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An Effective Tap-Length NLMS Algorithm for Network Echo Cancellers

机译:用于网络回声消除器的有效抽头长度NLMS算法

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A novel normalized least mean square (NLMS)-based algorithm is proposed to locate the active taps of the unknown impulse response in the application of network echo cancellation. Starting with the full length of the unknown echo path, the start-tap and end-tap estimates of the active region adapt, respectively, in the form of fractional tap. The effective tap-length estimate is defined by the length between the start-tap and end-tap estimates. The filter tap-weight vector is then updated with this effective tap-length estimate following the NLMS algorithm, while the tap weights located beyond the effective tap-length estimate are directly set to zero. In case that the active region of the unknown echo path shifts in a large scale, the start-tap and end-tap estimates are reset to the full length when the effective tap-length estimate is lower than a predetermined threshold value. Simulation results demonstrate that the proposed fractional tap-based algorithm can efficiently locate and track the effective tap length of the unknown echo path when the active coefficients change abruptly in locations and magnitudes, outperforming the existing stochastic tap-based schemes.
机译:提出了一种基于归一化最小均方(NLMS)的新颖算法,用于在网络回声消除的应用中定位未知脉冲响应的有源抽头。从未知回波路径的全长开始,活动区域的开始和结束估计分别以分数抽头的形式进行调整。有效的抽头长度估计由开始抽头和结束抽头估计之间的长度定义。然后,按照NLMS算法,使用该有效抽头长度估计来更新滤波器抽头加权向量,而将位于有效抽头长度估计之外的抽头权重直接设置为零。在未知回波路径的有效区域发生大规模偏移的情况下,当有效抽头长度估计值低于预定阈值时,将开始抽头估计和结束抽头估计重置为全长。仿真结果表明,当有源系数的位置和幅度突然变化时,所提出的基于分数抽头的算法可以有效地定位和跟踪未知回波路径的有效抽头长度,其性能优于现有的随机抽头方案。

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