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Optimal Variable Step-Size NLMS Algorithms With Auxiliary Noise Power Scheduling for Feedforward Active Noise Control

机译:具有辅助噪声功率调度的最优变步长NLMS算法用于前馈有源噪声控制

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The paper introduces two improvements in the feedforward active noise control system with online secondary path modeling developed by Akhtar, Abe, and Kawamata: (1) optimal variable step-size parameters are derived for the adaptation algorithms of the secondary path modeling filter and of the control filter and (2) a self-tuning power scheduling for the auxiliary noise is introduced. The proposed power scheduling is chosen so that in every operating condition a specific ratio between the powers at the error microphone of the auxiliary noise and of the residual noise is achieved. It is shown that for the same auxiliary noise conditions the adaptation algorithms equipped with the optimal variable step-size parameters improve the convergence speed of the system and the estimation accuracy of the secondary path and of the optimal control filter. It is also shown that, compared with a fixed power auxiliary noise, the power scheduling of the auxiliary noise is capable to better meet the conflicting requirements of fast convergence speed of the secondary path modeling filter and of low residual noise in steady state conditions.
机译:本文介绍了Akhtar,Abe和Kawamata开发的具有在线次级路径建模的前馈有源噪声控制系统的两项改进:(1)为次级路径建模滤波器和自适应滤波器的自适应算法推导了最佳可变步长参数。控制滤波器和(2)引入了针对辅助噪声的自调谐功率调度。选择所建议的功率调度,以便在每种工作条件下,在辅助噪声和残余噪声的误差传声器处的功率之间达到特定的比率。结果表明,对于相同的辅助噪声条件,配备有最佳可变步长参数的自适应算法可提高系统的收敛速度,并改善次级路径和最佳控制滤波器的估计精度。还表明,与固定功率的辅助噪声相比,辅助噪声的功率调度能够更好地满足次级路径建模滤波器收敛速度快和稳态条件下残留噪声低的矛盾要求。

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