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      Joint Acoustic Echo Cancellation and Speech Dereverberation Using Kalman filters

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          Abstract

          This paper proposes a joint acoustic echo cancellation (AEC) and speech dereverberation (DR) algorithm in the short-time Fourier transform domain. The reverberant microphone signals are described using an auto-regressive (AR) model. The AR coefficients and the loudspeaker-to-microphone acoustic transfer functions (ATFs) are considered time-varying and are modeled simultaneously using a first-order Markov process. This leads to a solution where these parameters can be optimally estimated using Kalman filters. It is shown that the proposed algorithm outperforms vanilla solutions that solve AEC and DR sequentially and one state-of-the-art joint DRAEC algorithm based on semi-blind source separation, in terms of both speech quality and echo reduction performance.

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          Author and article information

          Journal
          09 February 2023
          Article
          2302.04469
          ae096e8b-a266-4590-ac66-c422dd8ca1e1

          http://creativecommons.org/licenses/by-nc-sa/4.0/

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          cs.SD eess.AS

          Electrical engineering,Graphics & Multimedia design
          Electrical engineering, Graphics & Multimedia design

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