|
|
Showing 1 - 9 of
9 matches in All Departments
This book reports on the latest advances in the study of Networked
Control Systems (NCSs). It highlights novel research concepts on
NCSs; the analysis and synthesis of NCSs with special attention to
their networked character; self- and event-triggered communication
schemes for conserving limited network resources; and communication
and control co-design for improving the efficiency of NCSs. The
book will be of interest to university researchers, control and
network engineers, and graduate students in the control
engineering, communication and network sciences interested in
learning the core principles, methods, algorithms and applications
of NCSs.
This book shows some secure control methods of networked control
systems related to linear control system, nonlinear control system,
multi-agent system and its applications in power systems. The
proposed secure control methods provide some useful results about
modeling of network attacks, resilient analysis and synthesis
methods, active defense control method.The contents of this book
are lists as followings. (1) Modeling of DoS attacks, deception
attacks and replay attacks; (2)Secure control methods are proposed
by combing delay system method, switched system method and
event-based control method. (3) Active control methods are proposed
by using model-predictive control and redundant control. (4) The
proposed control methods are applied to the security problem of
power system.The methods of this book include DoS attacks modeling
such as, periodic jamming attack model,model-based average dwell
time model, deception attack modeling and relay attack modeling;
piece-wise Lyapunov-Krasoviskiifunctional method, stochastic
control method; the results including resilient conditions of
networked control system and related resilient control design
method with linear matrix inequalities(LMIs).From this book,
readers can learn about the general network attack modeling
methods, resilient analysis and synthesis methods, active control
methods from viewpoint of redundancy control, and secure conditions
of power systems.Some fundamental knowledge prepared to read this
book includes delay system theory, event triggered mechanism, T-S
fuzzy system theory and frequency/voltage control of power system.
This book mainly investigates the cooperative optimal control of
hybrid energy system, it presents security control, multi-objective
optimization, distributed optimization and distributed control
approaches for tackling with security, economic and stability
problem of the hybrid energy system. It aims to solve some
challenging problems including security issue, economic cost or
benefits from both power generation side and load demand side, and
coordination among different power generators. The methods proposed
in this book is novel and attractive, it consists of the
hierarchical optimal control strategy for the security issue,
multi-objective optimization for both economic and emission issue,
and distributed optimal control for coordination among power
generators. Readers can learn novel methods or technique for
tackling with the security issue, multiple-objective problem, and
distributed coordination problem. It also may inspire readers to
improve some drawbacks of existing alternatives. Some fundamental
knowledge prepared to read this book includes basic principles of
the multi-agents system, robust optimization, Pareto-dominance
optimization, and background of electrical engineering and
renewable energy.
This book investigates distributed cooperative control and
communication of MASs including linear systems, nonlinear systems
and multiple rigid body systems. The model-based and data-driven
control method are employed to design the (optimal) cooperative
control protocol. The approaches of this book consist of
model-based and data-driven control such as predictive control,
event-triggered control, optimal control, adaptive dynamic
programming, etc. From this book, readers can learn about
distributed cooperative control methods, data-driven control,
finite-time stability analysis, cooperative attitude control of
multiple rigid bodies. Some fundamental knowledge prepared to read
this book is finite-time stability theory, event-triggered sampling
mechanism, adaptive dynamic programming and optimal control.
|
Intelligent Computing, Networked Control, and Their Engineering Applications - International Conference on Life System Modeling and Simulation, LSMS 2017 and International Conference on Intelligent Computing for Sustainable Energy and Environment, ICSEE 2017, Nanjing, China, September 22-24, 2017, Proceedings, Part II (Paperback, 1st ed. 2017)
Dong Yue, Chen Peng, Dajun Du, Tengfei Zhang, Min Zheng, …
|
R2,773
Discovery Miles 27 730
|
Ships in 18 - 22 working days
|
The three-volume set CCIS 761, CCIS 762, and CCIS 763 constitutes
the thoroughly refereed proceedings of the International Conference
on Life System Modeling and Simulation, LSMS 2017, and of the
International Conference on Intelligent Computing for Sustainable
Energy and Environment, ICSEE 2017, held in Nanjing, China, in
September 2017. The 208 revised full papers presented were
carefully reviewed and selected from over 625 submissions. The
papers of this volume are organized in topical sections on:
Biomedical Signal Processing; Computational Methods in Organism
Modeling; Medical Apparatus and Clinical Applications; Bionics
Control Methods, Algorithms and Apparatus; Modeling and Simulation
of Life Systems; Data Driven Analysis; Image and Video Processing;
Advanced Fuzzy and Neural Network Theory and Algorithms; Advanced
Evolutionary Methods and Applications; Advanced Machine Learning
Methods and Applications; Intelligent Modeling, Monitoring, and
Control of Complex Nonlinear Systems; Advanced Methods for
Networked Systems; Control and Analysis of Transportation Systems;
Advanced Sliding Mode Control and Applications; Advanced Analysis
of New Materials and Devices; Computational Intelligence in
Utilization of Clean and Renewable Energy Resources; Intelligent
Methods for Energy Saving and Pollution Reduction; Intelligent
Methods in Developing Electric Vehicles, Engines and Equipment;
Intelligent Computing and Control in Power Systems; Modeling,
Simulation and Control in Smart Grid and Microgrid; Optimization
Methods; Computational Methods for Sustainable Environment.
This book reports on the latest advances in the study of Networked
Control Systems (NCSs). It highlights novel research concepts on
NCSs; the analysis and synthesis of NCSs with special attention to
their networked character; self- and event-triggered communication
schemes for conserving limited network resources; and communication
and control co-design for improving the efficiency of NCSs. The
book will be of interest to university researchers, control and
network engineers, and graduate students in the control
engineering, communication and network sciences interested in
learning the core principles, methods, algorithms and applications
of NCSs.
This book investigates distributed cooperative control and
communication of MASs including linear systems, nonlinear systems
and multiple rigid body systems. The model-based and data-driven
control method are employed to design the (optimal) cooperative
control protocol. The approaches of this book consist of
model-based and data-driven control such as predictive control,
event-triggered control, optimal control, adaptive dynamic
programming, etc. From this book, readers can learn about
distributed cooperative control methods, data-driven control,
finite-time stability analysis, cooperative attitude control of
multiple rigid bodies. Some fundamental knowledge prepared to read
this book is finite-time stability theory, event-triggered sampling
mechanism, adaptive dynamic programming and optimal control.
This book shows some secure control methods of networked control
systems related to linear control system, nonlinear control system,
multi-agent system and its applications in power systems. The
proposed secure control methods provide some useful results about
modeling of network attacks, resilient analysis and synthesis
methods, active defense control method.The contents of this book
are lists as followings. (1) Modeling of DoS attacks, deception
attacks and replay attacks; (2)Secure control methods are proposed
by combing delay system method, switched system method and
event-based control method. (3) Active control methods are proposed
by using model-predictive control and redundant control. (4) The
proposed control methods are applied to the security problem of
power system.The methods of this book include DoS attacks modeling
such as, periodic jamming attack model,model-based average dwell
time model, deception attack modeling and relay attack modeling;
piece-wise Lyapunov-Krasoviskiifunctional method, stochastic
control method; the results including resilient conditions of
networked control system and related resilient control design
method with linear matrix inequalities(LMIs).From this book,
readers can learn about the general network attack modeling
methods, resilient analysis and synthesis methods, active control
methods from viewpoint of redundancy control, and secure conditions
of power systems.Some fundamental knowledge prepared to read this
book includes delay system theory, event triggered mechanism, T-S
fuzzy system theory and frequency/voltage control of power system.
This book mainly investigates the cooperative optimal control of
hybrid energy system, it presents security control, multi-objective
optimization, distributed optimization and distributed control
approaches for tackling with security, economic and stability
problem of the hybrid energy system. It aims to solve some
challenging problems including security issue, economic cost or
benefits from both power generation side and load demand side, and
coordination among different power generators. The methods proposed
in this book is novel and attractive, it consists of the
hierarchical optimal control strategy for the security issue,
multi-objective optimization for both economic and emission issue,
and distributed optimal control for coordination among power
generators. Readers can learn novel methods or technique for
tackling with the security issue, multiple-objective problem, and
distributed coordination problem. It also may inspire readers to
improve some drawbacks of existing alternatives. Some fundamental
knowledge prepared to read this book includes basic principles of
the multi-agents system, robust optimization, Pareto-dominance
optimization, and background of electrical engineering and
renewable energy.
|
You may like...
Loot
Nadine Gordimer
Paperback
(2)
R367
R340
Discovery Miles 3 400
Loot
Nadine Gordimer
Paperback
(2)
R367
R340
Discovery Miles 3 400
Law@Work
A. Van Niekerk, N. Smit
Paperback
R1,367
R1,195
Discovery Miles 11 950
Midnights
Taylor Swift
CD
R505
Discovery Miles 5 050
|