一种鲁棒双径DCD-RLS立体声回波消除算法

C. Stanciu, S. Ciochină
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引用次数: 5

摘要

立体声系统使用独立的通道和由两个麦克风和两个扬声器组成的标准配置来创造音频方向性的错觉。用于校正影响系统的声回波的基本关联数学模型是带有四个自适应滤波器的双输入/双输出实随机变量。该方案的一个重要简化是广泛线性(WL)模型,该模型使用具有复值随机变量(crv)的单输入/单输出系统,只有一个自适应滤波器。为了演示其功能,采用递归最小二乘(RLS)自适应算法。将RLS与二分类坐标下降(DCD)算法相结合,大大降低了矩阵反演算法的复杂度,并利用两个滤波器的集合(带有传递逻辑- TL)在双话等高干扰情况下显著提高了性能。
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A robust dual-path DCD-RLS algorithm for stereophonic acoustic echo cancellation
The stereophonic systems create the illusion of audio directionality using independent channels with a standard configuration consisting of two microphones and two speakers. The basic associated mathematical model used to correct the acoustic echo that affects the system has two-input/ two-output real random variables with four adaptive filters. An important simplification to this scheme is the widely linear (WL) model which uses a single-input/ single-output system with complex valued random variables (CRVs) and only one adaptive filter. In order to demonstrate the functionality, the recursive least-squares (RLS) adaptive algorithm is used. The RLS is conveniently combined with the dichotomous coordinate descent (DCD) algorithm in order to greatly reduce the matrix inversion arithmetic complexity and an aggregate of two filters (with transfer logic - TL) is used to considerably improve performance in high disturbance situations such as double talk.
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