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Fourier transform- signal processing / edited by Olga Moreira.

Contributor(s): Moreira, Olga, editorMaterial type: TextTextPublisher: Oakville, Ontario : Arcler Press, c2018Description: xxii, 253 pages : color illustrationsContent type: text Media type: computer Carrier type: online resourceSubject(s): Signal processing -- Digital techniquesLOC classification: EBOP TK 5102.5 | F68 2018Online resources: Electronic Resources https://www.bibliotex.com/product/fourier-transform-signal-processing50102620
Contents:
Chapter 1: Seven Pivotal Theorems of Fourier Analysis, Signal Analysis, Numerical Analysis and Number Theory Chapter 2: Henstock-Kurzweil Integral Transforms and the Riemann-Lebesgue Lemma Chapter 3: Generalization of Interpolation DFT Algorithms and Frequency Estimators With High Image Component Interference Rejection Chapter 4: Vectorial Signatures for Pattern Recognition Chapter 5: Fourier Transform-Based Color Space for Optical Microscopic Image Processing Chapter 6: Joint Multiband Signal Detection and Cyclic Spectrum Estimation From Compressive Samples Chapter 7: Speech Steganography Using Wavelet and Fourier Transforms Chapter 8: Time-Varying Bispectral Analysis of Visually Evoked Multi-Channel Eeg Chapter 9: Nonstationary Signal in Radar Signal Processing Chapter 10: Uncertainty Principle of the Local Polynomial Fourier Transform Chapter 11: Separation and Localization of Multiple Distributed Wideband Chirps Using the Fractional Fourier Transform Chapter 12: Quantum and Classical Discrete Fractional Fourier Transforms Chapter 13: Fractional Fourier Transform Analysis Chapter 14: Simplified Fractional Fourier Transform Chapter 15: Modified S-Transform For Time-Frequency Synchrony Analysis Chapter 16: Design of Warped Stretch Transform Chapter 17: The Use of Continuous Wavelet Transform Based on the Fast Fourier Transform in the Analysis of Multi-Channel Electrogastrography Recordings Chapter 18: Comparative Study of New Signal Processing to Improve S/N Ratio of Seismic Data
Summary: The Fourier Transform is a tool that breaks a waveform (a function or signal) into an alternate representation, characterized by sine and cosines. The Fourier Transform shows that any waveform can be re-written as the sum of sinusoidal functions. This book presents an introduction to the principles of the fast Fourier transform. The book covers topics of FFTs, frequency domain filtering, and applications to video and audio signal processing. This authoritative book provides comprehensive coverage of practical Fourier analysis.
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E-Books E-Books Cavite State University - CCAT Campus
Electronic Resources ER EBOP TK 5102.5 F68 2018 (Browse shelf) 1 copy Available EBOP0000049

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Includes bibliographical references and index.

Chapter 1: Seven Pivotal Theorems of Fourier Analysis, Signal Analysis, Numerical Analysis and Number Theory
Chapter 2: Henstock-Kurzweil Integral Transforms and the Riemann-Lebesgue Lemma
Chapter 3: Generalization of Interpolation DFT Algorithms and Frequency Estimators With High Image Component Interference Rejection
Chapter 4: Vectorial Signatures for Pattern Recognition
Chapter 5: Fourier Transform-Based Color Space for Optical Microscopic Image Processing
Chapter 6: Joint Multiband Signal Detection and Cyclic Spectrum Estimation From Compressive Samples
Chapter 7: Speech Steganography Using Wavelet and Fourier Transforms
Chapter 8: Time-Varying Bispectral Analysis of Visually Evoked Multi-Channel Eeg
Chapter 9: Nonstationary Signal in Radar Signal Processing
Chapter 10: Uncertainty Principle of the Local Polynomial Fourier Transform
Chapter 11: Separation and Localization of Multiple Distributed Wideband Chirps Using the Fractional Fourier Transform
Chapter 12: Quantum and Classical Discrete Fractional Fourier Transforms
Chapter 13: Fractional Fourier Transform Analysis
Chapter 14: Simplified Fractional Fourier Transform
Chapter 15: Modified S-Transform For Time-Frequency Synchrony Analysis
Chapter 16: Design of Warped Stretch Transform
Chapter 17: The Use of Continuous Wavelet Transform Based on the Fast Fourier Transform in the Analysis of Multi-Channel Electrogastrography Recordings
Chapter 18: Comparative Study of New Signal Processing to Improve S/N Ratio of Seismic Data

The Fourier Transform is a tool that breaks a waveform (a function or signal) into an alternate representation, characterized by sine and cosines. The Fourier Transform shows that any waveform can be re-written as the sum of sinusoidal functions. This book presents an introduction to the principles of the fast Fourier transform. The book covers topics of FFTs, frequency domain filtering, and applications to video and audio signal processing. This authoritative book provides comprehensive coverage of practical Fourier analysis.

EBOP00049 1

In English text.

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