Psychoacoustically Motivated Active Noise Control at Remote Locations

M. Munir, W. Abdulla, I. Ardekani
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引用次数: 2

Abstract

Active noise control (ANC) is an effective way to cancel the low-frequency noise. The conventional ANC system creates the ‘zone of quiet’ by minimizing the mean square error (MSE) at the location of an error microphone. However, in practical applications, sometimes it is not possible to achieve the noise attenuation at the desired location due to physical constraints limiting locating the error microphone at certain points. Similarly, the performance of the conventional ANC system also compromises when the impression of audio sensation on human auditory does not match the numerical values of the system. It is because the human ear has complicated psychoacoustic properties. In this paper, we present a new psychoacoustically motivated ANC system for a remote location. Noise weighting filters are incorporated into remote ANC to improve the audio sensation of the residual noise. The performance of the purposed system is evaluated by computer simulation, and the perceptual loudness is selected as a performance criterion for the psychoacoustic assessment of residual noise.
偏远地区心理声学驱动的主动噪声控制
主动噪声控制是消除低频噪声的有效手段。传统的ANC系统通过最小化误差麦克风位置的均方误差(MSE)来创建“安静区”。然而,在实际应用中,由于物理约束限制了误差传声器在某些点的定位,有时不可能在期望的位置实现噪声衰减。同样,当人类听觉对音频感觉的印象与系统的数值不匹配时,传统ANC系统的性能也会受到影响。这是因为人耳具有复杂的心理声学特性。在本文中,我们提出了一种新的心理声学激励的远程位置ANC系统。噪声加权滤波器被纳入远程ANC,以改善残余噪声的音频感觉。通过计算机仿真对目标系统的性能进行评价,并选择感知响度作为剩余噪声心理声学评价的性能标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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