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Single and multicomponent digital optical signal analysis
Title statement Single and multicomponent digital optical signal analysis : estimation of phase and its derivatives / Rishikesh Kulkarni, Pramod Rastogi. [elektronický zdroj] Publication Bristol [England] (Temple Circus, Temple Way, Bristol BS1 6HG, UK) : IOP Publishing, [2017] Phys.des. 1 online resource (various pagings) : illustrations (some color). ISBN 9780750314695 (online) 9780750314688 mobi Edition [IOP release 3] IOP expanding physics, ISSN 2053-2563 Note "Version: 20170901"--Title page verso. Internal Bibliographies/Indexes Note Includes bibliographical references. Contents Preface -- 1. Introduction -- 2. Phase estimation : spatial fringe analysis -- 2.1. Background -- 2.2. Carrier fringe pattern demodulation -- 2.3. Closed fringe pattern demodulation Content note 3. Fringe denoising and phase unwrapping -- 3.1. Real sinusoidal fringe pattern denoising -- 3.2. Phase fringe pattern denoising -- 3.3. Phase unwrapping. 4. Phase estimation : multicomponent spatial fringe analysis -- 4.1. Background -- 4.2. Segment-wise multiple phase estimation -- 4.3. Block-wise multiple phase estimation -- 4.4. Pixel-wise multiple phase estimation. 5. Phase derivative estimation : spatial fringe analysis -- 5.1. Non-parametric phase derivative estimation : space frequency analysis -- 5.2. Parametric phase derivative estimation : autoregressive modeling of fringe signal -- 5.3. Parametric phase derivative estimation : matrix enhancement and matrix pencil. 6. Simultaneous estimation of unwrapped phase and its derivatives -- 6.1. Simultaneous estimation of unwrapped phase and arbitrary order phase derivatives -- 6.2. Closed fringe demodulation -- 6.3. Simultaneous estimation of unwrapped phase and its first order phase derivative. 7. Signal separation techniques : multicomponent spatial fringe analysis -- 7.1. Signal separation based on frequency discrimination -- 7.2. Signal separation based on amplitude discrimination. 8. Phase estimation : temporal fringe analysis -- 8.1. PSI algorithms with known phase shifts -- 8.2. PSI algorithms with unknown and constant phase shifts -- 8.3. PSI algorithms with random phase shifts. Notes to Availability Přístup pouze pro oprávněné uživatele Note Způsob přístupu: World Wide Web.. Požadavky na systém: Adobe Acrobat Reader, EPUB reader, or Kindle reader. Another responsib. Rastogi, Pramod K., 1951- Another responsib. Institute of Physics (Great Britain), Subj. Headings Interferometry - Mathematics. * Optical measurements. * Solids - Optical properties. * Image analysis. * Optical physics. * SCIENCE / Physics / Optics & Light. Form, Genre elektronické knihy electronic books Country Anglie Language angličtina Document kind Electronic books URL Plný text pro studenty a zaměstnance UPOL book
A review of the tools and methods of multicomponent fringe analysis and interferometric data, including a wide range of digital signal-processing-based interferometric data-processing techniques.
Preface -- 1. Introduction -- 2. Phase estimation : spatial fringe analysis -- 2.1. Background -- 2.2. Carrier fringe pattern demodulation -- 2.3. Closed fringe pattern demodulation3. Fringe denoising and phase unwrapping -- 3.1. Real sinusoidal fringe pattern denoising -- 3.2. Phase fringe pattern denoising -- 3.3. Phase unwrapping4. Phase estimation : multicomponent spatial fringe analysis -- 4.1. Background -- 4.2. Segment-wise multiple phase estimation -- 4.3. Block-wise multiple phase estimation -- 4.4. Pixel-wise multiple phase estimation5. Phase derivative estimation : spatial fringe analysis -- 5.1. Non-parametric phase derivative estimation : space frequency analysis -- 5.2. Parametric phase derivative estimation : autoregressive modeling of fringe signal -- 5.3. Parametric phase derivative estimation : matrix enhancement and matrix pencil6. Simultaneous estimation of unwrapped phase and its derivatives -- 6.1. Simultaneous estimation of unwrapped phase and arbitrary order phase derivatives -- 6.2. Closed fringe demodulation -- 6.3. Simultaneous estimation of unwrapped phase and its first order phase derivative7. Signal separation techniques : multicomponent spatial fringe analysis -- 7.1. Signal separation based on frequency discrimination -- 7.2. Signal separation based on amplitude discrimination8. Phase estimation : temporal fringe analysis -- 8.1. PSI algorithms with known phase shifts -- 8.2. PSI algorithms with unknown and constant phase shifts -- 8.3. PSI algorithms with random phase shifts.
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