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    • 5. 发明申请
    • Coordinate Geometry Augmented Reality Process
    • 协调几何增强现实过程
    • US20160217624A1
    • 2016-07-28
    • US15089373
    • 2016-04-01
    • F3 & Associates
    • Sean FinnCarlo CaparasErik HorbatiukMike Heitman
    • G06T19/00G06K9/32G06K9/00G06T7/00
    • G06T19/006G01C15/002G06K9/00671G06K9/2063G06K9/22G06K9/3208G06T7/50G06T7/73G06T11/60G06T2200/04G06T2200/08G06T2207/30204G06T2215/16H04N13/275H04W88/02
    • Embodiments of the invention include a method, a system, and a mobile device that incorporate augmented reality technology into land surveying, 3D laser scanning, and digital modeling processes. By incorporating the augmented reality technology, the mobile device can display an augmented reality image comprising a real view of a physical structure in the real environment and a 3D digital model of an unbuilt design element overlaid on top of the physical structure at its intended tie-in location. In an embodiment, a marker can be placed at predetermined set of coordinates at or around the tie-in location, determined by surveying equipment, on that the 3D digital model of the unbuilt design element can be visualized in a geometrically correct orientation with respect to the physical structure. Embodiments of the present invention can also be applied to a scaled down 3D printed object representing the physical structure if visiting the project site is not possible.
    • 本发明的实施例包括将增强现实技术并入土地测量,3D激光扫描和数字建模过程中的方法,系统和移动设备。 通过结合增强现实技术,移动设备可以显示包括真实环境中的物理结构的真实视图的增强现实图像和重叠在物理结构顶部的未建立的设计元素的3D数字模型, 在位置。 在一个实施例中,标记可以被放置在由测量设备确定的接合位置处或周围的预定坐标系处,因为未建立的设计元素的3D数字模型可以以几何正确的取向相对于 物理结构。 如果不能访问项目现场,本发明的实施例也可以应用于表示物理结构的缩小的3D打印对象。
    • 6. 发明申请
    • Coordinate Geometry Augmented Reality Process
    • 协调几何增强现实过程
    • US20140210947A1
    • 2014-07-31
    • US13930369
    • 2013-06-28
    • F3 & ASSOCIATES, INC.
    • Sean FinnCarlo CaparasEric HorbatiukMike Heitman
    • G01C15/00G06T19/00H04N13/02
    • G06T19/006G01C15/002G06K9/00671G06K9/2063G06K9/22G06K9/3208G06T7/50G06T7/73G06T11/60G06T2200/04G06T2200/08G06T2207/30204G06T2215/16H04N13/275H04W88/02
    • Embodiments of the invention include a method, a system, and a mobile device that incorporate augmented reality technology into land surveying, 3D laser scanning, and digital modeling processes. By incorporating the augmented reality technology, the mobile device can display an augmented reality image comprising a real view of a physical structure in the real environment and a 3D digital model of an unbuilt design element overlaid on top of the physical structure at its intended tie-in location. In an embodiment, a marker can be placed at predetermined set of coordinates at or around the tie-in location, determined by surveying equipment, on that the 3D digital model of the unbuilt design element can be visualized in a geometrically correct orientation with respect to the physical structure. Embodiments of the present invention can also be applied to a scaled down 3D printed object representing the physical structure if visiting the project site is not possible.
    • 本发明的实施例包括将增强现实技术并入土地测量,3D激光扫描和数字建模过程中的方法,系统和移动设备。 通过结合增强现实技术,移动设备可以显示包括真实环境中的物理结构的真实视图的增强现实图像和重叠在物理结构顶部的未建立的设计元素的3D数字模型, 在位置。 在一个实施例中,标记可以被放置在由测量设备确定的接合位置处或周围的预定坐标系处,因为未建立的设计元素的3D数字模型可以以几何正确的取向相对于 物理结构。 如果不能访问项目现场,本发明的实施例也可以应用于表示物理结构的缩小的3D打印对象。
    • 8. 发明授权
    • Coordinate geometry augmented reality process
    • 坐标几何增强现实过程
    • US09336629B2
    • 2016-05-10
    • US13930369
    • 2013-06-28
    • F3 & Associates, Inc.
    • Sean FinnCarlo CaparasEric HorbatiukMike Heitman
    • G09G5/00G06T19/00G01C15/00H04N13/02
    • G06T19/006G01C15/002G06K9/00671G06K9/2063G06K9/22G06K9/3208G06T7/50G06T7/73G06T11/60G06T2200/04G06T2200/08G06T2207/30204G06T2215/16H04N13/275H04W88/02
    • Embodiments of the invention include a method, a system, and a mobile device that incorporate augmented reality technology into land surveying, 3D laser scanning, and digital modeling processes. By incorporating the augmented reality technology, the mobile device can display an augmented reality image comprising a real view of a physical structure in the real environment and a 3D digital model of an unbuilt design element overlaid on top of the physical structure at its intended tie-in location. In an embodiment, a marker can be placed at predetermined set of coordinates at or around the tie-in location, determined by surveying equipment, on that the 3D digital model of the unbuilt design element can be visualized in a geometrically correct orientation with respect to the physical structure. Embodiments of the present invention can also be applied to a scaled down 3D printed object representing the physical structure if visiting the project site is not possible.
    • 本发明的实施例包括将增强现实技术并入土地测量,3D激光扫描和数字建模过程中的方法,系统和移动设备。 通过结合增强现实技术,移动设备可以显示包括真实环境中的物理结构的真实视图的增强现实图像和重叠在物理结构顶部的未建立的设计元素的3D数字模型, 在位置。 在一个实施例中,标记可以被放置在由测量设备确定的接合位置处或周围的预定坐标系处,因为未建立的设计元素的3D数字模型可以以几何正确的取向相对于 物理结构。 如果不能访问项目现场,本发明的实施例也可以应用于表示物理结构的缩小的3D打印对象。