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An Efficient Acoustic Echo Cancellation Design For Systems With Long Room Impulses And Nonlinear Loudspeakers

机译:具有长房间脉冲和非线性扬声器的系统的有效回声消除设计

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Acoustic echo is an annoying issue for many hands-free telecommunication systems. Because of room acoustics and delay in the transmission path, echoes affect the sound quality and may hamper communications. Thus, acoustic echo cancellers (AECs) are critical for enhancing the audio quality. Echo cancellation is challenging because long room impulse response slows down the convergence rate and increases the computational complexity of the AEC designs. Nonlinearity of the power amplifier or the loudspeaker further exacerbates the problem. In this paper, we propose a novel AEC algorithm when the loudspeaker-enclosure-microphone system is described by a Hammerstein model. We show that by introducing a channel shortening filter, the length of the "effective" acoustic echo path is reduced considerably. Hence, the computational complexity of AECs is reduced and the convergence rate is increased. Adaptive algorithms are developed for the proposed structure and their convergence is shown analytically. The effectiveness of our method is illustrated by computer simulations.
机译:对于许多免提电信系统来说,声学回声是一个令人讨厌的问题。由于房间的声音和传输路径中的延迟,回声会影响声音质量并可能妨碍通信。因此,声学回声消除器(AEC)对于增强音频质量至关重要。回声消除具有挑战性,因为长的房间脉冲响应会减慢收敛速度并增加AEC设计的计算复杂性。功率放大器或扬声器的非线性进一步加剧了该问题。在本文中,我们提出了一种新的AEC算法,用于通过Hammerstein模型描述扬声器-扬声器-麦克风系统。我们表明,通过引入信道缩短滤波器,“有效”声回波路径的长度将大大减少。因此,降低了AEC的计算复杂度并提高了收敛速度。针对提出的结构开发了自适应算法,并通过分析显示了它们的收敛性。计算机仿真说明了我们方法的有效性。

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