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This monograph provides a comprehensive exploration of new tools
for modelling, analysis, and control of networked dynamical
systems. Expanding on the authors' previous work, this volume
highlights how local exchange of information and cooperation among
neighboring agents can lead to emergent global behaviors in a given
networked dynamical system. Divided into four sections, the first
part of the book begins with some preliminaries and the general
networked dynamical model that is used throughout the rest of the
book. The second part focuses on synchronization of networked
dynamical systems, synchronization with non-expansive dynamics,
periodic solutions of networked dynamical systems, and modulus
consensus of cooperative-antagonistic networks. In the third
section, the authors solve control problems with input constraint,
large delays, and heterogeneous dynamics. The final section of the
book is devoted to applications, studying control problems of
spacecraft formation flying, multi-robot rendezvous, and energy
resource coordination of power networks. Modelling, Analysis, and
Control of Networked Dynamical Systems will appeal to researchers
and graduate students interested in control theory and its
applications, particularly those working in networked control
systems, multi-agent systems, and cyber-physical systems. This
volume can also be used in advanced undergraduate and graduate
courses on networked control systems and multi-agent systems.
This edited monograph includes state-of-the-art contributions on
continuous time dynamical networks with delays. The book is divided
into four parts. The first part presents tools and methods for the
analysis of time-delay systems with a particular attention on
control problems of large scale or infinite-dimensional systems
with delays. The second part of the book is dedicated to the use of
time-delay models for the analysis and design of Networked Control
Systems. The third part of the book focuses on the analysis and
design of systems with asynchronous sampling intervals which occur
in Networked Control Systems. The last part of the book exposes
several contributions dealing with the design of cooperative
control and observation laws for networked control systems. The
target audience primarily comprises researchers and experts in the
field of control theory, but the book may also be beneficial for
graduate students.
This edited monograph includes state-of-the-art contributions on
continuous time dynamical networks with delays. The book is divided
into four parts. The first part presents tools and methods for the
analysis of time-delay systems with a particular attention on
control problems of large scale or infinite-dimensional systems
with delays. The second part of the book is dedicated to the use of
time-delay models for the analysis and design of Networked Control
Systems. The third part of the book focuses on the analysis and
design of systems with asynchronous sampling intervals which occur
in Networked Control Systems. The last part of the book exposes
several contributions dealing with the design of cooperative
control and observation laws for networked control systems. The
target audience primarily comprises researchers and experts in the
field of control theory, but the book may also be beneficial for
graduate students.
This monograph provides a comprehensive exploration of new tools
for modelling, analysis, and control of networked dynamical
systems. Expanding on the authors' previous work, this volume
highlights how local exchange of information and cooperation among
neighboring agents can lead to emergent global behaviors in a given
networked dynamical system. Divided into four sections, the first
part of the book begins with some preliminaries and the general
networked dynamical model that is used throughout the rest of the
book. The second part focuses on synchronization of networked
dynamical systems, synchronization with non-expansive dynamics,
periodic solutions of networked dynamical systems, and modulus
consensus of cooperative-antagonistic networks. In the third
section, the authors solve control problems with input constraint,
large delays, and heterogeneous dynamics. The final section of the
book is devoted to applications, studying control problems of
spacecraft formation flying, multi-robot rendezvous, and energy
resource coordination of power networks. Modelling, Analysis, and
Control of Networked Dynamical Systems will appeal to researchers
and graduate students interested in control theory and its
applications, particularly those working in networked control
systems, multi-agent systems, and cyber-physical systems. This
volume can also be used in advanced undergraduate and graduate
courses on networked control systems and multi-agent systems.
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