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Mathematical and Statistical Methods for Multistatic Imaging

✍ Scribed by Habib Ammari, Josselin Garnier, Wenjia Jing, Hyeonbae Kang, Mikyoung Lim, Knut Sølna, Han Wang (auth.)


Publisher
Springer International Publishing
Year
2013
Tongue
English
Leaves
366
Series
Lecture Notes in Mathematics 2098
Edition
1
Category
Library

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✦ Synopsis


This book covers recent mathematical, numerical, and statistical approaches for multistatic imaging of targets with waves at single or multiple frequencies. The waves can be acoustic, elastic or electromagnetic. They are generated by point sources on a transmitter array and measured on a receiver array. An important problem in multistatic imaging is to quantify and understand the trade-offs between data size, computational complexity, signal-to-noise ratio, and resolution. Another fundamental problem is to have a shape representation well suited to solving target imaging problems from multistatic data.

In this book the trade-off between resolution and stability when the data are noisy is addressed. Efficient imaging algorithms are provided and their resolution and stability with respect to noise in the measurements analyzed. It also shows that high-order polarization tensors provide an accurate representation of the target. Moreover, a dictionary-matching technique based on new invariants for the generalized polarization tensors is introduced. Matlab codes for the main algorithms described in this book are provided. Numerical illustrations using these codes in order to highlight the performance and show the limitations of numerical approaches for multistatic imaging are presented.

✦ Table of Contents


Front Matter....Pages i-xvii
Front Matter....Pages 1-1
Preliminaries....Pages 3-50
Layer Potential Techniques....Pages 51-94
Front Matter....Pages 95-95
Small Volume Expansions....Pages 97-113
Generalized Polarization Tensors....Pages 115-131
Frequency Dependent Generalized Polarization Tensors....Pages 133-142
Front Matter....Pages 143-143
Multistatic Response Matrix: Statistical Structure....Pages 145-161
MSR Matrices Using Multipolar Expansions....Pages 163-169
Front Matter....Pages 171-171
Direct Imaging Functionals for Inclusions in the Continuum Approximation....Pages 173-188
Detection and Imaging from MSR Measurements....Pages 189-202
Front Matter....Pages 203-203
Reconstruction of GPTs from MSR Measurements....Pages 205-210
Target Identification and Tracking....Pages 211-226
Front Matter....Pages 227-227
Time-Reversal and Diffraction Tomography for Inverse Source Problems....Pages 229-238
Imaging Small Shape Deformations of an Extended Target from MSR Measurements....Pages 239-252
Nonlinear Optimization Algorithms....Pages 253-266
Front Matter....Pages 267-267
GPT- and S-Vanishing Structures for Near-Cloaking....Pages 269-286
Anomalous Resonance Cloaking....Pages 287-299
Front Matter....Pages 301-301
Numerical Implementations....Pages 303-330
Numerical Results....Pages 331-349
Back Matter....Pages 351-382

✦ Subjects


Mathematical Applications in the Physical Sciences


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