Digital Signal Processing

Contains an introduction and reports on fifteen research projects.

Bibliographic Details
Main Authors: Baggeroer, Arthur B., Bordley, Thomas E., Oppenheim, Alan V., Curtis, Susan R., Davis, Randall, Dove, Webster P., Lim, Jae S., Dowla, Farid U., Feder, Meir, Griffin, Daniel W., Izraelevitz, David, Martinez, Dennis M., Milios, Evangelos E., Myers, Cory, Pappas, Thrasyvoulos N., Sundaram, Ramakrishnan, Van Hove, Patrick, Frisk, George V., Wengrovitz, Michael S., Zakhor, Avideh
Format: Technical Report
Language:English
Published: Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT) 2010
Subjects:
Online Access:http://hdl.handle.net/1721.1/56925
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author Baggeroer, Arthur B.
Bordley, Thomas E.
Oppenheim, Alan V.
Curtis, Susan R.
Davis, Randall
Dove, Webster P.
Lim, Jae S.
Dowla, Farid U.
Feder, Meir
Griffin, Daniel W.
Izraelevitz, David
Martinez, Dennis M.
Milios, Evangelos E.
Myers, Cory
Pappas, Thrasyvoulos N.
Sundaram, Ramakrishnan
Van Hove, Patrick
Frisk, George V.
Wengrovitz, Michael S.
Zakhor, Avideh
author_facet Baggeroer, Arthur B.
Bordley, Thomas E.
Oppenheim, Alan V.
Curtis, Susan R.
Davis, Randall
Dove, Webster P.
Lim, Jae S.
Dowla, Farid U.
Feder, Meir
Griffin, Daniel W.
Izraelevitz, David
Martinez, Dennis M.
Milios, Evangelos E.
Myers, Cory
Pappas, Thrasyvoulos N.
Sundaram, Ramakrishnan
Van Hove, Patrick
Frisk, George V.
Wengrovitz, Michael S.
Zakhor, Avideh
author_sort Baggeroer, Arthur B.
collection MIT
description Contains an introduction and reports on fifteen research projects.
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institution Massachusetts Institute of Technology
language English
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spelling mit-1721.1/569252019-04-12T23:57:33Z Digital Signal Processing Baggeroer, Arthur B. Bordley, Thomas E. Oppenheim, Alan V. Curtis, Susan R. Davis, Randall Dove, Webster P. Lim, Jae S. Dowla, Farid U. Feder, Meir Griffin, Daniel W. Izraelevitz, David Martinez, Dennis M. Milios, Evangelos E. Myers, Cory Pappas, Thrasyvoulos N. Sundaram, Ramakrishnan Van Hove, Patrick Frisk, George V. Wengrovitz, Michael S. Zakhor, Avideh Digital Signal Processing Improved Paraxial Methods for Modeling Underwater Acoustic Propagation Signal Reconstruction from Fourier Sign Information Knowledge-Based Pitch Detection Bearing Estimation of Wideband Signals by Multidimensional Spectral Analysis Estimate-Maximize(E-M) Algorithm Application of Estimate-Maximize(E-M) Algorithm to Signal Processing Problems Speech Synthesis from Short-Time Fourier Transform Magnitude Derived from Speech Model Parameters Reconstruction of a Two-dimensional Signal from its Fourier Transform Magnitude Motion Compensated Noise Reduction for Motion Video Scenes Knowledge-Based Harmonic Source Detection Knowledge-Based Harmonic Source Direction Determination Knowledge-Based Speech Analysis Knowledge-Based Speech Enhancement Estimation of the Degree of Coronary Stenosis Using Digital Image Processing Techniques Low Bit Rate Video Conferencing Curvature Spherical Image, a New Representation of 3-D Objects Shallow Water Acoustic Inversion Computing the Discrete Hartley Transform Contains an introduction and reports on fifteen research projects. U.S. Navy - Office of Naval Research (Contract N00O14-81-K-0742) U.S. Navy - Office of Naval Research (Contract N00014-77-C-0266) National Science Foundation (Grant ECS80-07102) National Science Foundation (Grant ECS84-07285) Amoco Foundation Fellowship Sanders Associates, Inc. Advanced Television Research Program M.I.T. Vinton Hayes Fellowship Hertz Foundation Fellowship 2010-07-15T21:56:05Z 2010-07-15T21:56:05Z 1985-01 Technical Report RLE_PR_127_24 http://hdl.handle.net/1721.1/56925 en Massachusetts Institute of Technology, Research Laboratory of Electronics, Progress Report, January 1985 Digital Signal Processing Massachusetts Institute of Technology. Research Laboratory of Electronics. Progress Report, no. 127 Copyright (c) 2008 by the Massachusetts Institute of Technology. All rights reserved. application/pdf Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT)
spellingShingle Digital Signal Processing
Improved Paraxial Methods for Modeling Underwater Acoustic Propagation
Signal Reconstruction from Fourier Sign Information
Knowledge-Based Pitch Detection
Bearing Estimation of Wideband Signals by Multidimensional Spectral Analysis
Estimate-Maximize(E-M) Algorithm
Application of Estimate-Maximize(E-M) Algorithm to Signal Processing Problems
Speech Synthesis from Short-Time Fourier Transform Magnitude Derived from Speech Model Parameters
Reconstruction of a Two-dimensional Signal from its Fourier Transform Magnitude
Motion Compensated Noise Reduction for Motion Video Scenes
Knowledge-Based Harmonic Source Detection
Knowledge-Based Harmonic Source Direction Determination
Knowledge-Based Speech Analysis
Knowledge-Based Speech Enhancement
Estimation of the Degree of Coronary Stenosis Using Digital Image Processing Techniques
Low Bit Rate Video Conferencing
Curvature Spherical Image, a New Representation of 3-D Objects
Shallow Water Acoustic Inversion
Computing the Discrete Hartley Transform
Baggeroer, Arthur B.
Bordley, Thomas E.
Oppenheim, Alan V.
Curtis, Susan R.
Davis, Randall
Dove, Webster P.
Lim, Jae S.
Dowla, Farid U.
Feder, Meir
Griffin, Daniel W.
Izraelevitz, David
Martinez, Dennis M.
Milios, Evangelos E.
Myers, Cory
Pappas, Thrasyvoulos N.
Sundaram, Ramakrishnan
Van Hove, Patrick
Frisk, George V.
Wengrovitz, Michael S.
Zakhor, Avideh
Digital Signal Processing
title Digital Signal Processing
title_full Digital Signal Processing
title_fullStr Digital Signal Processing
title_full_unstemmed Digital Signal Processing
title_short Digital Signal Processing
title_sort digital signal processing
topic Digital Signal Processing
Improved Paraxial Methods for Modeling Underwater Acoustic Propagation
Signal Reconstruction from Fourier Sign Information
Knowledge-Based Pitch Detection
Bearing Estimation of Wideband Signals by Multidimensional Spectral Analysis
Estimate-Maximize(E-M) Algorithm
Application of Estimate-Maximize(E-M) Algorithm to Signal Processing Problems
Speech Synthesis from Short-Time Fourier Transform Magnitude Derived from Speech Model Parameters
Reconstruction of a Two-dimensional Signal from its Fourier Transform Magnitude
Motion Compensated Noise Reduction for Motion Video Scenes
Knowledge-Based Harmonic Source Detection
Knowledge-Based Harmonic Source Direction Determination
Knowledge-Based Speech Analysis
Knowledge-Based Speech Enhancement
Estimation of the Degree of Coronary Stenosis Using Digital Image Processing Techniques
Low Bit Rate Video Conferencing
Curvature Spherical Image, a New Representation of 3-D Objects
Shallow Water Acoustic Inversion
Computing the Discrete Hartley Transform
url http://hdl.handle.net/1721.1/56925
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