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Optimization is a mathematical tool developed in the early 1960's used to find the most efficient and feasible solutions to an engineering problem. It can be used to find ideal shapes and physical configurations, ideal structural designs, maximum energy efficiency, and many other desired goals of engineering. This book is intended for use in a first course on engineering design and optimization. Material for the text has evolved over a period of several years and is based on classroom presentations for an undergraduate core course on the principles of design. Virtually any problem f
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Engineering design --- Mathematical models. --- 62.001.13 --- -Design, Engineering --- Engineering --- Industrial design --- Strains and stresses --- Ingenieurswetenschappen. Technologie in het algemeen--?.001.13 --- Mathematical models --- Design --- -Ingenieurswetenschappen. Technologie in het algemeen--?.001.13 --- Engineering design - Mathematical models.
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In this book, we study theoretical and practical aspects of computing methods for mathematical modelling of nonlinear systems. A number of computing techniques are considered, such as methods of operator approximation with any given accuracy; operator interpolation techniques including a non-Lagrange interpolation; methods of system representation subject to constraints associated with concepts of causality, memory and stationarity; methods of system representation with an accuracy that is the best within a given class of models; methods of covariance matrix estimation;methods for low-rank
Automatic control --- Chemical engineering --- Programming (Mathematics) --- Commande automatique --- Génie chimique --- Programmation (Mathématiques) --- EPUB-LIV-FT ELSEVIER-B --- Engineering design -- Mathematical models. --- Nonlinear systems -- Mathematical models. --- Engineering design --- Nonlinear systems --- Mathematical models. --- Systems, Nonlinear --- System theory
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This book treats the random mechanical and acoustical vibrations of deterministic and statistical dynamic systems, in the low and high frequency range. The following topics are discussed in great detail: Vibrations of deterministic linear mechanical dynamic systems exposed to mechanical random loads and or enforced motion (acceleration); Vibrations of deterministic linear mechanical dynamic systems exposed to random acoustic loads (sound pressures; Random vibration of statistically defined mechanical systems and loads using Statistical Energy Analysis (SEA); Non-linear structures excited to random (white noise) mechanical loads analyzed by using the Fokker-Planck-Kolgomorov (FPK) equation. The theory of random vibration is strongly related to the design of spacecraft structures and is illustrated with simple and more difficult worked examples; each section ends with posed problems; usually answers are provided. .
Aerodynamics. --- Engineering design -- Mathematical models. --- Space vehicles -- Design and construction. --- Space vehicles. --- Structural analysis (Engineering). --- Ultralight aircraft. --- Space vehicles --- Stability of space vehicles --- Aeronautics Engineering & Astronautics --- Civil Engineering --- Mechanical Engineering --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Design and construction --- Vibration --- Stability of space vehicles. --- Vibration. --- Design and construction. --- Stability --- Engineering. --- Acoustics. --- Mechanics. --- Mechanics, Applied. --- Dynamical systems. --- Dynamics. --- Automotive engineering. --- Aerospace engineering. --- Astronautics. --- Aerospace Technology and Astronautics. --- Theoretical and Applied Mechanics. --- Vibration, Dynamical Systems, Control. --- Automotive Engineering. --- Space sciences --- Aeronautics --- Astrodynamics --- Space flight --- Aeronautical engineering --- Astronautics --- Engineering --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Mechanics --- Physics --- Statics --- Cycles --- Sound --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Dynamics --- Quantum theory --- Construction --- Industrial arts --- Technology --- Mechanics, applied.
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Nonlinear Modeling: Advanced Black-Box Techniques discusses methods on Neural nets and related model structures for nonlinear system identification; Enhanced multi-stream Kalman filter training for recurrent networks; The support vector method of function estimation; Parametric density estimation for the classification of acoustic feature vectors in speech recognition; Wavelet-based modeling of nonlinear systems; Nonlinear identification based on fuzzy models; Statistical learning in control and matrix theory; Nonlinear time-series analysis. It also contains the results of the K.U. Leuven time series prediction competition, held within the framework of an international workshop at the K.U. Leuven, Belgium in July 1998.
Engineering design --- Nonlinear systems --- Conception technique --- Systèmes non linéaires --- Mathematical models --- Modèles mathématiques --- 681.5.021 --- -Nonlinear systems --- -Academic collection --- Systems, Nonlinear --- System theory --- Design, Engineering --- Engineering --- Industrial design --- Strains and stresses --- Automatic control engineering. Control systems, techniques, equipment. Cybernetic and automation technology--?.021 --- Design --- Mathematical models. --- 681.5.021 Automatic control engineering. Control systems, techniques, equipment. Cybernetic and automation technology--?.021 --- Systèmes non linéaires --- Modèles mathématiques --- Academic collection --- Electronic circuits. --- Statistical physics. --- Dynamical systems. --- System theory. --- Signal processing. --- Image processing. --- Speech processing systems. --- Electrical engineering. --- Circuits and Systems. --- Complex Systems. --- Systems Theory, Control. --- Signal, Image and Speech Processing. --- Electrical Engineering. --- Statistical Physics and Dynamical Systems. --- Electric engineering --- Computational linguistics --- Electronic systems --- Information theory --- Modulation theory --- Oral communication --- Speech --- Telecommunication --- Singing voice synthesizers --- Pictorial data processing --- Picture processing --- Processing, Image --- Imaging systems --- Optical data processing --- Processing, Signal --- Information measurement --- Signal theory (Telecommunication) --- Systems, Theory of --- Systems science --- Science --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Mechanics --- Physics --- Statics --- Mathematical statistics --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Philosophy --- Statistical methods --- Engineering design - Mathematical models --- Nonlinear systems - Mathematical models
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