systems: a vector dissipative systems approach. |
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2003 |
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2003-01-01T00:00:00Z |
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