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首页> 外文期刊>EURASIP journal on advances in signal processing >Efficient multichannel acoustic echo cancellation using constrained tap selection schemes in the subband domain
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Efficient multichannel acoustic echo cancellation using constrained tap selection schemes in the subband domain

机译:在子带域中使用受限抽头选择方案进行有效的多通道声学回声消除

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摘要

Acoustic echo cancellation (AEC) is a key speech enhancement technology in speech communication and voice-enabled devices. AEC systems employ adaptive filters to estimate the acoustic echo paths between the loudspeakers and the microphone(s). In applications involving surround sound, the computational complexity of an AEC system may become demanding due to the multiple loudspeaker channels and the necessity of using long filters in reverberant environments. In order to reduce the computational complexity, the approach of partially updating the AEC filters is considered in this paper. In particular, we investigate tap selection schemes which exploit the sparsity present in the loudspeaker channels for partially updating subband AEC filters. The potential for exploiting signal sparsity across three dimensions, namely time, frequency, and channels, is analyzed. A thorough analysis of different state-of-the-art tap selection schemes is performed and insights about their limitations are gained. A novel tap selection scheme is proposed which overcomes these limitations by exploiting signal sparsity while not ignoring any filters for update in the different subbands and channels. Extensive simulation results using both artificial as well as real-world multichannel signals show that the proposed tap selection scheme outperforms state-of-the-art tap selection schemes in terms of echo cancellation performance. In addition, it yields almost identical echo cancellation performance as compared to updating all filter taps at a significantly reduced computational cost.
机译:回声消除(AEC)是语音通信和启用语音的设备中的关键语音增强技术。 AEC系统采用自适应滤波器来估计扬声器和麦克风之间的声学​​回声路径。在涉及环绕声的应用中,由于多个扬声器通道以及在混响环境中使用长滤波器的必要性,AEC系统的计算复杂性可能变得苛刻。为了降低计算复杂度,本文考虑了部分更新AEC滤波器的方法。特别是,我们研究了抽头选择方案,该方案利用扬声器通道中存在的稀疏性来部分更新子带AEC滤波器。分析了在时间,频率和信道这三个维度上利用信号稀疏性的潜力。对不同的最新抽头选择方案进行了全面分析,并获得了有关其局限性的见解。提出了一种新颖的抽头选择方案,该方案通过利用信号稀疏性而克服了这些限制,同时又不忽略任何滤波器用于在不同子带和信道中进行更新。使用人工以及现实世界中的多通道信号进行的广泛仿真结果表明,在回声消除性能方面,提出的抽头选择方案优于最新的抽头选择方案。另外,与以显着降低的计算成本更新所有滤波器抽头相比,它产生几乎相同的回声消除性能。

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