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Multi-Channel Acoustic Echo Cancellation Based on Direction-of-Arrival Estimation

Sound 2025-06-09 v2 Audio and Speech Processing

Abstract

Acoustic echo cancellation (AEC) is an important speech signal processing technology that can remove echoes from microphone signals to enable natural-sounding full-duplex speech communication. While single-channel AEC is widely adopted, multi-channel AEC can leverage spatial cues afforded by multiple microphones to achieve better performance. Existing multi-channel AEC approaches typically combine beamforming with deep neural networks (DNN). This work proposes a two-stage algorithm that enhances multi-channel AEC by incorporating sound source directional cues. Specifically, a lightweight DNN is first trained to predict the sound source directions, and then the predicted directional information, multi-channel microphone signals, and single-channel far-end signal are jointly fed into an AEC network to estimate the near-end signal. Evaluation results show that the proposed algorithm outperforms baseline approaches and exhibits robust generalization across diverse acoustic environments.

Keywords

Cite

@article{arxiv.2505.19493,
  title  = {Multi-Channel Acoustic Echo Cancellation Based on Direction-of-Arrival Estimation},
  author = {Fei Zhao and Xueliang Zhang and Zhong-Qiu Wang},
  journal= {arXiv preprint arXiv:2505.19493},
  year   = {2025}
}

Comments

Accepted by Interspeech 2025