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Phil Schniter

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Type Title
Digital Signal Processing (Ohio State EE700)
Introduction to Analog and Digital Communications
An Introduction to Source-Coding: Quantization, DPCM, Transform Coding, and Sub-band Coding
A Group-Delay Interpretation of Polyphase Filters
A Hierarchy of Detail in the Haar System
Adaptive Quantization
Aliasing-Cancellation Conditions of Filterbanks
Analog Communication
Analysis of DPCM using Rate-Distortion Theory
Application of Interpolation - Oversampling in CD Players
Bi-Orthogonal Perfect Reconstruction FIR Filterbanks
CD to DAT Conversion
Chirp-Z Transform
Complex-Baseband Equivalent Channel
Computational Savings of Polyphase Interpolation/Decimation
Computational Savings of Polyphase Resampling
Computational Savings of Polyphase/DFT Filterbanks
Computing the Scaling Function: The Cascade Algorithm
Conditions on h[n] and g[n]
Continuous Wavelet Transform
Continuous-Time Fourier Transform
Decimation
Design of Orthogonal PR-FIR Filterbanks via Halfband Spectral Factorization
Differential Pulse Code Modulation
Digital Communication
Digital Filter Design for Interpolation and Decimation
Discrete Fourier Transformation
Discrete Wavelet Transform: Main Concepts
Discrete-Time Fourier Transform
Discrete-Time Implementation of Digital Communication
Downsampling
Drawbacks of Classical Filterbank Designs
DWT Application - De-noising
DWT Applications - Choice of phi(t)
DWT Implementation using FFTs
Entropy Coding
Error Analysis of Digital Communications
Filterbanks Interpretation of the Discrete Wavelet Transform
Filterbanks with >2 Branches
Finite-Length Sequences and the DWT Matrix
Fundamentals of Multirate Signal Processing
Gain over PCM
Haar Approximation at the kth Coarseness Level
Hilbert Space Theory
Hilbert Spaces
Initialization of the Wavelet Transform
Inner Product Space
Interpolation
Introduction and Motivation
Introduction to an "Introduction to Analog and Digital Communication"
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