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The convolution of a sound signal with measured or computed room impulse responses in real time poses severe problems regarding computation load, system latency, and memory requirements. Some key features of frequency-domain convolution allow the solving of the dilemma between latency and computational complexity. Today`s extrapolation implementations of off-the-shelf computers allow the sketching of future software solutions.
Author (s): Müller-Tomfelde, Christian;
Affiliation:
ZKM Institute for Music and Acoustics, Karlsruhe, Germany ; GMD - Integrated Publication and Information System Institute, Darmstadt, Germany
(See document for exact affiliation information.)
Publication Date:
1999-03-06
Session subject:
Spatial Sound Reproduction
DOI:
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Müller-Tomfelde, Christian; 1999; Low-Latency Convolution for Real-Time Applications [PDF]; ZKM Institute for Music and Acoustics, Karlsruhe, Germany ; GMD - Integrated Publication and Information System Institute, Darmstadt, Germany; Paper 16-040; Available from: https://aes.org/publications/elibrary-page/?id=8014
Müller-Tomfelde, Christian; Low-Latency Convolution for Real-Time Applications [PDF]; ZKM Institute for Music and Acoustics, Karlsruhe, Germany ; GMD - Integrated Publication and Information System Institute, Darmstadt, Germany; Paper 16-040; 1999 Available: https://aes.org/publications/elibrary-page/?id=8014
@inproceedings{Müller-Tomfelde1999low-latency,
title={{Low-Latency Convolution for Real-Time Applications}},
author={Müller-Tomfelde, Christian},
year={1999},
month={mar},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 16-040; AES Conference: 16th International Conference: Spatial Sound Reproduction; March 1999},
number={16-040},
organization={AES},
}
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