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    • 86. 发明授权
    • System and method for focusing discrete points on an under-measured object
    • 用于将离散点聚焦在未测量对象上的系统和方法
    • US07821652B2
    • 2010-10-26
    • US11967111
    • 2007-12-29
    • Chih-Kuang ChangLi Jiang
    • Chih-Kuang ChangLi Jiang
    • G01B11/14G02B7/04
    • G01B11/005
    • A method for focusing discrete points on an under-measured object is provided. The method includes: (a) receiving an image of the object, selecting measurement points on the image, and obtaining X, Y coordinate values of the measurement points; (b) searching a solid point on the under-measured object according to the X, Y coordinate value of one of the measurement points, wherein the solid point corresponds to the measuring point; (c) emitting a laser light to the solid point for computing a vertical distance “h” between the laser aid and the solid point; (d) computing a Z coordinate value of the measurement point according to the “h”; repeating step (b) to step (d) until all the Z coordinate values of the measurement points have been computed; and (e) focusing the solid points according to the X, Y and Z coordinate values of the measurement points. A related system is also provided.
    • 提供了一种用于将离散点聚焦在未测量对象上的方法。 该方法包括:(a)接收对象的图像,选择图像上的测量点,并获得测量点的X,Y坐标值; (b)根据其中一个测量点的X,Y坐标值搜索未测量物体上的实心点,其中实心点对应于测量点; (c)将激光发射到固体点,以计算激光助剂和固体点之间的垂直距离“h”; (d)根据“h”计算测量点的Z坐标值; 重复步骤(b)至步骤(d),直到计算出所有测量点的Z坐标值; 和(e)根据测量点的X,Y和Z坐标值对实心点进行聚焦。 还提供了相关系统。
    • 87. 发明授权
    • Apparatus for positioning an image measuring platform
    • 用于定位图像测量平台的装置
    • US07766298B2
    • 2010-08-03
    • US11849303
    • 2007-09-03
    • Chih-Kuang ChangSen Zhang
    • Chih-Kuang ChangSen Zhang
    • F16M11/04A63B21/06A61G13/00A47C20/02
    • G12B5/00
    • An apparatus for positioning an image measuring platform, the apparatus includes a horizontal base (11); a measuring platform (21) movable on the horizontal base; a support arm (12) extending in the Z-axis direction secured to the horizontal base; two parallel sliders (435) extending in the Z-axis direction fixed on the upper ends of the support arm; a first bar (411) for controlling the measuring platform to move in X-axis direction; a second bar (421) for controlling the measuring platform to move in Y-axis direction; a first cantilever (314) and a second cantilever (315) vertically attached on the two parallel sliders; a charge coupled device lens (31) fixed on the first cantilever and the second cantilever through a lens clamp (312) and a locking cap (313); a first screw handle (414) engaged with the holes of both sides of a first bracket (413) secured on the horizontal base, a first male screw thread (415) formed outside the first screw handle, and a first female screw thread (416) corresponding to the first male screw thread formed outside the first bar; and a second screw handle (424) engaged with the holes of both sides of a second bracket secured (423) on the horizontal base, a second male screw thread (425) formed outside the second screw handle, and a second female screw thread (426) corresponding to the second male screw thread formed outside the second bar.
    • 一种用于定位图像测量平台的装置,该装置包括水平基座(11); 可在水平底座上移动的测量平台(21); 沿Z轴方向延伸的支撑臂(12),其固定到水平基座; 两个平行的滑块(435),其沿Z轴方向延伸固定在支撑臂的上端; 用于控制测量平台沿X轴方向移动的第一杆(411) 用于控制测量平台沿Y轴方向移动的第二杆(421) 垂直安装在两个平行的滑块上的第一悬臂(314)和第二悬臂(315) 通过透镜夹具(312)和锁定帽(313)固定在第一悬臂和第二悬臂上的电荷耦合器件透镜(31); 与固定在水平底座上的第一支架(413)的两侧的孔接合的第一螺纹把手(414),形成在第一螺丝把手外部的第一外螺纹(415)和第一内螺纹(416 )对应于形成在第一杆外部的第一外螺纹螺纹; 以及第二螺丝把手(424),其与水平底座上固定的第二托架(423)的两侧的孔接合,形成在第二螺丝把手外侧的第二外螺纹(425)和第二内螺纹 426),其对应于形成在第二杆外部的第二外螺纹螺纹。
    • 88. 发明授权
    • System and method for automatically identifying a geometrical element in an image
    • 用于自动识别图像中几何元素的系统和方法
    • US07697788B2
    • 2010-04-13
    • US11164780
    • 2005-12-06
    • Hua-Wei YangChih-Kuang Chang
    • Hua-Wei YangChih-Kuang Chang
    • H04N1/60G06F15/00
    • G06K9/6211G06T7/70G06T7/74G06T2207/30204
    • An identifying system is provided for identifying a geometrical element in an image automatically. The image may be retrieved from an image capturing apparatus and is imported in a coordinate system. The identifying system includes: a collecting module for collecting dots from the image as a dot muster and retrieving coordinates of all dots of the dot muster from the coordinate system; a curve fitting and geometrical element identifying module for curve fitting according to the coordinates of all the dots of the dot muster to identify what geometrical element the dot muster is; a storing module for storing the coordinates of all the dots of the dot muster, data produced during the curve fitting process, and result data of curve fitting and geometrical element identifying; and an outputting module for outputting the result data. A related identifying method is also provided.
    • 提供识别系统用于自动识别图像中的几何元素。 图像可以从图像捕获装置检索,并且在坐标系中被导入。 所述识别系统包括:收集模块,用于从所述图像中采集点,并从所述坐标系中检索所述点阵的所有点的坐标; 曲线拟合和几何元素识别模块,用于根据点阵的所有点的坐标进行曲线拟合,以识别点集合的几何元素; 存储模块,用于存储点阵的所有点的坐标,曲线拟合处理期间产生的数据,以及曲线拟合和几何元素识别的结果数据; 以及用于输出结果数据的输出模块。 还提供了相关的识别方法。
    • 89. 发明授权
    • System and method for storing images of a workpiece
    • 用于存储工件图像的系统和方法
    • US07688355B2
    • 2010-03-30
    • US11782655
    • 2007-07-25
    • Chih-Kuang ChangZhong-Kui Yuan
    • Chih-Kuang ChangZhong-Kui Yuan
    • H04N5/232H04N1/387
    • H04N1/40012H04N1/195H04N1/64H04N2201/0436
    • A method for storing images of a workpiece is provided. The method includes the steps of: (a) reading an image of the workpiece from the storage; (b) reading one byte of the three bytes' color information of each pixel of the image; (c) storing one by one the read one byte of the three bytes' color information of each pixel of the image in an array allocated by the storage; (d) obtaining a coordinate value of a center point of the image from the location file; (e) storing the coordinate value of the center point of the image and the array representing the image's color information as an object in a source file; and (f) repeating the steps (a) to (e) till all the images of the workpiece are read. A related system is also disclosed.
    • 提供了一种用于存储工件的图像的方法。 该方法包括以下步骤:(a)从存储器读取工件的图像; (b)读取图像的每个像素的三个字节的颜色信息的一个字节; (c)将存储器分配的阵列中的图像的每个像素的三个字节的颜色信息的读取一个字节逐个存储; (d)从位置文件获得图像的中心点的坐标值; (e)将图像的中心点的坐标值和表示图像的颜色信息的数组作为对象存储在源文件中; 和(f)重复步骤(a)至(e),直到读取工件的所有图像。 还公开了相关系统。