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Lenticular array for spatial filtering velocimetry of laser speckles from solid surfaces

机译:用于固体表面激光散斑空间滤波测速的透镜阵列

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摘要

We present a low-cost optical design for the detection of speckle translation, which can provide measures of in-plane translation or the rotation of a solid structure. A nonspecular target surface is illuminated with coherent light. The scattered light is propagated through an optical arrangement that has been particularly designed for the type of mechanical measurand for which the sensor is intended. The dynamics of the speckle field that arise from the target surface are projected onto a lenticular array, constituting a narrow spatial bandpass filter for the speckle spectrum. The filter provides access to the full phase information of the temporal quasi-sinusoidal intensity output; thus differential arrangements of photodetectors can provide suppression of low-frequency oscillations and higher harmonics, and the direction of the speckle translation can be determined. The spatial filter of the sensor is characterized, and the precision of the sensor when it is integrated with an electronic zero-crossing-detection processor is investigated. The best measurement accuracy obtained at constant velocity is 1% at 1.6-mm translation; the relative standard deviation decreases with the square root of the distance traveled.
机译:我们提出了一种用于检测斑点平移的低成本光学设计,该设计可提供平面内平移或实体结构旋转的措施。非镜面目标表面被相干光照射。散射的光通过光学装置传播,该光学装置专门针对传感器要用于的机械测量类型而设计。从目标表面产生的散斑场的动力学投影到双凸透镜阵列上,构成用于散斑光谱的狭窄空间带通滤波器。滤波器提供对时间准正弦强度输出的完整相位信息的访问;因此,光检测器的差分布置可以抑制低频振荡和高次谐波,并且可以确定斑点平移的方向。表征了传感器的空间滤波器,并研究了传感器与电子过零检测处理器集成时的精度。在恒定速度下获得的最佳测量精度为1.6毫米平移时为1%;相对标准偏差随行进距离的平方根减小。

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