Robust frequency domain acoustic echo cancellation filter employing normalized residual echo enhancement

被引:3
|
作者
Shimauchi, Suehiro [1 ]
Haneda, Yoichi [2 ]
Kataoka, Akitoshi [2 ]
机构
[1] NTT Corp, NTT Cyber Space Labs, Yokosuka, Kanagawa 2390847, Japan
[2] NTT Corp, NTT Cyber Space Labs, Musashino, Tokyo 1808585, Japan
关键词
adaptive filter; acoustic echo canceller; robust control;
D O I
10.1093/ietfec/e91-a.6.1347
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
We propose a new robust frequency domain acoustic echo cancellation filter that employs a normalized residual echo enhancement. By interpreting the conventional robust step-size control approaches as a statistical-model-based residual echo enhancement problem, the optimal step-size introduced in the most of conventional approaches is regarded as optimal only on the assumption that both the residual echo and the outlier in the error output signal are described by Gaussian distributions. However, the Gaussian-Gaussian mixture assumption does not always hold well, especially when both the residual echo and the outlier are speech signals (known as a double-talk situation). The proposed filtering scheme is based on the Gaussian-Laplacian mixture assumption for the signals normalized by the reference input signal amplitude. By comparing the performances of the proposed and conventional approaches through the simulations, we show that the Gaussian-Laplacian mixture assumption for the normalized signals can provide a better control scheme for the acoustic echo cancellation.
引用
收藏
页码:1347 / 1356
页数:10
相关论文
共 50 条
  • [21] A robust NLMS algorithm for acoustic echo cancellation
    Shimauchi, S
    Haneda, Y
    Kataoka, A
    ELECTRONICS AND COMMUNICATIONS IN JAPAN PART III-FUNDAMENTAL ELECTRONIC SCIENCE, 2006, 89 (11): : 1 - 9
  • [22] Acoustic echo cancellation using frequency-domain spline identification
    Zakharov, Yuriy V.
    Tozer, Tim C.
    Pearce, David A. J.
    IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2007, 55 (02) : 585 - 593
  • [23] Interactive Quality Enhancement in Acoustic Echo Cancellation
    Comminiello, Danilo
    Scardapane, Simone
    Scarpiniti, Michele
    Uncini, Aurelio
    2013 36TH INTERNATIONAL CONFERENCE ON TELECOMMUNICATIONS AND SIGNAL PROCESSING (TSP), 2013, : 488 - 492
  • [24] Towards robust acoustic echo cancellation during double-talk and near-end background noise via enhancement of residual echo
    Wada, Ted S.
    Juang, Biing-Hwang Fred
    2008 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING, VOLS 1-12, 2008, : 253 - 256
  • [25] Joint acoustic echo cancellation and transfer function GSC in the frequency domain
    Reuven, G
    Gannot, S
    Cohen, I
    2004 23RD IEEE CONVENTION OF ELECTRICAL AND ELECTRONICS ENGINEERS IN ISRAEL, PROCEEDINGS, 2004, : 412 - 415
  • [26] Clock Skew Robust Acoustic Echo Cancellation
    Helwani, Karim
    Soltanmohammadi, Erfan
    Goodwin, Michael M.
    Krishnaswamy, Arvindh
    INTERSPEECH 2022, 2022, : 2533 - 2537
  • [27] Robust acoustic echo cancellation using Kalman filter in double talk scenario
    Jain, Ayush
    Goel, Sanchit
    Nathwani, Karan
    Hegde, Rajesh M.
    SPEECH COMMUNICATION, 2015, 70 : 65 - 75
  • [28] ON THE IMPLEMENTATION OF A PARTITIONED BLOCK FREQUENCY-DOMAIN ADAPTIVE FILTER (PBFDAF) FOR LONG ACOUSTIC ECHO CANCELLATION
    BORRALLO, JMP
    OTERO, MG
    SIGNAL PROCESSING, 1992, 27 (03) : 301 - 315
  • [29] A Partitioned-Block Frequency-Domain Adaptive Kalman Filter for Stereophonic Acoustic Echo Cancellation
    Zhu, Rui
    Yang, Feiran
    Li, Yuepeng
    Shang, Shidong
    INTERSPEECH 2021, 2021, : 1837 - 1841
  • [30] The wavelet transform-domain adaptive filter for nonlinear acoustic echo cancellation
    Raghuwanshi, Jitendra
    Mishra, Amit
    Singh, Narendra
    MULTIMEDIA TOOLS AND APPLICATIONS, 2020, 79 (35-36) : 25853 - 25871