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This book reports on the latest advances and applications of
chaotic systems. It consists of 25 contributed chapters by experts
who are specialized in the various topics addressed in this book.
The chapters cover a broad range of topics of chaotic systems such
as chaos, hyperchaos, jerk systems, hyperjerk systems, conservative
and dissipative systems, circulant chaotic systems, multi-scroll
chaotic systems, finance chaotic system, highly chaotic systems,
chaos control, chaos synchronization, circuit realization and
applications of chaos theory in secure communications, mobile
robot, memristors, cellular neural networks, etc. Special
importance was given to chapters offering practical solutions,
modeling and novel control methods for the recent research problems
in chaos theory. This book will serve as a reference book for
graduate students and researchers with a basic knowledge of chaos
theory and control systems. The resulting design procedures on the
chaotic systems are emphasized using MATLAB software.
The book reports on the latest advances and applications of
nonlinear control systems. It consists of 30 contributed chapters
by subject experts who are specialized in the various topics
addressed in this book. The special chapters have been brought out
in the broad areas of nonlinear control systems such as robotics,
nonlinear circuits, power systems, memristors, underwater vehicles,
chemical processes, observer design, output regulation,
backstepping control, sliding mode control, time-delayed control,
variables structure control, robust adaptive control, fuzzy logic
control, chaos, hyperchaos, jerk systems, hyperjerk systems, chaos
control, chaos synchronization, etc. Special importance was given
to chapters offering practical solutions, modeling and novel
control methods for the recent research problems in nonlinear
control systems. This book will serve as a reference book for
graduate students and researchers with a basic knowledge of
electrical and control systems engineering. The resulting design
procedures on the nonlinear control systems are emphasized using
MATLAB software.
This book highlights the latest findings on nonlinear dynamical
systems including two types of attractors: self-excited and hidden
attractors. Further, it presents both theoretical and practical
approaches to investigating nonlinear dynamical systems with
self-excited and hidden attractors. The book includes 20 chapters
contributed by respected experts, which focus on various
applications such as biological systems, memristor-based systems,
fractional-order systems, finance systems, business cycles,
oscillators, coupled systems, hyperchaotic systems, flexible robot
manipulators, electronic circuits, and control models. Special
attention is given to modeling, design, circuit realization, and
practical applications to address recent research problems in
nonlinear dynamical systems. The book provides a valuable reference
guide to nonlinear dynamical systems for engineers, researchers,
and graduate students, especially those whose work involves
mechanics, electrical engineering, and control systems.
This book reports on the latest advances in and applications of
memristors, memristive devices and systems. It gathers 20
contributed chapters by subject experts, including pioneers in the
field such as Leon Chua (UC Berkeley, USA) and R.S. Williams (HP
Labs, USA), who are specialized in the various topics addressed in
this book, and covers broad areas of memristors and memristive
devices such as: memristor emulators, oscillators, chaotic and
hyperchaotic memristive systems, control of memristive systems,
memristor-based min-max circuits, canonic memristors,
memristive-based neuromorphic applications, implementation of
memristor-based chaotic oscillators, inverse memristors, linear
memristor devices, delayed memristive systems, flux-controlled
memristive emulators, etc. Throughout the book, special emphasis is
given to papers offering practical solutions and design, modeling,
and implementation insights to address current research problems in
memristors, memristive devices and systems. As such, it offers a
valuable reference book on memristors and memristive devices for
graduate students and researchers with a basic knowledge of
electrical and control systems engineering.
Mem-elements for Neuromorphic Circuits with Artificial Intelligence
Applications illustrates recent advances in the field of
mem-elements (memristor, memcapacitor, meminductor) and their
applications in nonlinear dynamical systems, computer science,
analog and digital systems, and in neuromorphic circuits and
artificial intelligence. The book is mainly devoted to recent
results, critical aspects and perspectives of ongoing research on
relevant topics, all involving networks of mem-elements devices in
diverse applications. Sections contribute to the discussion of
memristive materials and transport mechanisms, presenting various
types of physical structures that can be fabricated to realize
mem-elements in integrated circuits and device modeling. As the
last decade has seen an increasing interest in recent advances in
mem-elements and their applications in neuromorphic circuits and
artificial intelligence, this book will attract researchers in
various fields.
This book highlights the latest findings on nonlinear dynamical
systems including two types of attractors: self-excited and hidden
attractors. Further, it presents both theoretical and practical
approaches to investigating nonlinear dynamical systems with
self-excited and hidden attractors. The book includes 20 chapters
contributed by respected experts, which focus on various
applications such as biological systems, memristor-based systems,
fractional-order systems, finance systems, business cycles,
oscillators, coupled systems, hyperchaotic systems, flexible robot
manipulators, electronic circuits, and control models. Special
attention is given to modeling, design, circuit realization, and
practical applications to address recent research problems in
nonlinear dynamical systems. The book provides a valuable reference
guide to nonlinear dynamical systems for engineers, researchers,
and graduate students, especially those whose work involves
mechanics, electrical engineering, and control systems.
This book reports on the latest advances in and applications of
memristors, memristive devices and systems. It gathers 20
contributed chapters by subject experts, including pioneers in the
field such as Leon Chua (UC Berkeley, USA) and R.S. Williams (HP
Labs, USA), who are specialized in the various topics addressed in
this book, and covers broad areas of memristors and memristive
devices such as: memristor emulators, oscillators, chaotic and
hyperchaotic memristive systems, control of memristive systems,
memristor-based min-max circuits, canonic memristors,
memristive-based neuromorphic applications, implementation of
memristor-based chaotic oscillators, inverse memristors, linear
memristor devices, delayed memristive systems, flux-controlled
memristive emulators, etc. Throughout the book, special emphasis is
given to papers offering practical solutions and design, modeling,
and implementation insights to address current research problems in
memristors, memristive devices and systems. As such, it offers a
valuable reference book on memristors and memristive devices for
graduate students and researchers with a basic knowledge of
electrical and control systems engineering.
This book reports on the latest advances and applications of
chaotic systems. It consists of 25 contributed chapters by experts
who are specialized in the various topics addressed in this book.
The chapters cover a broad range of topics of chaotic systems such
as chaos, hyperchaos, jerk systems, hyperjerk systems, conservative
and dissipative systems, circulant chaotic systems, multi-scroll
chaotic systems, finance chaotic system, highly chaotic systems,
chaos control, chaos synchronization, circuit realization and
applications of chaos theory in secure communications, mobile
robot, memristors, cellular neural networks, etc. Special
importance was given to chapters offering practical solutions,
modeling and novel control methods for the recent research problems
in chaos theory. This book will serve as a reference book for
graduate students and researchers with a basic knowledge of chaos
theory and control systems. The resulting design procedures on the
chaotic systems are emphasized using MATLAB software.
The book reports on the latest advances and applications of
nonlinear control systems. It consists of 30 contributed chapters
by subject experts who are specialized in the various topics
addressed in this book. The special chapters have been brought out
in the broad areas of nonlinear control systems such as robotics,
nonlinear circuits, power systems, memristors, underwater vehicles,
chemical processes, observer design, output regulation,
backstepping control, sliding mode control, time-delayed control,
variables structure control, robust adaptive control, fuzzy logic
control, chaos, hyperchaos, jerk systems, hyperjerk systems, chaos
control, chaos synchronization, etc. Special importance was given
to chapters offering practical solutions, modeling and novel
control methods for the recent research problems in nonlinear
control systems. This book will serve as a reference book for
graduate students and researchers with a basic knowledge of
electrical and control systems engineering. The resulting design
procedures on the nonlinear control systems are emphasized using
MATLAB software.
This book presents techniques and security challenges of chaotic
systems and their use in cybersecurity. It presents the
state-of-the-art and the latest discoveries in the field of chaotic
systems and methods and proposes new models, practical solutions,
and technological advances related to new chaotic dynamical
systems. The book can be used as part of the bibliography of the
following courses: - Cybersecurity - Cryptography - Networks and
Communications Security - Nonlinear Circuits - Nonlinear Systems
and Applications
This book presents techniques and security challenges of chaotic
systems and their use in cybersecurity. It presents the
state-of-the-art and the latest discoveries in the field of chaotic
systems and methods and proposes new models, practical solutions,
and technological advances related to new chaotic dynamical
systems. The book can be used as part of the bibliography of the
following courses: - Cybersecurity - Cryptography - Networks and
Communications Security - Nonlinear Circuits - Nonlinear Systems
and Applications
Nowadays, circuits, both linear and nonlinear, still remain the
core components of most electronic devices and systems. As these
systems, such as mechatronics, communications, cryptosystems and
industrial electronics become more and more sophisticated, better
functionality and reliability of these technologies require more
intriguing use of nonlinear circuits. For this reason, the research
in the topic of nonlinear circuits has already passed from the
stage of using them as a tool for analog simulation of nonlinear
dynamical systems to the stage of using them as the basic component
in the aforementioned systems. It is a fact that the observation of
chaotic phenomena in nonlinear circuits was and still remains one
of the major motivations for studying the nonlinear circuit theory.
In the previous two decades a number of workshops and conferences,
journal issues, research monographs and books, were focused on
analysis and studying chaotic phenomena in various nonlinear
circuits. Also, nonlinear circuits were a field in which many
chaotic phenomena have been observed for the first time. However,
the nonlinear circuits have now passed from the traditional trend
of studying and understanding chaos in a new research direction in
the field of applied chaos technology. So, there is an increasing
interest not only in the traditional chaos generation and analysis
via circuitry but also in the new consideration of utilizing chaos
in real physical systems. As a result, electronic engineers are
really giving to chaos more and more attention and they use
nonlinear circuits in an increasing number of engineering
applications. This book aims to bridge the gap between these two
research stages on the progress of nonlinear circuits and also open
up some new directions of real applications where chaos can be put
up to technological use, including secure communication systems,
radio frequency operating circuits' design, memristors and
cryptography. Finally, this book can serve as an updated and handy
reference for university professors, graduate students, laboratory
researchers as well as physicists and applied mathematicians who
are interested in studying the chaos and its applications through
the field of nonlinear circuits.
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