Nonlinear control of dynamic networks/

"Preface The rapid development of computing, communications, and sensing technologies has been enabling new potential applications of advanced control of complex systems like smart power grids, biological processes, distributed computing networks, transportation systems, and robotic networks. S...

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Main Authors: Liu, Tengfei, author, Jiang, Z.-P. (Zhong-Ping), author, Hill, David J., author
פורמט:
שפה:eng
יצא לאור: Boca Raton : Taylor & Francis, 2014
נושאים:
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author Liu, Tengfei, author
Jiang, Z.-P. (Zhong-Ping), author
Hill, David J., author
author_facet Liu, Tengfei, author
Jiang, Z.-P. (Zhong-Ping), author
Hill, David J., author
author_sort Liu, Tengfei, author
collection OCEAN
description "Preface The rapid development of computing, communications, and sensing technologies has been enabling new potential applications of advanced control of complex systems like smart power grids, biological processes, distributed computing networks, transportation systems, and robotic networks. Signi cant problems are to integrally deal with the fundamental system characteristics such as nonlinearity, dimensionality, uncertainty, and information constraints, and diverse kinds of networked behaviors, which may arise from quantization, data sampling, and impulsive events. Physical systems are inherently nonlinear and interconnected in nature. Signi cant progress has been made on nonlinear control systems in the past three decades. However, new system analysis and design tools that are capable of addressing more communication and networking issues are still highly desired to handle the emerging theoretical challenges underlying the new engineering problems. As an example, small quantization errors may cause the performance of a well-designed" nonlinear control system to deteriorate. The need for new tools motivates this book, the purpose of which is to present a set of novel analysis and design tools to address the newly arising theoretical problems from the viewpoint of dynamic networks. The results are intended to help solve real-world nonlinear control problems, including quantized control and distributed control aspects"--provided by publisher
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spelling KOHA-OAI-TEST:5091812020-12-19T17:18:51ZNonlinear control of dynamic networks/ Liu, Tengfei, author Jiang, Z.-P. (Zhong-Ping), author Hill, David J., author Boca Raton : Taylor & Francis,2014eng"Preface The rapid development of computing, communications, and sensing technologies has been enabling new potential applications of advanced control of complex systems like smart power grids, biological processes, distributed computing networks, transportation systems, and robotic networks. Signi cant problems are to integrally deal with the fundamental system characteristics such as nonlinearity, dimensionality, uncertainty, and information constraints, and diverse kinds of networked behaviors, which may arise from quantization, data sampling, and impulsive events. Physical systems are inherently nonlinear and interconnected in nature. Signi cant progress has been made on nonlinear control systems in the past three decades. However, new system analysis and design tools that are capable of addressing more communication and networking issues are still highly desired to handle the emerging theoretical challenges underlying the new engineering problems. As an example, small quantization errors may cause the performance of a well-designed" nonlinear control system to deteriorate. The need for new tools motivates this book, the purpose of which is to present a set of novel analysis and design tools to address the newly arising theoretical problems from the viewpoint of dynamic networks. The results are intended to help solve real-world nonlinear control problems, including quantized control and distributed control aspects"--provided by publisherIncludes bibliographical references and index"Preface The rapid development of computing, communications, and sensing technologies has been enabling new potential applications of advanced control of complex systems like smart power grids, biological processes, distributed computing networks, transportation systems, and robotic networks. Signi cant problems are to integrally deal with the fundamental system characteristics such as nonlinearity, dimensionality, uncertainty, and information constraints, and diverse kinds of networked behaviors, which may arise from quantization, data sampling, and impulsive events. Physical systems are inherently nonlinear and interconnected in nature. Signi cant progress has been made on nonlinear control systems in the past three decades. However, new system analysis and design tools that are capable of addressing more communication and networking issues are still highly desired to handle the emerging theoretical challenges underlying the new engineering problems. As an example, small quantization errors may cause the performance of a well-designed" nonlinear control system to deteriorate. The need for new tools motivates this book, the purpose of which is to present a set of novel analysis and design tools to address the newly arising theoretical problems from the viewpoint of dynamic networks. The results are intended to help solve real-world nonlinear control problems, including quantized control and distributed control aspects"--provided by publisherPSZJBLSystem analysisNonlinear control theoryURN:ISBN:9781466584594
spellingShingle System analysis
Nonlinear control theory
Liu, Tengfei, author
Jiang, Z.-P. (Zhong-Ping), author
Hill, David J., author
Nonlinear control of dynamic networks/
title Nonlinear control of dynamic networks/
title_full Nonlinear control of dynamic networks/
title_fullStr Nonlinear control of dynamic networks/
title_full_unstemmed Nonlinear control of dynamic networks/
title_short Nonlinear control of dynamic networks/
title_sort nonlinear control of dynamic networks
topic System analysis
Nonlinear control theory
work_keys_str_mv AT liutengfeiauthor nonlinearcontrolofdynamicnetworks
AT jiangzpzhongpingauthor nonlinearcontrolofdynamicnetworks
AT hilldavidjauthor nonlinearcontrolofdynamicnetworks