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Tap-length optimization of adaptive filters used in stereophonic acoustic echo cancellation

机译:立体声回声消除中使用的自适应滤波器的抽头长度优化

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An adaptive filter with a large number of weights or taps is necessary for stereophonic acoustic echo cancellation (SAEC), depending on the room impulse response and acoustic path where the cancellation is performed. However, a large tap-length results in slow convergence and increases the complexity of the tapped delay line structure for FIR adaptive filters. To overcome this problem, there is a need for an optimum tap-length-estimation algorithm that provides better convergence for the adaptive filters used in SAEC. This paper presents a solution to the problem of balancing convergence and steady-state performance of long length adaptive filters used for SAEC by proposing a new tap-length-optimization algorithm. The optimum tap length and step size of the adaptive filter are derived considering an impulse response with an exponentially-decaying envelope, which models a wide range of acoustic echo paths. The tap-length optimization is applied to a single long adaptive filter with thousands of coefficients to decrease the total number of weights, which in turn reduces the computational load. To further increase the convergence rate, the proposed tap-length-optimization algorithm is applied to an existing multiple sub-filter-based echo canceller, for which we present a convergence analysis. Computer simulations are also presented, comparing the proposed approach with related work.
机译:对于立体声回声消除(SAEC),必须根据房间的冲激响应和执行消声的声路,使用具有大量权重或抽头的自适应滤波器。但是,较大的抽头长度会导致收敛缓慢,并会增加FIR自适应滤波器的抽头延迟线结构的复杂性。为了克服这个问题,需要一种最佳抽头长度估计算法,该算法可以为SAEC中使用的自适应滤波器提供更好的收敛性。通过提出一种新的抽头长度优化算法,提出了一种用于SAEC的长距离自适应滤波器的平衡收敛和稳态性能问题的解决方案。考虑到具有指数衰减包络的脉冲响应,可以得出自适应滤波器的最佳抽头长度和步长,该包络可模拟各种声学回声路径。抽头长度优化应用于具有数千个系数的单个长自适应滤波器,以减少权重的总数,从而减少计算量。为了进一步提高收敛速度,将提出的抽头长度优化算法应用于现有的基于多个子滤波器的回波消除器,为此,我们进行了收敛分析。还提供了计算机仿真,将建议的方法与相关工作进行了比较。

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