Computational Signal Processing with Wavelets: Modern Birkhäuser Classics
Autor Anthony Teolisen Limba Engleză Paperback – 11 oct 2017
Topics and Features
- Continuous wavelet and Gabor transforms
- Frame-based theory of discretization and reconstruction of analog signals is developed
- New and efficient "overcomplete" wavelet transform is introduced and applied
- Numerical illustrations with an object-oriented computational perspective using the Wavelet Signal Processing Workstation (MATLAB code) available
A self-contained text that is theoretically rigorous while maintaining contact with interesting applications. A particularly noteworthy topic…is a class of ‘overcomplete wavelets’. These functions are not orthonormal and they lead to many useful results.
—Journal of Mathematical Psychology
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (2) | 391.40 lei 6-8 săpt. | |
Springer International Publishing – 11 oct 2017 | 391.40 lei 6-8 săpt. | |
Birkhäuser Boston – 14 oct 2011 | 643.16 lei 6-8 săpt. | |
Hardback (1) | 648.74 lei 6-8 săpt. | |
Birkhäuser Boston – 15 mai 1998 | 648.74 lei 6-8 săpt. |
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Specificații
ISBN-13: 9783319657462
ISBN-10: 3319657461
Pagini: 324
Ilustrații: XXVI, 324 p.
Dimensiuni: 155 x 235 mm
Greutate: 0.49 kg
Ediția:1st ed. 2017
Editura: Springer International Publishing
Colecția Birkhäuser
Seria Modern Birkhäuser Classics
Locul publicării:Cham, Switzerland
ISBN-10: 3319657461
Pagini: 324
Ilustrații: XXVI, 324 p.
Dimensiuni: 155 x 235 mm
Greutate: 0.49 kg
Ediția:1st ed. 2017
Editura: Springer International Publishing
Colecția Birkhäuser
Seria Modern Birkhäuser Classics
Locul publicării:Cham, Switzerland
Cuprins
Introduction.- Mathematical Preliminaries.- Signal Representation and Frames.- Continuous Wavelet and Gabor Transforms.- Discrete Wavelet Transform.- Overcomplete Wavelet Transform.- Wavelet Signal Processing.- Object-Oriented Wavelet Analysis with MATLAB 5.- References.- Index.
Textul de pe ultima copertă
This unique resource examines the conceptual, computational, and practical aspects of applied signal processing using wavelets. With this book, readers will understand and be able to use the power and utility of new wavelet methods in science and engineering problems and analysis.
The text is written in a clear, accessible style avoiding unnecessary abstractions and details. From a computational perspective, wavelet signal processing algorithms are presented and applied to signal compression, noise suppression, and signal identification. Numerical illustrations of these computational techniques are further provided with interactive software (MATLAB code) that is available on the World Wide Web.
Topics and Features
A self-contained text that is theoretically rigorous while maintaining contact with interesting applications. A particularly noteworthy topic…is a class of ‘overcomplete wavelets’. These functions are not orthonormal and they lead to many useful results.
—Journal of Mathematical Psychology
Topics and Features
- Continuous wavelet and Gabor transforms
- Frame-based theory of discretization and reconstruction of analog signals is developed
- New and efficient "overcomplete" wavelet transform is introduced and applied
- Numerical illustrations with an object-oriented computational perspective using the Wavelet Signal Processing Workstation (MATLAB code) available
A self-contained text that is theoretically rigorous while maintaining contact with interesting applications. A particularly noteworthy topic…is a class of ‘overcomplete wavelets’. These functions are not orthonormal and they lead to many useful results.
—Journal of Mathematical Psychology
Caracteristici
Affordable, softcover reprint of a classic textbook? Provides a bridge between theory and practice of wavelet-based signal processing Theoretically rigorous while maintaining contact with interesting applications
Recenzii
"This book provides an expository treatment of wavelets from a signal processing perspective. The focus is on the expansion of signals in overcomplete wavelet systems. All illustrations of the theory are generated in the framework of the Matlab toolbox wavelet signal processing workstation (WSPW) made publicly available by the author.... The last chapter is a manual for WSPW, and the whole book serves as an extended manual." —Mathematical Reviews
"This book provides a bridge between theory and practice of wavelet-based signal processing and is written for both students and professionals. A solid mathematical foundation is given in the beginning chapters [1–6].... Several applications of wavelet-based signal processing including noise suppression, signal compression, signal identification and digital communication are presented in Chapter 7. Chapter 8 gives numerical illustrations and examples of wavelet methods using MATLAB 5. The accomanying MATLAB-based software is available on the world wide web. Every chapter of the book contains a collection of exercises." —Zentralblatt MATH
"A self-contained text that is theoretically rigorous while maintaining contact with interesting applications. A particularly noteworthy topic…is a class of ‘overcomplete wavelets’. These functions are not orthonormal and they lead to many useful results." —Journal of Mathematical Psychology
"This book provides a bridge between theory and practice of wavelet-based signal processing and is written for both students and professionals. A solid mathematical foundation is given in the beginning chapters [1–6].... Several applications of wavelet-based signal processing including noise suppression, signal compression, signal identification and digital communication are presented in Chapter 7. Chapter 8 gives numerical illustrations and examples of wavelet methods using MATLAB 5. The accomanying MATLAB-based software is available on the world wide web. Every chapter of the book contains a collection of exercises." —Zentralblatt MATH
"A self-contained text that is theoretically rigorous while maintaining contact with interesting applications. A particularly noteworthy topic…is a class of ‘overcomplete wavelets’. These functions are not orthonormal and they lead to many useful results." —Journal of Mathematical Psychology