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Titlebook: Uniform Output Regulation of Nonlinear Systems; A Convergent Dynamic Alexey Pavlov,Nathan Wouw,Henk Nijmeijer Book 2006 Birkh?user Boston 2

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發(fā)表于 2025-3-21 18:41:57 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱(chēng)Uniform Output Regulation of Nonlinear Systems
副標(biāo)題A Convergent Dynamic
編輯Alexey Pavlov,Nathan Wouw,Henk Nijmeijer
視頻videohttp://file.papertrans.cn/943/942037/942037.mp4
概述First systematic study of the nonlinear output regulation problem that embraces both the local and the global cases.The mathematical model of convergent systems—very useful for studying nonlinear cont
叢書(shū)名稱(chēng)Systems & Control: Foundations & Applications
圖書(shū)封面Titlebook: Uniform Output Regulation of Nonlinear Systems; A Convergent Dynamic Alexey Pavlov,Nathan Wouw,Henk Nijmeijer Book 2006 Birkh?user Boston 2
描述The problem of asymptotic regulation of the output of a dynamical system plays a central role in control theory. An important variant of this problem is the output regulation problem, which can be used in areas such as s- point control, tracking reference signals and rejecting disturbances generated by an external system, controlled synchronization of dynamical systems, and observer design for autonomous systems. At the moment this is a hot topic in nonlinear control. This book is a result of a four-year research project conducted at the Eindhoven University of Technology. This project, entitled “Robust output regulation for complex dynamical systems,” began with the observation that theproblemofcontrolledsynchronizationofdynamicalsystemscanbecons- ered as a particular case of the output regulation problem. In the beginning of the project, known solutions to the controlled synchronization problem were global and dealt with nonlinear systems having complex (“chaotic”) dyn- ics. At the same time, most of the existing solutions to the nonlinear output regulation problem were local and dealt mostly with exosystems being linear harmonicoscillators. Ourinitialideawas,usingtheresultsfromt
出版日期Book 2006
關(guān)鍵詞Dynamical system; Mathematica; Nonlinear system; Tracking; actuator; automatic control; control; control sy
版次1
doihttps://doi.org/10.1007/0-8176-4465-2
isbn_ebook978-0-8176-4465-9Series ISSN 2324-9749 Series E-ISSN 2324-9757
issn_series 2324-9749
copyrightBirkh?user Boston 2006
The information of publication is updating

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Controller design for the global uniform output regulation problem,
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The local output regulation problem: convergence region estimates,
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Book 2006n problem were global and dealt with nonlinear systems having complex (“chaotic”) dyn- ics. At the same time, most of the existing solutions to the nonlinear output regulation problem were local and dealt mostly with exosystems being linear harmonicoscillators. Ourinitialideawas,usingtheresultsfromt
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articles or nanostructured surfaces and are not covered in most fundamental optics courses. This book is designed for researchers and graduate students looking for an introduction to optics at small scales..978-3-030-58982-0978-3-030-58983-7Series ISSN 2191-5423 Series E-ISSN 2191-5431
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2324-9749 . At the same time, most of the existing solutions to the nonlinear output regulation problem were local and dealt mostly with exosystems being linear harmonicoscillators. Ourinitialideawas,usingtheresultsfromt978-0-8176-4465-9Series ISSN 2324-9749 Series E-ISSN 2324-9757
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ed for the transmission of communication signals in a very fast way. For the transmission between substations, point-to-point operating areas, and for protection of electrical overhead conductors optical fibers have been used in the current scenario. The proposed work discusses a comprehensive revie
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light, and rate reactions are presented for predicting the extent of laser induced thermal damage. Methods for measuring temperature, thermal properties, rate constants, pulsed ablation and laser tissue interactions are detailed. Part III is devoted to examples that use the theory presented in Parts
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