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Two-stage active noise control with online secondary-path filter based on an adapted scheduled-stepsize NLMS algorithm

机译:基于自适应步长NLMS算法的在线二级路径滤波器两阶段有源噪声控制

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摘要

A two-stage active noise control (ANC) system is proposed for non-stationary environments: a secondary-path filtering (SPF) stage and a control filtering (CF) stage. The secondary-path filter is roughly trained as quickly as possible in the SPF stage. Based on the trained secondary-path filter, the control filter is trained to minimize the residual errors sensed by an error microphone in the CF stage. A stage-switching algorithm is designed to exchange between the SPF stage and the CF stage based only on signals from the error microphone, which moves the CF stage to the SPF stage whenever the residual errors reach up to a certain level in which the control filter cannot suppress the residual errors mainly caused by the change of the secondary path. To train the secondary-path filter and the control filter quickly and robustly, a scheduled-stepsize normalized least mean square (NLMS) algorithm is adapted to handle not only measurement noises but also disturbances mutually generated between the training of the secondary-path filter and that of the control filter. Since the adapted scheduled-stepsize NLMS algorithm presets the optimal stepsizes for each iteration, the proposed ANC system trains quickly the filters without the additional computations and reduces the residual errors over other ANC systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种用于非平稳环境的两级有源噪声控制(ANC)系统:次级路径滤波(SPF)级和控制滤波(CF)级。在SPF阶段,对次级路径滤波器进行了尽可能快的粗略训练。基于经过训练的次级路径滤波器,对控制滤波器进行了训练,以最大程度地减少CF阶段中的误差麦克风所感测的残留误差。设计了一个级切换算法,仅根据来自误差麦克风的信号在SPF级和CF级之间进行交换,每当残留误差达到控制滤波器的特定水平时,该CF级便移至SPF级。无法抑制主要由次级路径变化引起的残留误差。为了快速而稳健地训练次级路径滤波器和控制滤波器,计划的步长归一化最小均方(NLMS)算法不仅适用于处理测量噪声,还适用于处理次级路径滤波器和控制滤波器之间相互产生的干扰。控制过滤器的由于调整后的调度步长NLMS算法为每次迭代预设了最佳步长,因此拟议的ANC系统无需其他计算即可快速训练滤波器,并减少了其他ANC系统上的残留误差。 (C)2019 Elsevier Ltd.保留所有权利。

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