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A real-time implementation of a stereophonic acoustic echo canceler

机译:立体声回声消除器的实时实现

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Teleconferencing systems employ acoustic echo cancelers to reduce echoes that result from the coupling between loudspeaker and microphone. To enhance the sound realism, two-channel audio is necessary. However, stereophonic acoustic echo cancellation (SAEC) is more difficult to solve because of the necessity to uniquely identify two acoustic paths, which becomes problematic since the two excitation signals are highly correlated. In this paper, a wideband stereophonic acoustic echo canceler is presented. The fundamental difficulty of stereophonic acoustic echo cancellation is described and an echo canceler based on a fast recursive least squares (FRLS) algorithm in a subband structure, with equidistant frequency bands, is proposed. The structure has been used in a real-time implementation, with which experiments have been performed. In this paper, simulation results of this implementation on real life recordings, with 8 kHz bandwidth, are studied. The results clearly verify that the theoretic fundamental problem of SAEC also applies in real-life situations. They also show that more sophisticated adaptive algorithms are needed in the lower frequency regions than in the higher regions
机译:电话会议系统使用回声消除器来减少扬声器和麦克风之间耦合产生的回声。为了增强声音的真实感,需要两声道音频。然而,由于必须唯一地识别两个声路,因此立体声声回声消除(SAEC)更难解决,由于两个激励信号高度相关,因此这成为问题。本文提出了一种宽带立体声回声消除器。描述了立体声回声消除的基本难点,并提出了一种基于等距离频带子带结构中基于快速递归最小二乘(FRLS)算法的回声消除器。该结构已用于实时实现中,并已进行了实验。在本文中,研究了在8 kHz带宽的实际记录中该实现的仿真结果。结果清楚地证明了SAEC的理论基础问题也适用于现实生活中。他们还表明,与较高的区域相比,较低的频率区域需要更复杂的自适应算法

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