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    • 14. 发明申请
    • SEAMLESSLY OVERLAYING 2D IMAGES IN 3D MODEL
    • 在3D模型中无缝覆盖2D图像
    • US20120044247A1
    • 2012-02-23
    • US13216984
    • 2011-08-24
    • Michael Naimark
    • Michael Naimark
    • G06T15/00
    • G06T15/205G06T7/33G06T2207/20101
    • The present disclosure provides techniques that can enable a community of users to upload arbitrary images of particular locations and integrate them into a 3D model of that location in such a way that they appear as correctly aligned overlays with the model. Users can estimate rough location, orientation, and field of view, for one or more images and then add metadata such as keyword “tags” including time parameters. From the user estimates, a computer system determines the pose of the image relative to the 3D model and stores the metadata. A display system enables a community of users to freely navigate through the 3D model with visual indicators of all of the posed images, filterable via the metadata. Users also have control over a “snap-to-view” feature as they approach any of the posed images as well as a transparency feature for the degree of visibility of the overlaid image.
    • 本公开提供了使得用户社区能够上传特定位置的任意图像并将它们集成到该位置的3D模型中的技术,使得它们以与模型正确对齐的叠加层的方式呈现。 用户可以估计一个或多个图像的粗略位置,方向和视野,然后添加包括时间参数在内的关键字“标签”等元数据。 从用户估计,计算机系统确定图像相对于3D模型的姿态并存储元数据。 显示系统使得用户群体能够通过3D模型自由地导航所有呈现的图像的视觉指示符,并且可以通过元数据进行过滤。 用户还可以控制“捕捉到视图”功能,因为它们接近任何拍摄的图像,以及透明度功能,以覆盖图像的可见度。
    • 17. 发明授权
    • Seamlessly overlaying 2D images in 3D model
    • 在3D模型中无缝叠加2D图像
    • US08264504B2
    • 2012-09-11
    • US13216984
    • 2011-08-24
    • Michael Naimark
    • Michael Naimark
    • G09G5/00
    • G06T15/205G06T7/33G06T2207/20101
    • The present disclosure provides techniques that can enable a community of users to upload arbitrary images of particular locations and integrate them into a 3D model of that location in such a way that they appear as correctly aligned overlays with the model. Users can estimate rough location, orientation, and field of view, for one or more images and then add metadata such as keyword “tags” including time parameters. From the user estimates, a computer system determines the pose of the image relative to the 3D model and stores the metadata. A display system enables a community of users to freely navigate through the 3D model with visual indicators of all of the posed images, filterable via the metadata. Users also have control over a “snap-to-view” feature as they approach any of the posed images as well as a transparency feature for the degree of visibility of the overlaid image.
    • 本公开提供了使得用户社区能够上传特定位置的任意图像并将它们集成到该位置的3D模型中的技术,使得它们以与模型正确对齐的叠加层的方式呈现。 用户可以估计一个或多个图像的粗略位置,方向和视野,然后添加包括时间参数在内的关键字“标签”等元数据。 从用户估计,计算机系统确定图像相对于3D模型的姿态并存储元数据。 显示系统使得用户群体能够通过3D模型自由地导航所有呈现的图像的视觉指示符,并且可以通过元数据进行过滤。 用户还可以控制“捕捉到视图”功能,因为它们接近任何拍摄的图像,以及透明度功能,以覆盖图像的可见度。
    • 18. 发明授权
    • Seamlessly overlaying 2D images in 3D model
    • 在3D模型中无缝叠加2D图像
    • US08026929B2
    • 2011-09-27
    • US11768732
    • 2007-06-26
    • Michael Naimark
    • Michael Naimark
    • G09G5/00
    • G06T15/205G06T7/33G06T2207/20101
    • The present disclosure provides techniques that can enable a community of users to upload arbitrary images of particular locations and integrate them into a 3D model of that location in such a way that they appear as correctly aligned overlays with the model. Users can estimate rough location, orientation, and field of view, for one or more images and then add metadata such as keyword “tags” including time parameters. From the user estimates, a computer system determines the pose of the image relative to the 3D model and stores the metadata. A display system enables a community of users to freely navigate through the 3D model with visual indicators of all of the posed images, filterable via the metadata. Users also have control over a “snap-to-view” feature as they approach any of the posed images as well as a transparency feature for the degree of visibility of the overlaid image.
    • 本公开提供了使得用户社区能够上传特定位置的任意图像并将它们集成到该位置的3D模型中的技术,使得它们以与模型正确对齐的叠加层的方式呈现。 用户可以估计一个或多个图像的粗略位置,方向和视野,然后添加包括时间参数在内的关键字“标签”等元数据。 从用户估计,计算机系统确定图像相对于3D模型的姿态并存储元数据。 显示系统使得用户群体能够通过3D模型自由地导航所有呈现的图像的视觉指示符,并且可以通过元数据进行过滤。 用户还可以控制“捕捉到视图”功能,因为它们接近任何拍摄的图像,以及透明度功能,以覆盖图像的可见度。
    • 20. 发明申请
    • Camera with Precise Visual Indicator to Subject When Within Camera View
    • 在相机视图内的相机具有精确的视觉指示器
    • US20110019073A1
    • 2011-01-27
    • US12841063
    • 2010-07-21
    • Michael Naimark
    • Michael Naimark
    • H04N5/225
    • H04N5/232
    • A camera may include a lens, an image sensor, an image detection system, a controllable light source, and a light source control system. The image detection system may be configured to generate electronic information representative of images generated by the lens by detecting sequential images sensed by the image sensor. The detecting may not be done during certain periods of time. The controllable light source may be behind the lens and configured to controllably project light through the lens and back onto a scene in front of the lens. While in at least one mode, the light source control system may be configured to activate the controllable light source only while the image detection system is not detecting an image from the image sensor. The light source control system may be configured to activate the controllable light source and to cause it to emit light at an intensity which is sufficient to be readily visible to a normal human looking at the lens while within the scene, but not sufficient to materially alter the electronic information generated by the image detection system.
    • 相机可以包括透镜,图像传感器,图像检测系统,可控光源和光源控制系统。 图像检测系统可以被配置为通过检测由图像传感器感测的顺序图像来生成表示由透镜生成的图像的电子信息。 检测可能在某些时间段内不能完成。 可控光源可以在透镜的后面并且被配置为可控制地将光投射穿过透镜并且返回到镜头前面的场景。 在至少一种模式中,光源控制系统可以被配置为仅在图像检测系统未检测到来自图像传感器的图像时激活可控光源。 光源控制系统可以被配置为激活可控光源并且使得其以足够的强度发射光,该强度足以在正在人眼中观察透镜的场景中容易看到,但不足以实质地改变 由图像检测系统生成的电子信息。