The book focuses on Fourier transform applications in electromagnetic field and microwave, medical applications, error control coding, methods for option pricing, and Helbert transform application. It is hoped that this book will provide the background, reference and incentive to encourage further r
Application of Optical Fourier Transforms
β Scribed by Henry Stark (Eds.)
- Publisher
- Elsevier Science
- Year
- 1982
- Tongue
- English
- Leaves
- 548
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Table of Contents
Content:
CONTRIBUTORS, Page ii
Front Matter, Page iii
Copyright, Page iv
Dedication, Page v
List of Contributors, Pages xi-xii
Preface, Pages xiii-xvi, HENRY STARK
Acknowledgments, Page xvii
Chapter 1 - Theory and Measurement of the Optical Fourier Transform, Pages 1-40, HENRY STARK
Chapter 2 - Pattern Recognition via Complex Spatial Filtering, Pages 41-87, SILVERIO P. ALMEIDA, GUY INDEBETOUW
Chapter 3 - Particle Identification and Counting by Fourier-Optical Pattern Recognition, Pages 89-130, WALLACE L. ANDERSON
Chapter 4 - Signal Processing Using Hybrid Systems, Pages 131-207, JAMES R. LEGER, SING H. LEE
Chapter 5 - Fourier Optics and Radar Signal Processing, Pages 209-251, MARVIN KING
Chapter 6 - Application of Optical Power Spectra to Photographic Image Measurement, Pages 253-288, R.R. SHANNON, P.S. CHEATHAM
Chapter 7 - Fourier Optics and SAW Devices, Pages 289-331, P. DAS, F.M.M. AYUB
Chapter 8 - Space-Variant Optical Systems and Processing, Pages 333-369, WILLIAM T. RHODES
Chapter 9 - Fourier Optics in Nonlinear Signal Processing, Pages 371-429, A.A. SAWCHUK, T.C. STRAND
Chapter 10 - Optical Information Processing and the Human Visual System, Pages 431-463, BAHAA E.A. SALEH
Chapter 11 - Statistical Pattern Recognition Using Optical Fourier Transform Features, Pages 465-497, HENRY STARK, ROBERT O'TOOLE
Chapter 12 - Incoherent-Optical Processing, Pages 499-536, H. BARTELT, S.K. CASE, R. HAUCK
Index, Pages 537-545
π SIMILAR VOLUMES
This book concerns the theory of optimal transport (OT) and its applications to solving problems in geometric optics. It is a self-contained presentation including a detailed analysis of the Monge problem, the Monge-Kantorovich problem, the transshipment problem, and the network flow problem. A chap
A complete and balanced account of communication theory, providing an understanding of both Fourier analysis (and the concepts associated with linear systems) and the characterization of such systems by mathematical operators. Presents applications of the theories to the diffraction of optical wave-
A complete and balanced account of communication theory, providing an understanding of both Fourier analysis (and the concepts associated with linear systems) and the characterization of such systems by mathematical operators. Presents applications of the theories to the diffraction of optical wave-