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激光声:数字音频流的光声转换。

Laser-sound: optoacoustic transduction from digital audio streams.

机构信息

Department of Electrical and Computer Engineering, Wire Communications Laboratory, Audio and Acoustic Technology Group, University of Patras, 26500, Rio, Greece.

Karlsruhe Institute of Technology, Engler-Bunte-Institute, Karlsruhe, Germany.

出版信息

Sci Rep. 2021 Jan 22;11(1):476. doi: 10.1038/s41598-020-78990-z.

Abstract

This work presents a novel laser-based optoacoustic transducer capable of reproducing controlled and continuous sound of arbitrary complexity in the air or on solid targets. Light-to-sound transduction is achieved via laser-induced breakdown, leading to the formation of plasma acoustic sources in any desired spatial location. The acoustic signal is encoded into pulse streams via a discrete-time audio modulation and is reproduced by fast consecutive excitation of the target medium with appropriately modulated laser pulses. This results in the signal being directly reconstructed at the desired location of the target medium without the need for a receiver or demodulation device. In this work, the principles and evaluation results of such a novel laser-sound prototype system are presented. The performance of the prototype is evaluated by systematic experimental measurements of audio test signals, from which the basic acoustical response is derived. Moreover, a generic computational model is presented that allows for the simulation of laser-sound reproduction of 1-bit or multibit audio streams. The model evaluations are validated by comparison with the acoustic measurements, whereby a good agreement is found. Finally, the computational model is used to simulate an ideal optoacoustic transducer based on the specifications of state-of-the-art commercially available lasers.

摘要

本工作提出了一种新颖的基于激光的光声换能器,能够在空气中或固体目标上再现任意复杂的受控连续声音。光声转换是通过激光诱导击穿实现的,从而在任何所需的空间位置形成等离子体声源。通过离散时间音频调制将声信号编码为脉冲流,并通过用适当调制的激光脉冲快速连续激发目标介质来再现声信号。这导致信号直接在目标介质的期望位置重建,而无需接收器或解调设备。在这项工作中,提出了这种新型激光声原型系统的原理和评估结果。通过对音频测试信号的系统实验测量来评估原型的性能,从中得出基本的声学响应。此外,还提出了一种通用的计算模型,该模型允许模拟 1 位或多比特音频流的激光声再现。通过与声学测量的比较来验证模型评估,发现两者吻合较好。最后,使用计算模型模拟了基于最先进的商业可用激光器规格的理想光声换能器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2cd/7822945/e0b075cf2875/41598_2020_78990_Fig1_HTML.jpg

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