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Real-time Sound Detection and Regeneration Based on Optical Flow Algorithm of Laser Speckle Images

机译:基于光斑图像光流算法的实时声音检测与再生

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摘要

Sound detection with optical means is an appealing research topic. Laser speckle is one effective method to detect the sound due to its sensitivity to tiny motion. The traditional laser-speckle sound recovery methods require a high-speed camera to record fast-moving speckle images and then recover the original sound signals from the motion information of the captured speckle images. In this manuscript, a laser microphone system is proposed to detect and regenerate the sound signal in real time. In the proposed system, only a small part of the imaging sensor is used to ensure a high sampling rate with a common industrial camera and reduce the computation time consumption. Meanwhile, optical flow algorithm is employed to obtain the motion information of captured speckle images and regenerate the sound. These two points allow us to capture images from the camera and regenerate sound in real time without storing any data into the computer, which greatly increases the speed of the system and achieves a microphone-like functions. Experiments are conducted to show that the proposed system can detect and regenerate the sound signal in real-time with a high quality.
机译:用光学手段进行声音检测是一个吸引人的研究主题。由于其对微小运动的敏感性,激光散斑是一种检测声音的有效方法。传统的激光散斑声音恢复方法需要高速相机记录快速移动的散斑图像,然后从捕获的散斑图像的运动信息中恢复原始声音信号。在此手稿中,提出了一种激光麦克风系统,用于实时检测和再生声音信号。在所提出的系统中,仅使用一小部分成像传感器来确保普通工业相机的高采样率并减少计算时间消耗。同时,采用光流算法获取所采集的散斑图像的运动信息并再生声音。这两点使我们能够从相机捕获图像并实时再生声音,而无需将任何数据存储到计算机中,这大大提高了系统速度并实现了类似麦克风的功能。实验表明,该系统可以实时,高质量地检测和再生声音信号。

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