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使用后向反射膜和激光多普勒振动计进行实时远程声学传感与控制。

Using a Retro-Reflective Membrane and Laser Doppler Vibrometer for Real-Time Remote Acoustic Sensing and Control.

作者信息

Xiao Tong, Zhao Sipei, Qiu Xiaojun, Halkon Benjamin

机构信息

Centre for Audio, Acoustics and Vibration, University of Technology Sydney, Ultimo, NSW 2007, Australia.

出版信息

Sensors (Basel). 2021 Jun 3;21(11):3866. doi: 10.3390/s21113866.

Abstract

Microphones have been extensively studied for many decades and their related theories are well-established. However, the physical presence of the sensor itself limits its practicality in many sound field control applications. Laser Doppler vibrometers (LDVs) are commonly used for the remote measurement of surface vibration that are related to the sound field without the introduction of any such physical intervention. This paper investigates the performance and challenges of using a piece of retro-reflective film directly as an acoustic membrane pick-up with an LDV to sense its vibration to form a remote acoustic sensing apparatus. Due to the special properties of the retro-reflective material, the LDV beam can be projected to the target over a wide range of incident angles. Thus, the location of the LDV relative to the pick-up is not severely restricted. This is favourable in many acoustic sensing and control applications. Theoretical analysis and systematic experiments were conducted on the membrane to characterise its performance. One design has been selected for sensing sound pressure level above 20 dB and within the 200 Hz to 4 kHz frequency range. Two example applications-remote speech signal sensing/recording and an active noise control headrest-are presented to demonstrate the benefits of such a remote acoustic sensing apparatus with the retro-reflective material. Particularly, a significant 22.4 dB noise reduction ranging from 300 Hz to 6 kHz has been achieved using the demonstrated active control system. These results demonstrate the potential for such a solution with several key advantages in many applications over traditional microphones, primarily due to its minimal invasiveness.

摘要

几十年来,麦克风已经得到了广泛研究,其相关理论也已成熟。然而,传感器本身的物理存在限制了其在许多声场控制应用中的实用性。激光多普勒振动计(LDV)通常用于远程测量与声场相关的表面振动,而无需引入任何此类物理干预。本文研究了直接使用一块反光膜作为声学膜拾音器,并与LDV配合以感测其振动,从而形成远程声学传感装置的性能和挑战。由于反光材料的特殊性质,LDV光束可以在很宽的入射角范围内投射到目标上。因此,LDV相对于拾音器的位置没有受到严格限制。这在许多声学传感和控制应用中是有利的。对该膜进行了理论分析和系统实验,以表征其性能。已选择一种设计用于感测20 dB以上、200 Hz至4 kHz频率范围内的声压级。给出了两个示例应用——远程语音信号传感/记录和有源噪声控制头枕,以展示这种带有反光材料的远程声学传感装置的优势。特别是,使用所展示的有源控制系统,在300 Hz至6 kHz范围内实现了高达22.4 dB的显著降噪。这些结果证明了这种解决方案在许多应用中相对于传统麦克风具有几个关键优势的潜力,主要是因为其侵入性最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/467b/8199929/b0a17345064d/sensors-21-03866-g001.jpg

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