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On Active Noise Control Systems With Online Acoustic Feedback Path Modeling

机译:在线声反馈路径建模的有源噪声控制系统研究

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摘要

The presence of strong acoustic feedback degrades the convergence speed of the active noise control (ANC) filter, and in the worst case the ANC system may become unstable. A fixed feedback neutralization filter, obtained offline, can be used to neutralize the acoustic feedback. The feedback path, however, may be time varying, and we may need continual adjustments during online operation of the ANC system. This paper proposes a new method for online modeling of the acoustic feedback path in ANC systems. The proposed method uses three adaptive filters; a noise control filter, a feedback path modeling (FBPM) filter, and an adaptive noise cancelation (ADNC) filter. The objective of ADNC filter is to remove the disturbance from the desired response of FBPM filter. In comparison with the existing method, which works only for predictable noise sources, the proposed method can work, as well, with the broadband noise sources. The computer simulations are carried out for narrowband (predictable) (case I) and broadband (random) noise sources (case II). It is demonstrated that the proposed method performs better than the existing method in both cases
机译:强声反馈的存在会降低有源噪声控制(ANC)滤波器的收敛速度,在最坏的情况下,ANC系统可能会变得不稳定。离线获得的固定反馈中和滤波器可用于中和声反馈。但是,反馈路径可能会随时间变化,并且在ANC系统在线运行期间我们可能需要不断进行调整。本文提出了一种在线建模ANC系统中声反馈路径的新方法。所提出的方法使用三个自适应滤波器。噪声控制滤波器,反馈路径建模(FBPM)滤波器和自适应噪声消除(ADNC)滤波器。 ADNC滤波器的目的是从FBPM滤波器的期望响应中消除干扰。与仅适用于可预测噪声源的现有方法相比,所提出的方法也适用于宽带噪声源。针对窄带(可预测)(情况I)和宽带(随机)噪声源(情况II)进行了计算机仿真。结果表明,在两种情况下,该方法的性能均优于现有方法。

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