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A control interface and imaging system for eyeball features measurement

机译:用于眼球特征测量的控制界面和成像系统

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In this study, two white light LEDs were mounted on the upper and lower parts of a CCD camera. By using imaging and lighting control programs, lighting signals were transferred to a monolithic chip light control circuit, so that two white light LEDs could generate instantaneous flash within different preset time intervals. After capturing the images of two flash instants using the CCD camera, the center of the pupil is taken as the center of a circle to measure the rounded edge. The second image is captured when the brightness of the second pulsed light is equivalent to that of the first pulsed light, and the pupil size is the same as that of the first image. The iris region is searched from outside to inside by simply calculating the objective function value at discretely sampled radius and center. The captured images are classified as 'zone of rejection', 'reserved zone' and 'merge zone'. A new interpolation method is used for merging two images to complete an image without any reflective dot, as well as a safe lighting design, and double-pulse iris imaging system.
机译:在这项研究中,两个白光LED分别安装在CCD摄像机的上部和下部。通过使用成像和照明控制程序,照明信号被传输到单片芯片光控制电路,从而两个白光LED可以在不同的预设时间间隔内产生瞬时闪光。使用CCD相机捕获两个闪光瞬间的图像后,将瞳孔的中心作为一个圆的中心以测量圆角。当第二脉冲光的亮度等于第一脉冲光的亮度,并且光瞳尺寸与第一图像的光瞳尺寸相同时,捕获第二图像。通过简单地计算在离散采样半径和中心处的目标函数值,可以从外到内搜索虹膜区域。所捕获的图像分为“拒绝区域”,“保留区域”和“合并区域”。一种新的插值方法用于合并两个图像以完成一个没有任何反射点的图像,以及一种安全的照明设计和双脉冲虹膜成像系统。

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