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A method for the design of discrete-time second-order shelf filters is developed which allows the response of an analog resonant shelf filter to be approximated in the digital domain. For filters whose features approach the Nyquist limit, the proposed method provides a closer approximation to the analog response than direct application of the bilinear transform. Three types of resonant shelf filter are discussed, and design examples are presented.
Author (s): Abel, Jonathan S.;
Berners, David P.;
Affiliation:
Universal Audio Inc., Santa Cruz, CA
(See document for exact affiliation information.)
AES Convention: 115
Paper Number:5939
Publication Date:
2003-10-06
Session subject:
Signal Processing for Audio
DOI:
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Abel, Jonathan S.; Berners, David P.; 2003; Discrete-Time Shelf Filter Design for Analog Modeling [PDF]; Universal Audio Inc., Santa Cruz, CA; Paper 5939; Available from: https://aes.org/publications/elibrary-page/?id=12440
Abel, Jonathan S.; Berners, David P.; Discrete-Time Shelf Filter Design for Analog Modeling [PDF]; Universal Audio Inc., Santa Cruz, CA; Paper 5939; 2003 Available: https://aes.org/publications/elibrary-page/?id=12440
@inproceedings{Abel2003discrete-time,
title={{Discrete-Time Shelf Filter Design for Analog Modeling}},
author={Abel, Jonathan S. and Berners, David P.},
year={2003},
month={oct},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 5939; AES Convention 115; October 2003},
number={5939},
organization={AES},
}
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