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Deep Learning Based Relative Transfer Matrix Estimation for Multiple Sources and Multiple Microphones
August 12, 2026 ยท Grace Period ยท ๐ Interspeech 2026
Authors
Oshan A. B. Yalegama, Wageesha N. Manamperi
arXiv ID
2608.11627
Category
eess.AS: Audio & Speech
Cross-listed
cs.AI,
eess.SP
Citations
0
Venue
Interspeech 2026
Abstract
The Relative Transfer Matrix (ReTM), recently introduced as a generalization of the relative transfer function for multiple receivers and sources, shows promising performance when applied to speech enhancement in noisy environments. Estimating the ReTM of sound sources by exploiting the covariance matrices of multichannel recordings is highly beneficial for practical applications and, to date, remains the only proposed approach. This paper investigates deep learning-based ReTM estimation. We propose three novel supervised learning frameworks using time and short-time frequency transform domain convolutional networks, and a Long Short-Term Memory-based recurrent neural network. Experimental results demonstrate that the proposed models achieve more accurate estimation of the ReTM using five objective metrics compared to the covariance-based method. We also show the effectiveness of the proposed frameworks for speech enhancement, achieving performance on par with the baseline method.
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