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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Human visual model-based technology: measuring the geometric parameters of microinstrument
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Human visual model-based technology: measuring the geometric parameters of microinstrument

机译:基于人类视觉模型的技术:测量微仪器的几何参数

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In the paper, a scheme of an optical microscope which includes a special bitelecentric optical system for the formation of a diode support and a telecentric objective for capturing the image has been designed and implemented. The use of such system makes it possible to reduce the diffraction effects at the edges of the shadow structure and to measure (using the microscope) the main parameters of a cutting microinstrument: its protrusion and diameter. An algorithm for modeling the two main visual channels of the human eye was developed. It allowed rapid detection of spatial-temporal processes and noise, and provided measuring the cutting edge contour of the instrument with a subpixel error (up to 0.01 pixel) and determining the dimensions of the cutting tool with an error of 0.5 μm.
机译:在本文中,已经设计并实现了一种光学显微镜的方案,该方案包括一个特殊的偏心光学系统,用于形成二极管支架和一个用于捕获图像的远心物镜。这种系统的使用可以减少阴影结构边缘的衍射效应,并可以(使用显微镜)测量切割微器械的主要参数:其突起和直径。开发了一种模拟人眼两个主要视觉通道的算法。它可以快速检测时空过程和噪声,并提供带有亚像素误差(最大0.01像素)的测量仪器的切削刃轮廓,并以0.5μm的误差确定刀具的尺寸。

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