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Low-Complexity Kalman filter for multi-channel linear-prediction-based blind speech dereverberation.

, , , , , and . WASPAA, page 284-288. IEEE, (2017)

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A Priori SNR Computation for Speech Enhancement Based on Cepstral Envelope Estimation., , , and . IWAENC, page 351-355. IEEE, (2018)Low-Complexity Kalman filter for multi-channel linear-prediction-based blind speech dereverberation., , , , , and . WASPAA, page 284-288. IEEE, (2017)Two-stage speech enhancement with manipulation of the cepstral excitation., , , and . HSCMA, page 106-110. IEEE, (2017)Neural Networks Using Full-Band and Subband Spatial Features for Mask Based Source Separation., , , and . EUSIPCO, page 346-350. IEEE, (2021)Fully Convolutional Recurrent Networks for Speech Enhancement., , , , and . ICASSP, page 6674-6678. IEEE, (2020)An iterative speech model-based a priori SNR estimator., , , and . INTERSPEECH, page 1740-1744. ISCA, (2015)Partitioned block frequency domain Kalman filter for multi-channel linear prediction based blind speech dereverberation., , , , , and . IWAENC, page 1-5. IEEE, (2016)Speech dereverberation by data-dependent beamforming with signal pre-whitening., , , , , , and . EUSIPCO, page 2461-2465. IEEE, (2015)A subjective listening test of six different artificial bandwidth extension approaches in English, Chinese, German, and Korean., , , , , , , , , and 8 other author(s). ICASSP, page 5915-5919. IEEE, (2016)Objective Assessment of Artificial Speech Bandwidth Extension Approaches., , , , and . ITG Symposium on Speech Communication, page 1-5. IEEE, (2016)