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Large-Scale Optimization with Applications: Part I: Optimization in Inverse Problems and Design

✍ Scribed by John W. Bandler, Radek M. Biernacki (auth.), Lorenz T. Biegler, Thomas F. Coleman, Andrew R. Conn, Fadil N. Santosa (eds.)


Publisher
Springer-Verlag New York
Year
1997
Tongue
English
Leaves
218
Series
The IMA Volumes in Mathematics and its Applications 92
Edition
1
Category
Library

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✦ Synopsis


Inverse problems and optimal design have come of age as a consequence of the availability of better, more accurate, and more efficient simulation packages. Many of these simulators, which can run on small workstations, can capture the complicated behavior of the physical systems they are modeling, and have become commonplace tools in engineering and science. There is a great desire to use them as part of a process by which measured field data are analyzed or by which design of a product is automated. A major obstacle in doing precisely this is that one is ultimately confronted with a large-scale optimization problem. This volume contains expository articles on both inverse problems and design problems formulated as optimization. Each paper describes the physical problem in some detail and is meant to be accessible to researchers in optimization as well as those who work in applied areas where optimization is a key tool. What emerges in the presentations is that there are features about the problem that must be taken into account in posing the objective function, and in choosing an optimization strategy. In particular there are certain structures peculiar to the problems that deserve special treatment, and there is ample opportunity for parallel computation. THIS IS BACK COVER TEXT!!! Inverse problems and optimal design have come of age as a consequence of the availability of better, more accurate, and more efficient, simulation packages. The problem of determining the parameters of a physical system from

✦ Table of Contents


Front Matter....Pages i-xv
Space Mapping Optimization for Engineering Design....Pages 1-15
An Inverse Problem in Plasma Physics: the Identification of the Current Density Profile in a Tokamak....Pages 17-36
Duality for Inverse Problems in Wave Propagation....Pages 37-61
Piecewise Differentiable Minimization for Ill-Posed Inverse Problems....Pages 63-79
The Use of Optimization in the Reconstruction of Obstacles from Acoustic or Electromagnetic Scattering Data....Pages 81-100
Design of 3D-Reflectors for Near Field and Far Field Problems....Pages 101-118
Optimal Die Shape and Ram Velocity Design for Metal Forging....Pages 119-133
Eigenvalues in Optimum Structural Design....Pages 135-149
Optimization Issues in Ocean Acoustics....Pages 151-172
Gradient Methods in Inverse Acoustic and Electromagnetic Scattering....Pages 173-194
Atmospheric Data Assimilation Based on the Reduced Hessian Successive Quadratic Programming Algorithm....Pages 195-204
Back Matter....Pages 205-210

✦ Subjects


Calculus of Variations and Optimal Control; Optimization; Systems Theory, Control; Numerical Analysis; Operation Research/Decision Theory


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