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    • 4. 发明授权
    • Method and apparatus for dynamic connector analysis
    • 动态连接器分析方法和装置
    • US07991233B2
    • 2011-08-02
    • US11947268
    • 2007-11-29
    • James Austin BesleyEric Wai-Shing ChongKhanh Phi Van DoanSteven Richard Irrgang
    • James Austin BesleyEric Wai-Shing ChongKhanh Phi Van DoanSteven Richard Irrgang
    • G06K9/48
    • G06K9/6211
    • A method (1100) of creating an editable document is disclosed. The method analyses a bitmap image to detect at least one bit map representation of a graphical object and a bitmap representation of a line object. The method matches the graphical object with one of a plurality of predetermined template shapes (e.g., 420), the template shape having one or more predetermined non-contiguous connection points. The method selects one of the predetermined connection points for the line object if at least one end of the line object is within a predetermined distance of the selected connection point and associates the line object with the selected connection point. The method creates an editable document comprising the template shape with the line object connected thereto, wherein the line object remains associated with the selected connection point upon the template shape being modified within the document such that the line object remains dynamically connected to the template shape.
    • 公开了一种创建可编辑文档的方法(1100)。 该方法分析位图图像以检测图形对象的至少一个位图表示和行对象的位图表示。 该方法将图形对象与多个预定模板形状(例如420)中的一个相匹配,该模板形状具有一个或多个预定的非连续连接点。 如果线对象的至少一端在所选择的连接点的预定距离内,并且将线对象与所选择的连接点相关联,则该方法选择线对象的预定连接点之一。 该方法创建包括与其连接的线对象的模板形状的可编辑文档,其中当文档中的模板形状被修改时,线对象保持与所选择的连接点相关联,使得线对象保持动态地连接到模板形状。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR DYNAMIC CONNECTOR ANALYSIS
    • 动态连接器分析方法与装置
    • US20080143735A1
    • 2008-06-19
    • US11947268
    • 2007-11-29
    • James Austin BesleyEric Wai-Shing ChongKhanh Phi Van DoanSteven Richard Irrgang
    • James Austin BesleyEric Wai-Shing ChongKhanh Phi Van DoanSteven Richard Irrgang
    • G09G5/00
    • G06K9/6211
    • A method (1100) of creating an editable document is disclosed. The method analyses a bitmap image to detect at least one bit map representation of a graphical object and a bitmap representation of a line object. The method matches the graphical object with one of a plurality of predetermined template shapes (e.g., 420), the template shape having one or more predetermined non-contiguous connection points. The method selects one of the predetermined connection points for the line object if at least one end of the line object is within a predetermined distance of the selected connection point and associates the line object with the selected connection point. The method creates an editable document comprising the template shape with the line object connected thereto, wherein the line object remains associated with the selected connection point upon the template shape being modified within the document such that the line object remains dynamically connected to the template shape.
    • 公开了一种创建可编辑文档的方法(1100)。 该方法分析位图图像以检测图形对象的至少一个位图表示和行对象的位图表示。 该方法将图形对象与多个预定模板形状(例如420)中的一个相匹配,该模板形状具有一个或多个预定的非连续连接点。 如果线对象的至少一端在所选择的连接点的预定距离内,并且将线对象与所选择的连接点相关联,则该方法选择线对象的预定连接点之一。 该方法创建包括与其连接的线对象的模板形状的可编辑文档,其中当文档中的模板形状被修改时,线对象保持与所选择的连接点相关联,使得线对象保持动态地连接到模板形状。
    • 7. 发明授权
    • Image data acquisition optimisation
    • 图像数据采集优化
    • US07292255B2
    • 2007-11-06
    • US09863405
    • 2001-05-24
    • Khanh Phi Van DoanIan Geoffrey Combes
    • Khanh Phi Van DoanIan Geoffrey Combes
    • G09G5/00G09G5/10G06K9/36G06K9/46G06T11/20
    • G06T11/60G06T17/005
    • A method of creating an image is disclosed. The image is formed by rendering at least a plurality of graphical objects to be composited according to a first hierarchical structure (eg. 4500) representing a compositing expression for the image. The first hierarchical structure (4500) includes a plurality of nodes each representing at least a component of the image or an operation for combining sub-expressions of the compositing expression. The method stores a second hierarchical structure (300) for at least one node of the first hierarchical structure (4500). The second hierarchical structure (300) indicates at least an unobscured region of an object associated with the node. A space in which the object is defined is partitioned into a plurality of regions. The second hierarchical structure (300) is then overlayed on the object such that the object is substantially encompassed within the second hierarchical structure (300) and the overlayed second hierarchical structure (300) is traversed to identify any of the plurality of regions which include at least a portion of the unobscured region. Finally, the image is created by rendering the identified regions.
    • 公开了一种创建图像的方法。 通过根据表示图像的合成表达式的第一层次结构(例如4500),渲染要合成的至少多个图形对象来形成图像。 第一分层结构(4500)包括多个节点,每个节点表示图像的至少一个分量或用于组合合成表达式的子表达式的操作。 该方法存储用于第一层次结构(4500)的至少一个节点的第二层次结构(300)。 第二层次结构(300)指示与节点相关联的对象的至少一个视野区域。 定义对象的空间被划分为多个区域。 然后将第二分层结构(300)覆盖在对象上,使得对象基本上被包围在第二分层结构(300)内,并且覆盖的第二分层结构(300)被遍历以识别包括在其中的多个区域中的任何一个 视野不大的区域的至少一部分。 最后,通过渲染所识别的区域来创建图像。
    • 8. 发明授权
    • Rendering objects
    • 渲染对象
    • US07110003B2
    • 2006-09-19
    • US10022376
    • 2001-12-20
    • Khanh Phi Van Doan
    • Khanh Phi Van Doan
    • G09G5/00
    • G06T11/40
    • The method 600 renders a self-overlapping polygon, wherein the polygon is a set of one or more closed curves each comprising line segments. The method performs, for a currently scanned pixel that overlaps both sides of a line segment of the self-overlapping polygon within a currently scanned scanline, the following steps. The method 600 decomposes 618 that portion of the polygon that lies within the currently scanned pixel into a number of closed loops comprising at least those portions of those line segments that lie within the currently scanned pixel, the closed loops are such that when they are combined the combination is substantially equivalent to that portion of the polygon that lies within the currently scanned pixel. The method 600 combines 623 incrementally the closed loops and determines one or more winding count values representative of respective weighted averages of winding counts of the combined closed loops. The method 600 then determines 622 a real opacity of the currently scanned pixel according to a predetermined fill rule utilizing an intrinsic opacity of said polygon and the one or more winding count values. The method 600 finally renders 624 the currently scanned pixel with the determined real opacity.
    • 方法600呈现自重叠多边形,其中多边形是一组一个或多个闭合曲线,每个包含线段。 对于当前扫描的像素,其与当前扫描的扫描线内的自重叠多边形的线段的两侧重叠,执行以下步骤。 方法600将位于当前扫描像素内的多边形的该部分分解成多个封闭回路,该闭环包括位于当前扫描像素内的那些线段的至少那些部分,闭环使得当它们被组合时 该组合基本上等于位于当前扫描像素内的多边形的那部分。 方法600逐渐地将623结合在一起,并且确定表示组合闭环的绕组计数的相应加权平均值的一个或多个绕组计数值。 方法600然后根据使用所述多边形的固有不透明度和一个或多个绕组计数值的预定填充规则确定622当前扫描像素的实际不透明度。 方法600最终以确定的实际不透明度呈现当前扫描的像素624。