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Application of Three Dimensional Shape from Image Focus in LCD/TFT Displays Manufacturing

机译:三维形状从图像焦点的应用在LCD / TFT显示器制造中

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One of the fundamental objectives of computer vision is to reconstruct a three-dimensional (3D) structure of objects from two-dimensional (2D) images. Shape from Focus (SFF) is the problem of reconstructing the depth of the scene changing actively the optics of the camera until the point of interest is in focus. The point in focus gives information about its depth through the thin lens Gaussian law. Previous SFF algorithms use 2D window for finding the best focused points. In this paper, we propose to use 3D window for finding the best focused points. The new SFF algorithm is applied on the camera mounted microscope for developing an auto-grinding equipment of LCD color filters. In order to develop thin and bright displays, TFT-LCD is used nowadays. In the manufacturing process of TFT-LCD panels, cells and color fitters are put together. The protrusion which is generated by combining the two unequal sizes (difference in Microns) of glasses in the construction of LCD panels causes a big problem. Therefore, the protrusion is cut to the proper height before the two glasses are put together. Usually, the number of cells in a typical TFT/LCD display is in millions. The time for the checking and cutting of protrusions greatly affects the cost of manufacturing. We, therefore, propose the use of the proposed SFF algorithms for the said problem for fast and accurate process.
机译:计算机愿景的基本目标之一是重建来自二维(2D)图像的三维(3D)结构。来自焦点的形状(SFF)是重建场景深度的问题,它主动地改变了相机的光学器件,直到兴趣点焦点。焦点点通过薄镜头高斯法律提供有关其深度的信息。以前的SFF算法使用2D窗口来查找最佳聚焦点。在本文中,我们建议使用3D窗口来查找最佳聚焦点。新的SFF算法应用于相机安装的显微镜,用于开发LCD滤色器的自动研磨设备。为了开发薄而明亮的显示器,现在使用TFT-LCD。在TFT-LCD面板的制造过程中,将电池和彩色配件放在一起。通过在液晶面板的构建中组合两种不相等尺寸(微米差)玻璃产生的突起引起了大问题。因此,在将两个玻璃放在一起之前,将突起切割到适当的高度。通常,典型TFT / LCD显示器中的单元的数量是数百万的。检查和切割突起的时间大大影响了制造成本。因此,我们建议使用所提出的SFF算法,以便快速准确地使用所述问题。

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