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It is well-known that the affine projection (AP) algorithm shows a good trade-off between computational effort and convergence speed. Nevertheless, the computational complexity of the AP algorithm increases with the projection order and low-computational versions, fast AP (FAP) algorithms, have been previously discussed. In this paper, a new FAP algorithm focused on the fast error vector calculation is proposed for active noise control. The new version uses the classical filtered-x structure instead of the commonly applied modified filtered-x. A comparative practical study of the different strategies has been also carried out and validates the use of the proposed method in ANC systems as an alternative to the previous versions since it provides lower computational cost.
Author (s): de Diego, Maria;
Ferrer, Miguel;
González, Alberto;
Piñero, Gema;
Affiliation:
Universidad Politécnica de Valencia
(See document for exact affiliation information.)
AES Convention: 118
Paper Number:6433
Publication Date:
2005-05-06
Session subject:
Signal Processing
DOI:
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de Diego, Maria; Ferrer, Miguel; González, Alberto; Piñero, Gema; 2005; Efficient Error Vector Calculation in Affine Projection Algorithms for Active Noise Control [PDF]; Universidad Politécnica de Valencia; Paper 6433; Available from: https://aes.org/publications/elibrary-page/?id=13149
de Diego, Maria; Ferrer, Miguel; González, Alberto; Piñero, Gema; Efficient Error Vector Calculation in Affine Projection Algorithms for Active Noise Control [PDF]; Universidad Politécnica de Valencia; Paper 6433; 2005 Available: https://aes.org/publications/elibrary-page/?id=13149
@inproceedings{de2005efficient,
title={{Efficient Error Vector Calculation in Affine Projection Algorithms for Active Noise Control}},
author={de Diego, Maria and Ferrer, Miguel and González, Alberto and Piñero, Gema},
year={2005},
month={may},
booktitle={Journal of the Audio Engineering Society},
publisher={Paper 6433; AES Convention 118; May 2005},
number={6433},
organization={AES},
}
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