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Titlebook: Mathematics of Complexity and Dynamical Systems; Robert A. Meyers (Editor-in-Chief) Reference work 2011 Springer Science+Business Media, L

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書目名稱Mathematics of Complexity and Dynamical Systems
編輯Robert A. Meyers (Editor-in-Chief)
視頻videohttp://file.papertrans.cn/627/626930/626930.mp4
概述Provides an in-depth treatment of the study of mathematical complexity and dynamical systems.Presents theory, techniques and applications.Demonstrates how the behavior of an entire system is often mor
圖書封面Titlebook: Mathematics of Complexity and Dynamical Systems;  Robert A. Meyers (Editor-in-Chief) Reference work 2011 Springer Science+Business Media, L
描述Mathematics of Complexity and Dynamical Systems is an authoritative reference to the basic tools and concepts of complexity, systems theory, and dynamical systems from the perspective of pure and applied mathematics.? Complex systems are systems that comprise many interacting parts with the ability to generate a new quality of collective behavior through self-organization, e.g. the spontaneous formation of temporal, spatial or functional structures.? These systems are often characterized by extreme sensitivity to initial conditions as well as emergent behavior that are not readily predictable or even completely deterministic. .The more than 100 entries in this wide-ranging, single source work provide a comprehensive explication of the theory and applications of mathematical complexity, covering ergodic theory, fractals and multifractals, dynamical systems, perturbation theory, solitons, systems and control theory, and related topics.? Mathematics of Complexity and Dynamical Systems is an essential reference for all those interested in mathematical complexity, from undergraduate and graduate students up through professional researchers.
出版日期Reference work 2011
關鍵詞Dynamical Systems; Dynamical systems book; Ergodic Theory; Fractals and Multifractals; Mathematical Comp
版次1
doihttps://doi.org/10.1007/978-1-4614-1806-1
isbn_ebook978-1-4614-1806-1
copyrightSpringer Science+Business Media, LLC 2011
The information of publication is updating

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Abdul-Majid Wazwazrm. However, in this case the model predictive control problem is considered with some enhancements including, for example, a connection matrix defining the pattern of control moves allowed in the prediction horizon. The generalized predictive controller is first considered for the plant without the
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Igor M. Sokolovrm. However, in this case the model predictive control problem is considered with some enhancements including, for example, a connection matrix defining the pattern of control moves allowed in the prediction horizon. The generalized predictive controller is first considered for the plant without the
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Antonio DeSimone,Fran?ois Alouges,Aline Lefebvrepply techniques for nonlinear control.MATLAB toolbox with pl.Nonlinear Industrial Control Systems?.presents a range of mostly optimisation-based methods for severely nonlinear systems; it discusses feedforward and feedback control and tracking control systems design. The plant models and design algo
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George Osipenkom considered is the nonlinear minimum variance filtering problem. However, there is also an introduction to other linear and nonlinear estimation problems. The Kalman filter was used in many of the control solutions considered earlier and this is described in more detail. The algorithm for the compu
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Anthony Quaschlichting wave propagation. On the assumption that the Reynolds number is large enough an asymptotic analysis of the Navier-Stokes equations reveals a complicated four-deck oscillation pattern with a relatively simple mathematical description of each sublayer. The leading role is played by one of t
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Andrés del Junco. It consisted of 9 general speeches, 35 lectures and 15 poster-seminar presentations. The papers were grouped in fairly focused sessions on boundary layers, shear flows, vortices, wakes, nonlinear waves and jets. The symposium was fol- lowed by a workshop in which the subject matter discussed was s
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Matthew Nicol,Karl Petersenen-Schlichting waves) which undergo linear amplification and non-linear interactions, and eventually lead to turbulence. Acoustic disturbances excite T.-S. waves . scattering by longitudinal inhomogeneities in the boundary layer, such as in the vicinity of the wing leading edge or because of unevenn
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