Applied Fourier Analysis: From Signal Processing to Medical Imaging
Autor Tim Olsonen Limba Engleză Hardback – 22 noi 2017
Applied Fourier Analysis assumes no prior knowledge of analysis from its readers, and begins by making the transition from linear algebra to functional analysis. It goes on to cover basic Fourier series and Fourier transforms before delving into applications in sampling and interpolation theory, digital communications, radar processing, medi
cal imaging, and heat and wave equations. For all applications, ample practice exercises are given throughout, with collections of more in-depth problems built up into exploratory chapter projects. Illuminating videos are available on Springer.com and Link.Springer.com that present animated visualizations of several concepts. The content of the book itself is limited to what students will need to deal with in these fields, and avoids spending undue time studying proofs or building toward more abstract concepts. The book is perhaps best suited for courses aimed at upper division undergraduates and early graduates in mathematics, electrical engineering, mechanical engineering, computer science, physics, and other natural sciences, but in general it is a highly valuable resource for introducing a broad range of students to Fourier analysis.
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Specificații
ISBN-13: 9781493973910
ISBN-10: 1493973916
Pagini: 302
Ilustrații: XVI, 302 p. 126 illus., 118 illus. in color. With online files/update.
Dimensiuni: 155 x 235 x 24 mm
Greutate: 0.67 kg
Ediția:1st ed. 2017
Editura: Springer
Colecția Birkhäuser
Locul publicării:New York, NY, United States
ISBN-10: 1493973916
Pagini: 302
Ilustrații: XVI, 302 p. 126 illus., 118 illus. in color. With online files/update.
Dimensiuni: 155 x 235 x 24 mm
Greutate: 0.67 kg
Ediția:1st ed. 2017
Editura: Springer
Colecția Birkhäuser
Locul publicării:New York, NY, United States
Cuprins
Introduction: From Linear Algebra to Linear Analysis.- Basic Fourier Series.- The Discrete Fourier Transform.- The Fourier Transform.- Sampling and Interpolation.- Digital Communications.- Radar Processing.- Image Processing.- Medical Imaging.- Partial Differential Equations.
Notă biografică
Tim Olson is an Associate Professor of Mathematics at the University of Florida. His research focuses on applications of Fourier Analysis to medical imaging and radar processing, electromagnetics, and other related fields.
He is also an experienced fly-fisherman and a fishing guide in the rivers of Montana.
Textul de pe ultima copertă
The first of its kind, this focused textbook serves as a self-contained resource for teaching from scratch the fundamental mathematics of Fourier analysis and illustrating some of its most current, interesting applications, including medical imaging and radar processing. Developed by the author from extensive classroom teaching experience, it provides a breadth of theory that allows students to appreciate the utility of the subject, but at as accessible a depth as possible. With myriad applications included, this book can be adapted to a one or two semester course in Fourier Analysis or serve as the basis for independent study.
Applied Fourier Analysis assumes no prior knowledge of analysis from its readers, and begins by making the transition from linear algebra to functional analysis. It goes on to cover basic Fourier series and Fourier transforms before delving into applications in sampling and interpolation theory, digital communications, radar processing, medical i
maging, and heat and wave equations. For all applications, ample practice exercises are given throughout, with collections of more in-depth problems built up into exploratory chapter projects. The content of the book itself is limited to what students will need to deal with in these fields, and avoids spending undue time studying proofs or building toward more abstract concepts. The book is perhaps best suited for courses aimed at upper division undergraduates and early graduates in mathematics, electrical engineering, mechanical engineering, computer science, physics, and other natural sciences, but in general it is a highly valuable resource for introducing a broad range of students to Fourier analysis.
Applied Fourier Analysis assumes no prior knowledge of analysis from its readers, and begins by making the transition from linear algebra to functional analysis. It goes on to cover basic Fourier series and Fourier transforms before delving into applications in sampling and interpolation theory, digital communications, radar processing, medical i
maging, and heat and wave equations. For all applications, ample practice exercises are given throughout, with collections of more in-depth problems built up into exploratory chapter projects. The content of the book itself is limited to what students will need to deal with in these fields, and avoids spending undue time studying proofs or building toward more abstract concepts. The book is perhaps best suited for courses aimed at upper division undergraduates and early graduates in mathematics, electrical engineering, mechanical engineering, computer science, physics, and other natural sciences, but in general it is a highly valuable resource for introducing a broad range of students to Fourier analysis.
Caracteristici
Concise yet thorough overview provides self-contained introduction to theory Covers a broad range of state-of-the-art applications in many disciplines, including medical imaging and radar processing Abundant problems, exercises, and projects reinforce integration of theory with applications Useful for both undergraduates and graduates in mathematics and engineering-related sciences Adaptable to one and two semester courses and independent study Includes supplementary material: sn.pub/extras