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Design fabrication and testing of a Shack–Hartmann sensor with an automatic registration feature

机译:具有自动套准功能的Shack-Hartmann传感器的设计制造和测试

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摘要

In this research, design, construction, and testing of an innovative Shack–Hartmann sensor are described. As the most critical component, a polymer microlens array is injection molded and mounted on a board-level CMOS camera such that the focal plane of the microlens array is on the camera’s image plane. To allow for automatic registration of the spots of the measured area, a diffusing surface was created at the center of the lens array in the same diamond machining process in an uninterrupted operation. This unique diffusing surface does not generate an image spot. The no-spot feature functions as the reference in the measurement on the camera’s image plane. Using this unique feature, large global tip-tilt error can be detected and eliminated. In this research, both experiments and simulation have shown that the Shack–Hartmann sensor built using low cost components is capable of precision wavefront detection. This research also demonstrated that automatic registration based on the diffusing surface is simple and reliable.
机译:在这项研究中,描述了创新的Shack-Hartmann传感器的设计,构造和测试。作为最关键的组件,聚合物微透镜阵列被注塑成型并安装在板级CMOS相机上,以使微透镜阵列的焦平面在相机的图像平面上。为了自动记录测量区域的斑点,在不间断的操作中,在同一金刚石加工过程中,在透镜阵列的中心创建了一个漫射表面。这种独特的漫射表面不会产生图像斑点。无点功能充当相机图像平面上测量的参考。使用此独特功能,可以检测并消除较大的全局倾斜误差。在这项研究中,实验和仿真均表明,使用低成本组件构建的Shack-Hartmann传感器能够进行精确的波前检测。研究还表明,基于漫射面的自动配准既简单又可靠。

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