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Multichannel Acoustic Echo Cancellation in the Wave Domain With Increased Robustness to Nonuniqueness

机译:波域中的多通道声学回声消除,对非唯一性的鲁棒性增强

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Acoustic echo cancellation (AEC) is significantly more challenging in the case of multichannel reproduction compared to the single-channel case. This is mainly due to the so-called nonuniqueness problem, which becomes especially severe for massive multichannel reproduction systems like, e.g., wave field synthesis systems or higher-order ambisonics, where the different loudspeaker signals are often strongly correlated. In this paper, a multichannel wave-domain AEC structure is proposed that maintains robustness without altering the loudspeaker signals, as is commonly required to preserve the reproduction quality. The proposed method exploits the dominance of certain couplings in the wave-domain representation of the loudspeaker-enclosure-microphone system. In this representation, preferring a strong weight of the dominant couplings in the identified system improves the system identification performance. A modification of the well-known generalized frequency-domain adaptive filtering algorithm is then presented to implement the proposed approach, including a self-contained description of all necessary components. An experimental evaluation compares the proposed method to competing approaches and shows that the proposed method compares well in terms of convergence behavior while avoiding the performance degradation, which is intrinsic to other approaches.
机译:与单通道情况相比,在多通道再现情况下,声学回声消除(AEC)更具挑战性。这主要是由于所谓的非唯一性问题,对于大规模多通道再现系统(例如,波场合成系统或更高阶的混响),其尤其是不同的扬声器信号通常具有很强的相关性,这一问题尤其严重。在本文中,提出了一种多声道波域AEC结构,该结构在不改变扬声器信号的情况下保持鲁棒性,这是保持再现质量所通常需要的。所提出的方法在扬声器-外壳-麦克风系统的波域表示中利用了某些耦合的优势。在该表示中,在所识别的系统中优选占主导地位的联轴器的重量较大,可以改善系统的识别性能。然后提出了对众所周知的广义频域自适应滤波算法的修改,以实现所提出的方法,包括对所有必要组件的独立描述。实验评估将所提出的方法与竞争方法进行了比较,结果表明所提出的方法在收敛行为方面进行了比较,同时避免了性能下降,这是其他方法所固有的。

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