On distributed and cooperative control design for networks of dynamical systems
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This thesis contributes to the development of a cooperative control theory for homogeneous and heterogeneous multi-agent systems consisting of identical and non-identical dynamical agents, respectively. The goal is to explain fundamental effects of non-identical agent dynamics on the behavior of a distributed system and, primarily, to develop suitable control design methods for a wide range of multi-agent coordination problems. Output synchronization problems as well as cooperative disturbance rejection and reference tracking problems in multi-agent systems are investigated. Suitable controller design methods for networks consisting of identical or non-identical linear time-invariant systems, linear parameter-varying systems, and selected classes of nonlinear systems are developed. These controller design methods provide a solution to a wide variety of distributed coordination and cooperative control scenarios.
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On distributed and cooperative control design for networks of dynamical systems, Georg S. Seyboth
- Sprache
- Erscheinungsdatum
- 2016
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- Titel
- On distributed and cooperative control design for networks of dynamical systems
- Sprache
- Englisch
- Autor*innen
- Georg S. Seyboth
- Verlag
- Logos Verlag
- Erscheinungsdatum
- 2016
- ISBN10
- 3832542590
- ISBN13
- 9783832542597
- Kategorie
- Skripten & Universitätslehrbücher
- Beschreibung
- This thesis contributes to the development of a cooperative control theory for homogeneous and heterogeneous multi-agent systems consisting of identical and non-identical dynamical agents, respectively. The goal is to explain fundamental effects of non-identical agent dynamics on the behavior of a distributed system and, primarily, to develop suitable control design methods for a wide range of multi-agent coordination problems. Output synchronization problems as well as cooperative disturbance rejection and reference tracking problems in multi-agent systems are investigated. Suitable controller design methods for networks consisting of identical or non-identical linear time-invariant systems, linear parameter-varying systems, and selected classes of nonlinear systems are developed. These controller design methods provide a solution to a wide variety of distributed coordination and cooperative control scenarios.