Rubio-Oliver Ricardo, Sanz Martin, Sigalov Michael, García Javier, Beiderman Yevgeny
Departamento de Óptica y de Optometría y Ciencias de la Visión, Facultad de Física, Universidad de Valencia, C/Doctor Moliner 50, 46100 Burjassot, Spain.
Faculty of Electrical and Electronics Engineering, Holon Institute of Technology, 52 Golomb Street, P.O. Box 305, Holon 5810201, Israel.
Sensors (Basel). 2024 May 22;24(11):3293. doi: 10.3390/s24113293.
Speckle pattern-based remote vibration monitoring has recently become increasingly valuable in industrial, commercial, and medical applications. The dynamic and random nature of speckle patterns offers practical applications for imaging and measurement systems. The speckle pattern is an interference pattern generated by light scattered from a rough surface onto a remote plane. It is typically sensed using area scan cameras (2D), which are limited to framerates of 2-4 kHz and can only capture a small region of interest (ROI). In this work, we propose a technique that enables the capture of synthetic 2D speckle patterns using a 1D high-acquisition-rate sensor and a diffractive optical element (DOE) to produce image replicas. The multiple replicas are scanned by the 1D sensor simultaneously at different spatial positions. This method provides an ability to sense remote vibrations in all directions, contrary to the case with a simple 1D sensing system.
基于散斑图案的远程振动监测最近在工业、商业和医疗应用中变得越来越有价值。散斑图案的动态和随机性质为成像和测量系统提供了实际应用。散斑图案是由从粗糙表面散射到远程平面上的光产生的干涉图案。它通常使用面阵相机(二维)进行传感,其帧率限制为2 - 4 kHz,并且只能捕获小的感兴趣区域(ROI)。在这项工作中,我们提出了一种技术,该技术能够使用一维高采集率传感器和衍射光学元件(DOE)来捕获合成二维散斑图案,以产生图像副本。一维传感器同时在不同空间位置扫描多个副本。与简单的一维传感系统不同,该方法提供了在所有方向上感测远程振动的能力。