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    • 3. 发明申请
    • SYSTEM AND PROCESS FOR ROOF MEASUREMENT USING AERIAL IMAGERY
    • 使用空气成像技术进行室内测量的系统和过程
    • US20140237430A1
    • 2014-08-21
    • US13915285
    • 2013-06-11
    • Pictometry International Corp.
    • Chris T. ThornberryMark F. Garringer
    • G06F3/0481
    • G06K9/6253G06K9/00637
    • The present disclosure shows creating a first layer and a second layer, in computer memory and substantially overlapping at least a segment of line from said first layer with at least a segment of another line from said second layer. A first non-dimensional attribute is different from said second non-dimensional attribute of the two lines. A user length field enabling a client with said interactive file to override at least one of said length numeric values, where said area operator may automatically recalculate area based on said length field override is shown. Also, providing a visual marker that is moveable on said computer monitor around said aerial imagery region, which may be moved, to more precisely identify the location of the building roof structure is shown.
    • 本公开示出了在计算机存储器中创建第一层和第二层,并且基本上与来自所述第一层的至少一条线段至少与来自所述第二层的另一条线段相交叠。 第一无量纲属性与两行的所述第二无量纲属性不同。 示出了使得具有所述交互式文件的客户端能够覆盖所述长度数值中的至少一个的用户长度字段,其中所述区域操作者可以基于所述长度字段超越自动重新计算区域。 此外,示出了可以在所述计算机监视器周围可移动的所述空中图像区域可移动的视觉标记,以更精确地识别建筑物屋顶结构的位置。
    • 4. 发明申请
    • System and Process for Roof Measurement Using Aerial Imagery
    • 使用空中图像进行屋面测量的系统和过程
    • US20130138401A1
    • 2013-05-30
    • US13750355
    • 2013-01-25
    • Pictometry International Corp.
    • Dale R. ThornberryChris T. ThornberryMark F. Garringer
    • G06F17/50
    • G01B11/28G06F3/04815G06F17/5004G06K9/00637G06T7/62G06T2207/10032
    • The present disclosure shows creating a first layer and a second layer, in computer memory and substantially overlapping at least a segment of line from said first layer with at least a segment of another line from said second layer. A first non-dimensional attribute is different from said second non-dimensional attribute of the two lines. A user length field enabling a client with said interactive file to override at least one of said length numeric values, where said area operator may automatically recalculate area based on said length field override is shown. Also, providing a visual marker that is moveable on said computer monitor around said aerial imagery region, which may be moved, to more precisely identify the location of the building roof structure is shown.
    • 本公开示出了在计算机存储器中创建第一层和第二层,并且基本上与来自所述第一层的至少一条线段至少与来自所述第二层的另一条线段相交叠。 第一无量纲属性与两行的所述第二无量纲属性不同。 示出了使得具有所述交互式文件的客户端能够覆盖所述长度数值中的至少一个的用户长度字段,其中所述区域操作者可以基于所述长度字段超越自动重新计算区域。 此外,示出了可以在所述计算机监视器周围可移动的所述空中图像区域可移动的视觉标记,以更精确地识别建筑物屋顶结构的位置。
    • 7. 发明授权
    • System and process for roof measurement using aerial imagery
    • 使用航空图像进行屋顶测量的系统和过程
    • US08542880B2
    • 2013-09-24
    • US13774478
    • 2013-02-22
    • Pictometry International Corp.
    • Dale R. ThornberryChris T. ThornberryMark F. Garringer
    • G06K9/00
    • G01B11/28G06F3/04815G06F17/5004G06K9/00637G06T7/62G06T2207/10032
    • Processes and systems are disclosed for determining attributes of a roof structure of real-world three-dimensional building(s), including providing computer input field(s) for a user to input location data generally corresponding to the location of the building, providing visual access to a nadir image of a region including the roof structure of the building; on the nadir image of the region, providing a visual marker that is moveable on the computer monitor around the region, the visual marker initially corresponding to the location data but which may be moved to a final location, having location coordinates, on top of the building to more precisely identify the location of the building roof structure; providing a computer input capable of signaling user-acceptance of the final location of the marker; and, providing visual access to one or more oblique images of an aerial imagery database corresponding to location coordinates of the final location.
    • 公开了用于确定真实世界三维建筑物的屋顶结构的属性的过程和系统,包括为用户提供计算机输入字段以输入通常对应于建筑物位置的位置数据,提供视觉 访问包括建筑物的屋顶结构的区域的最低点图像; 在区域的最低点图像上,提供可在该区域周围的计算机监视器上移动的视觉标记,该视觉标记最初对应于位置数据,但是可以被移动到具有位置坐标的最终位置 建筑物更精确地识别建筑物屋顶结构的位置; 提供能够发信号通知用户接受标记的最终位置的计算机输入; 并提供与对应于最终位置的位置坐标的航空图像数据库的一个或多个倾斜图像的视觉访问。