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Micro-lenticular array for spatial-filtering velocimetry on solid surfaces

机译:微型透镜阵列,用于固体表面上的空间滤波测速

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摘要

We present a miniaturized, low-cost optical method for detection of in-plane speckle translation. The speckles are produced by illumination of a non-specular target surface with coherent light from a vertical cavity surface emitting laser. The scattered light propagates through free space to the sensor inlet. At the inlet speckle translation appears due to both translation and rotation of the target. The sensor is based on a micro-lenticular array and a spherical lens, which implement a narrow spatial band-pass filter. The spatial filter acts on the intensity distribution of the translating speckle pattern. The presented free-space propagation design provides a sensor that in principle operates within a large range of working distances, and with a low susceptibility to variations in working distance. The relation between the precision of the sensor and the decorrelation length for speckle translation at the sensor inlet is studied. Configured as a free-space propagation sensor, and in this case operating with a low power laser source, the pitch of the lens array is required to be in the order of a few tens of micrometres. Therefore, limitations due to diffraction and aberrations due to the high numerical aperture of the lenslets have been studied.
机译:我们提出了一种用于检测面内斑点平移的小型,低成本光学方法。通过用来自垂直腔表面发射激光器的相干光照射非镜面目标表面来产生斑点。散射的光通过自由空间传播到传感器入口。由于目标的平移和旋转,在入口处出现了斑点散斑。该传感器基于微透镜阵列和球面透镜,它们实现了狭窄的空间带通滤波器。空间滤波器作用于平移斑点图案的强度分布。提出的自由空间传播设计提供了一种传感器,该传感器原则上在较大的工作距离范围内工作,并且对工作距离变化的敏感性较低。研究了传感器精度与传感器入口处斑纹平移的去相关长度之间的关系。配置为自由空间传播传感器,并且在这种情况下使用低功率激光源进行操作,要求透镜阵列的节距约为几十微米。因此,已经研究了由于小透镜的高数值孔径导致的衍射和像差引起的限制。

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