Department of Computer Science and Industrial Engineering, University of Lleida, Jaume II, 69, Lleida 25001, Spain.
Sensors (Basel). 2011;11(12):11856-70. doi: 10.3390/s111211856. Epub 2011 Dec 20.
In this paper, a low cost optical flow sensor is combined with an external laser device to measure surface displacements and mechanical oscillations. The measurement system is based on applying coherent light to a diffuser surface and using an optical flow sensor to analyze the reflected and transferred light to estimate the displacement of the surface or the laser spot. This work is focused on the characterization of this measurement system, which can have the optical flow sensor placed at different angles and distances from the diffuser surface. The results have shown that the displacement of the diffuser surface is badly estimated when the optical mouse sensor is placed in front of the diffuser surface (angular orientation >150°) while the highest sensitivity is obtained when the sensor is located behind the diffuser surface and on the axis of the laser source (angular orientation 0°). In this case, the coefficient of determination of the measured displacement, R(2), was very high (>0.99) with a relative error of less than 1.29%. Increasing the distance between the surface and the sensor also increased the sensitivity which increases linearly, R(2) = 0.99. Finally, this measurement setup was proposed to measure very low frequency mechanical oscillations applied to the laser device, up to 0.01 Hz in this work. The results have shown that increasing the distance between the surface and the optical flow sensor also increases the sensitivity and the measurement range.
在本文中,我们将一种低成本的光流传感器与外部激光设备相结合,用于测量表面位移和机械振动。该测量系统基于将相干光照射到漫射器表面,并使用光流传感器分析反射和传输的光,以估计表面或激光点的位移。这项工作主要集中在对该测量系统的特性进行表征,其中可以将光流传感器放置在与漫射器表面不同的角度和距离处。结果表明,当光鼠标传感器放置在漫射器表面(角度方向>150°)的前面时,漫射器表面的位移估计会很差,而当传感器位于漫射器表面后面并位于激光源的轴线上时(角度方向 0°),可以获得最高的灵敏度。在这种情况下,测量位移的决定系数 R(2) 非常高(>0.99),相对误差小于 1.29%。增加表面和传感器之间的距离也会增加灵敏度,其呈线性增加,R(2)=0.99。最后,该测量装置被提议用于测量应用于激光设备的非常低频率的机械振动,在本工作中可达到 0.01 Hz。结果表明,增加表面和光流传感器之间的距离也会提高灵敏度和测量范围。