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A New Robust Narrowband Active Noise Control System in the Presence of Frequency Mismatch

机译:存在频率不匹配的新型鲁棒窄带有源噪声控制系统

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摘要

Narrowband active noise control (ANC) systems have many real-life applications where the noise signals generated by rotating machines are modeled as sinusoidal signals in additive noise. However, when the timing signal sensor, such as a tachometer used to identify the signal frequencies, and the cosine wave generator contain errors, the frequencies of reference sinusoids fed to each ANC channel will then be different from the real primary noise signal frequencies. This difference is referred to as frequency mismatch (FM). In this paper, through extensive simulations, we first demonstrate that the performance capabilities of a conventional parallel form narrowband ANC system using the filtered-x LMS (FxLMS) algorithm degrades significantly even for an FM as small as 1%. Convergence of the algorithm in the mean sense is also analytically investigated for a better understanding of its performance degradation. Next, we propose a new narrowband ANC system that successfully compensates for the performance degradations due to the FM. The amplitude/phase adjustment of reference sinusoids and the FM mitigations in the proposed system are performed simultaneously in a harmonic fashion such that the influence of the FM can be removed almost completely. Simulations as well as application to a real noise signal are provided to demonstrate the effectiveness of the proposed new system.
机译:窄带有源噪声控制(ANC)系统具有许多实际应用,其中旋转机械产生的噪声信号被建模为加性噪声中的正弦信号。但是,当定时信号传感器(例如用于识别信号频率的转速表)和余弦波发生器包含错误时,馈送到每个ANC通道的参考正弦波的频率将不同于实际的主要噪声信号频率。这种差异称为频率失配(FM)。在本文中,通过广泛的仿真,我们首先证明,即使对于低至1%的FM,使用filter-x LMS(FxLMS)算法的常规并行形式窄带ANC系统的性能也会显着降低。还对平均意义上算法的收敛性进行了分析研究,以更好地了解其性能下降。接下来,我们提出一种新的窄带ANC系统,该系统成功地补偿了由于FM引起的性能下降。参考正弦波的幅度/相位调整和所提出的系统中的FM缓解以谐波方式同时执行,从而可以几乎完全消除FM的影响。提供了仿真以及对实际噪声信号的应用,以证明所提出的新系统的有效性。

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