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A New Strategy for Online Secondary-Path Modeling of Narrowband Active Noise Control

机译:窄带有源噪声在线次级路径建模的新策略

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摘要

Online secondary-path modeling (SPM) based on the use of random auxiliary noise is a very promising and attractive technique for implementing active noise control (ANC). In this paper, a new strategy is proposed for the online SPM of narrowband ANC (NANC). A bandpass filter bank consisting of IIR notch filters is applied to the residual noise to separate the uncancelled sinusoidal noise from other broadband noises due to the injected auxiliary noise and an additive noise. The extracted sinusoidal noise is used simultaneously to scale the auxiliary noise, to clean the desired signal for the SPM subsystem, and to update the controller. The benefits of this strategy are twofold. It can effectively reduce the contribution of injected auxiliary noise to the residual noise power. Meanwhile, it can also considerably raise the convergence rate of overall system as well as the accuracy of online SPM. Preliminary analysis is also provided to support the proposed strategy. Extensive simulations with synthetic/real secondary paths and noises are performed to demonstrate the superiority of the proposed SPM strategy over the conventional techniques.
机译:基于使用随机辅助噪声的在线辅助路径建模(SPM)是实现主动噪声控制(ANC)的非常有前途和有吸引力的技术。本文针对窄带ANC(NANC)的在线SPM提出了一种新的策略。将由IIR陷波滤波器组成的带通滤波器组应用于残余噪声,以将未消除的正弦噪声与由于注入的辅助噪声和加性噪声引起的其他宽带噪声分开。提取的正弦噪声同时用于缩放辅助噪声,清理SPM子系统所需的信号并更新控制器。这种策略的好处是双重的。它可以有效地减少注入的辅助噪声对残余噪声功率的影响。同时,它也可以大大提高整个系统的收敛速度以及在线SPM的准确性。还提供了初步分析来支持所提出的策略。用合成/实际次级路径和噪声进行了广泛的仿真,以证明所提出的SPM策略优于传统技术。

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