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Excursions in Harmonic Analysis, Volume 1: The February Fourier Talks at the Norbert Wiener Center
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Catalogue Information
Field name
Details
Dewey Class
515.2433
Title
Excursions in Harmonic Analysis, Volume 1 ([Ebook]) : The February Fourier Talks at the Norbert Wiener Center / edited by Travis D. Andrews, Radu Balan, John J. Benedetto, Wojciech Czaja, Kasso A. Okoudjou.
Author
Andrews, Travis D.
Added Personal Name
Balan, Radu
Benedetto, John J.
Czaja, Wojciech
Okoudjou, Kasso A.
Other name(s)
SpringerLink (Online service)
Publication
Boston : Birkhäuser
, 2013.
Physical Details
XVIII, 488 p. 135 illus., 88 illus. in color. : online resource.
Series
Applied and numerical harmonic analysis
ISBN
9780817683764
Summary Note
The Norbert Wiener Center for Harmonic Analysis and Applications provides a state-of-the art research venue for the broad emerging area of mathematical engineering in the context of harmonic analysis. This two-volume set consists of contributions from speakers at the February Fourier Talks (FFT) from 2006-2011. The FFT are organized by the Norbert Wiener Center in the Department of Mathematics at the University of Maryland, College Park. These volumes span a large spectrum of harmonic analysis and its applications. They are divided into the following parts: Volume I Sampling Theory. Remote Sensing. Mathematics of Data Processing. Applications of Data Processing Volume II. Measure Theory. Filtering. Operator Theory. Biomathematics Each part provides state-of-the-art results, with contributions from an impressive array of mathematicians, engineers, and scientists in academia, industry, and government. Excursions in Harmonic Analysis: The February Fourier Talks at the Norbert Wiener Center is an excellent reference for graduate students, researchers, and professionals in pure and applied mathematics, engineering, and physics.:
Contents note
Part 1 Sampling Theory -- Unions of Subspaces for Data Modeling and Subspace Clustering -- Fusion frames and Unbiased Basic Sequences -- Sampling in Spaces of Bandlimited Functions on Commutative Spaces -- Smooth Interpolation of Data by Efficient Algorithms -- An Overview of Time and Multiband Limiting -- A Panorama of Sampling Theory -- Part II Remote Sensing -- Multistatic Radar Waveforms for Imaging of Moving Targets -- Exploitation Performance and Characterization of a Prototype Compressive Sensing Imaging Spectrometer -- An Introduction to Hyperspectral Image Data Modeling -- Hyperspectral Demixing: Sparse Recovery of Highly Correlated Endmembers -- Theory of Passive Synthetic Aperture Imaging -- Part III Mathematics of Data Processing -- Golay-Rudin-Shapiro Polynomials and Phased Arrays -- Multi-Resolution Geometric Analysis for Data in High Dimensions -- On the Fourth-Order Structure Function of a Fractal -- Harmonic Analysis of Databases and Matrices -- The Structure of Sidelobe-Preserving Operator Groups -- Zeros of some Self-Reciprocal Polynomials -- Part IV Applications of Data Processing -- Generalized Mutual Interdependence Analysis of Noisy Channels -- Approximation Methods for the Recovery of Shapes and Images from Gradients -- FM Perturbations due to Near-Identity Linear Systems -- Eddy Current Sensor Signal Processing for Stall Detection -- State Dependent Channels: Strong Converse and Bounds on Reliability Function.
System details note
Online access to this digital book is restricted to subscription institutions through IP address (only for SISSA internal users).
Internet Site
http://dx.doi.org/10.1007/978-0-8176-8376-4
Links to Related Works
Subject References:
Abstract Harmonic Analysis
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Applications of Mathematics
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Appl.Mathematics/Computational Methods of Engineering
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Engineering mathematics
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Fourier Analysis
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Harmonic analysis
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Mathematical and Computational Biology
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Mathematics
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Signal, Image and Speech Processing
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Authors:
Andrews, Travis D.
.
Balan, Radu
.
Benedetto, John J.
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Czaja, Wojciech
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editor
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Okoudjou, Kasso A.
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Corporate Authors:
SpringerLink (Online service)
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Series:
Applied and numerical harmonic analysis
.
Classification:
515.2433
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515.2433 (DDC 23)
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