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双快门光学振动传感

Dual-Shutter Optical Vibration Sensing.

作者信息

Sheinin Mark, Chan Dorian, O'Toole Matthew, Narasimhan Srinivasa G

出版信息

IEEE Trans Pattern Anal Mach Intell. 2023 Dec 20;PP. doi: 10.1109/TPAMI.2023.3344650.

Abstract

Visual vibrometry is a highly useful tool for remote capture of audio, as well as the physical properties of materials, human heart rate, and more. While visually-observable vibrations can be captured directly with a high-speed camera, minute imperceptible object vibrations can be optically amplified by imaging the displacement of a speckle pattern created by shining a laser beam on the vibrating surface. In this paper, we propose a novel method for sensing vibrations at high speeds (up to 63 kHz), for multiple scene sources at once, using sensors rated for only 130 Hz operation. Our method relies on simultaneously capturing the scene with two cameras equipped with rolling and global shutter sensors, respectively. The rolling shutter camera captures distorted speckle images that encode the high-speed object vibrations. The global shutter camera captures undistorted reference images of the speckle pattern, helping to decode the source vibrations. We demonstrate our method by capturing vibration caused by audio sources (e.g., speakers, human voice, and musical instruments) and analyzing the vibration modes of a tuning fork.

摘要

视觉振动测量法是一种非常有用的工具,可用于远程获取音频、材料的物理特性、人体心率等。虽然可以用高速摄像机直接捕捉肉眼可见的振动,但微小的、难以察觉的物体振动可以通过对激光束照射在振动表面上产生的散斑图案的位移进行成像来实现光学放大。在本文中,我们提出了一种新颖的方法,使用仅额定运行频率为130Hz的传感器,同时对多个场景源进行高速(高达63kHz)振动传感。我们的方法依赖于分别使用配备滚动快门传感器和全局快门传感器的两台摄像机同时捕捉场景。滚动快门摄像机捕捉编码高速物体振动的失真散斑图像。全局快门摄像机捕捉散斑图案的未失真参考图像,有助于解码源振动。我们通过捕捉音频源(如扬声器、人声和乐器)引起的振动并分析音叉的振动模式来演示我们的方法。

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