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This book is a result of many years of author's research and
teaching on random vibration and control. It was used as lecture
notes for a graduate course. It provides a systematic review of
theory of probability, stochastic processes, and stochastic
calculus. The feedback control is also reviewed in the book. Random
vibration analyses of SDOF, MDOF and continuous structural systems
are presented in a pedagogical order. The application of the random
vibration theory to reliability and fatigue analysis is also
discussed. Recent research results on fatigue analysis of
non-Gaussian stress processes are also presented. Classical
feedback control, active damping, covariance control, optimal
control, sliding control of stochastic systems, feedback control of
stochastic time-delayed systems, and probability density tracking
control are studied. Many control results are new in the literature
and included in this book for the first time. The book serves as a
reference to the engineers who design and maintain structures
subject to harsh random excitations including earthquakes, sea
waves, wind gusts, and aerodynamic forces, and would like to reduce
the damages of structural systems due to random excitations.
- Comprehensive review of probability theory, and stochastic
processes
- Random vibrations
- Structural reliability and fatigue, Non-Gaussian fatigue
- Monte Carlo methods
- Stochastic calculus and engineering applications
- Stochastic feedback controls and optimal controls
- Stochastic sliding mode controls
- Feedback control of stochastic time-delayed systems
- Probability density tracking control
The book presents the recent achievements on bifurcation studies of
nonlinear dynamical systems. The contributing authors of the book
are all distinguished researchers in this interesting subject area.
The first two chapters deal with the fundamental theoretical issues
of bifurcation analysis in smooth and non-smooth dynamical systems.
The cell mapping methods are presented for global bifurcations in
stochastic and deterministic, nonlinear dynamical systems in the
third chapter. The fourth chapter studies bifurcations and chaos in
time-varying, parametrically excited nonlinear dynamical systems.
The fifth chapter presents bifurcation analyses of modal
interactions in distributed, nonlinear, dynamical systems of
circular thin von Karman plates. The theories, methods and results
presented in this book are of great interest to scientists and
engineers in a wide range of disciplines. This book can be adopted
as references for mathematicians, scientists, engineers and
graduate students conducting research in nonlinear dynamical
systems.
- New Views for Difficult Problems
- Novel Ideas and Concepts
- Hilbert's 16th Problem
- Normal Forms in Polynomial Hamiltonian Systems
- Grazing Flow in Non-smooth Dynamical Systems
- Stochastic and Fuzzy Nonlinear Dynamical Systems
- Fuzzy Bifurcation
- Parametrical, Nonlinear Systems
- Mode Interactions in nonlinear dynamical systems
This book presents the latest algorithmic developments in the
cell-mapping method for the global analysis of nonlinear dynamic
systems, global solutions for multi-objective optimization
problems, and global solutions for zeros of complex algebraic
equations. It also discusses related engineering and scientific
applications, including the nonlinear design of structures for
better vibration resistance and reliability; multi-objective,
structural-acoustic design for sound abatement; optimal
multi-objective design of airfoils for better lift; and optimal
multi-objective design of linear and nonlinear controls with or
without time delay. The first book on the subject to include
extensive Matlab and C++ codes, it presents various implementation
algorithms of the cell-mapping method, enabling readers to
understand how the method works and its programming aspects. A link
to the codes on the Springer website will be provided to the
readers.
This volume encloses research articles that were presented at
the EVOLVE 2014 International Conference in Beijing, China, July 1
4, 2014. The book gathers contributions that emerged from the
conference tracks, ranging from probability to set oriented
numerics and evolutionary computation; all complemented by the
bridging purpose of the conference, e.g. Complex Networks and
Landscape Analysis, or by the more application oriented
perspective. The novelty of the volume, when considering the EVOLVE
series, comes from targeting also the practitioner s view. This is
supported by the Machine Learning Applied to Networks and Practical
Aspects of Evolutionary Algorithms tracks, providing surveys on new
application areas, as in the networking area and useful insights in
the development of evolutionary techniques, from a practitioner s
perspective. Complementary to these directions, the conference
tracks supporting the volume, follow on the individual advancements
of the subareas constituting the scope of the conference, through
the Computational Game Theory, Local Search and Optimization,
Genetic Programming, Evolutionary Multi-objective optimization
tracks."
Global Analysis of Nonlinear Dynamics collects chapters on recent
developments in global analysis of non-linear dynamical systems
with a particular emphasis on cell mapping methods developed by
Professor C.S. Hsu of the University of California, Berkeley. This
collection of contributions prepared by a diverse group of
internationally recognized researchers is intended to stimulate
interests in global analysis of complex and high-dimensional
nonlinear dynamical systems, whose global properties are largely
unexplored at this time.
This book presents the latest algorithmic developments in the
cell-mapping method for the global analysis of nonlinear dynamic
systems, global solutions for multi-objective optimization
problems, and global solutions for zeros of complex algebraic
equations. It also discusses related engineering and scientific
applications, including the nonlinear design of structures for
better vibration resistance and reliability; multi-objective,
structural-acoustic design for sound abatement; optimal
multi-objective design of airfoils for better lift; and optimal
multi-objective design of linear and nonlinear controls with or
without time delay. The first book on the subject to include
extensive Matlab and C++ codes, it presents various implementation
algorithms of the cell-mapping method, enabling readers to
understand how the method works and its programming aspects. A link
to the codes on the Springer website will be provided to the
readers.
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