Unfolded Recursive Expectation-Maximization Neural Network For Speaker Tracking
Rina Veler, Sharon Gannot
Abstract
We propose a deep unfolded REM network for robust tracking of a single moving speaker in mild reverberant environments. Unlike classical REM algorithms, which rely on fixed-step-size decay schedules, the proposed architecture learns an adaptive update policy by unfolding the iterative procedure into differentiable layers. We introduce a Step Size Network that leverages FiLM and PE to dynamically adjust the recursion weights based on temporal context and convergence state. Experimental results for tracking a single speaker under reverberant conditions demonstrate that the proposed unfolded network outperforms the classical CREM baseline, which employs a spatial grid search to map the estimated centroids to physical positions. In the single-speaker tracking task, the proposed method achieves a lower RMSE than the CREM baseline, highlighting its potential for dynamic acoustic scenarios.
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