USER INTERFACE FOR ADJUSTMENT OF STEREOSCOPIC IMAGE PARAMETERS

    公开(公告)号:US20190052857A1

    公开(公告)日:2019-02-14

    申请号:US15675601

    申请日:2017-08-11

    Abstract: According to an aspect of an embodiment, a method may include receiving, at a first interface element of a user interface, a first user input regarding a degree of stereoscopic depth rendered in a stereoscopic image. The method may also include adjusting the stereoscopic depth based on the first user input. Additionally, the method may include receiving, at a second interface element of the user interface, a second user input regarding adjustment of a z-plane position of the stereoscopic image and adjusting the z-plane position based on the second user input. The method may further include generating the stereoscopic image based on the adjustment of the stereoscopic depth and the adjustment of the z-plan position.

    User interface for adjustment of stereoscopic image parameters

    公开(公告)号:US10567729B2

    公开(公告)日:2020-02-18

    申请号:US15675601

    申请日:2017-08-11

    Abstract: According to an aspect of an embodiment, a method may include receiving, at a first interface element of a user interface, a first user input regarding a degree of stereoscopic depth rendered in a stereoscopic image. The method may also include adjusting the stereoscopic depth based on the first user input. Additionally, the method may include receiving, at a second interface element of the user interface, a second user input regarding adjustment of a z-plane position of the stereoscopic image and adjusting the z-plane position based on the second user input. The method may further include generating the stereoscopic image based on the adjustment of the stereoscopic depth and the adjustment of the z-plan position.

    STEREOSCOPIC MAPPING
    3.
    发明申请

    公开(公告)号:US20170142404A1

    公开(公告)日:2017-05-18

    申请号:US15349863

    申请日:2016-11-11

    Abstract: According to an aspect of an embodiment, a method may include obtaining a first digital image via a mapping application. The method may also include obtaining a second digital image via the mapping application. The method may additionally include determining a displacement factor between the first digital image and the second digital image. Further, the method may include generating a third digital image by cropping the second digital image based on the displacement factor, adjusting an aspect ratio of the third digital image, and resizing the third digital image. Moreover, the method may include generating a stereoscopic map image of the setting that includes a first-eye image and a second eye image. The first-eye image may be based on the first digital image and the second-eye image may be based on the third digital image.

    Stereoscopic focus point adjustment

    公开(公告)号:US10554954B2

    公开(公告)日:2020-02-04

    申请号:US15974428

    申请日:2018-05-08

    Abstract: A method of adjusting depth in a stereoscopic video may include generating a left-eye viewing frame of a stereoscopic video. The left-eye viewing frame may include a plurality of left-eye viewing frame elements. The method may also include generating a right-eye viewing frame of the stereoscopic video. The right-eye viewing frame may correspond to the left-eye viewing frame and may include a plurality of right-eye viewing frame elements. Further, each right-eye viewing frame element may correspond to one of the left-eye viewing frame elements. The method may additionally include determining an offset between each right-eye viewing frame element and its corresponding left-eye viewing frame element. Further, the method may include applying a uniform summing factor to each offset to uniformly shift by substantially the same amount each right-eye viewing frame element with respect to its corresponding left-eye viewing frame element such that a perceived focus point is adjusted.

    Stereoscopic mapping
    5.
    发明授权

    公开(公告)号:US10264238B2

    公开(公告)日:2019-04-16

    申请号:US15349863

    申请日:2016-11-11

    Abstract: According to an aspect of an embodiment, a method may include obtaining a first digital image via a mapping application. The method may also include obtaining a second digital image via the mapping application. The method may additionally include determining a displacement factor between the first digital image and the second digital image. Further, the method may include generating a third digital image by cropping the second digital image based on the displacement factor, adjusting an aspect ratio of the third digital image, and resizing the third digital image. Moreover, the method may include generating a stereoscopic map image of the setting that includes a first-eye image and a second eye image. The first-eye image may be based on the first digital image and the second-eye image may be based on the third digital image.

    Resolution enhanced 3D rendering systems and methods

    公开(公告)号:US10600237B2

    公开(公告)日:2020-03-24

    申请号:US16162241

    申请日:2018-10-16

    Abstract: Systems and methods are provided for rendering 3D images or video without significantly losing resolution or increasing the resolution. The systems and methods for 3D rendering technology can work with different types of 3D data frames that include left eye image and right eye image sub-frames. The 3D data frames render 3D imagery with side-by-side (SXS), top-and-bottom (TB), and frame packing (FP), as well as others such as full high definition 3D (FHD3D), frame sequential 3D, passive 3D rendering or the like. System and methods are provided for creating inverse pixel strips, and preparing 3D images that include the inverse pixel strips. Systems and methods are provided for expanding images in a plane without significant loss of resolution.

    Stereoscopic focus point adjustment

    公开(公告)号:US09973745B2

    公开(公告)日:2018-05-15

    申请号:US14301140

    申请日:2014-06-10

    CPC classification number: H04N13/264 H04N13/128

    Abstract: A method of adjusting depth in a stereoscopic video may include generating a left-eye viewing frame of a stereoscopic video. The left-eye viewing frame may include a plurality of left-eye viewing frame elements. The method may also include generating a right-eye viewing frame of the stereoscopic video. The right-eye viewing frame may correspond to the left-eye viewing frame and may include a plurality of right-eye viewing frame elements. Further, each right-eye viewing frame element may correspond to one of the left-eye viewing frame elements. The method may additionally include determining an offset between each right-eye viewing frame element and its corresponding left-eye viewing frame element. Further, the method may include applying a uniform summing factor to each offset to uniformly shift by substantially the same amount each right-eye viewing frame element with respect to its corresponding left-eye viewing frame element such that a perceived focus point is adjusted.

    STEREOSCOPIC AERIAL-VIEW IMAGES
    8.
    发明申请

    公开(公告)号:US20170366799A1

    公开(公告)日:2017-12-21

    申请号:US15187418

    申请日:2016-06-20

    CPC classification number: H04N13/207 H04N13/221

    Abstract: According to an aspect of an embodiment, a method may include obtaining a first digital image that depicts a first aerial view of a first area of a setting. The method may additionally include obtaining a second digital image that depicts a second aerial view of a second area of the setting. Further, the method may include determining an overlapping area where the first area and the second area overlap and obtaining a third digital image based on the overlapping area, the first digital image, and the second digital image. In addition, the method may include generating a stereoscopic image of the setting based on the first digital image and the third digital image.

    Resolution enhanced 3D rendering systems and methods
    9.
    发明授权
    Resolution enhanced 3D rendering systems and methods 有权
    分辨率增强的3D渲染系统和方法

    公开(公告)号:US09495791B2

    公开(公告)日:2016-11-15

    申请号:US14350004

    申请日:2012-10-02

    Abstract: Systems and methods are provided for rendering 3D images or video without significantly losing resolution or increasing the resolution. The systems and methods for 3D rendering technology can work with different types of 3D data frames that include left eye image and right eye image sub-frames. The 3D data frames render 3D imagery with side-by-side (SXS), top-and-bottom (TB), and frame packing (FP), as well as others such as full high definition 3D (FHD3D), frame sequential 3D, passive 3D rendering or the like. System and methods are provided for creating inverse pixel strips, and preparing 3D images that include the inverse pixel strips. Systems and methods are provided for expanding images in a plane without significant loss of resolution.

    Abstract translation: 提供了系统和方法来渲染3D图像或视频,而不会显着地损失分辨率或提高分辨率。 用于3D渲染技术的系统和方法可以使用包括左眼图像和右眼图像子帧的不同类型的3D数据帧。 3D数据框架并排渲染3D图像(SXS),上下(TB)和帧打包(FP),以及其他诸如全高清3D(FHD3D),帧顺序3D ,被动3D渲染等。 提供了用于产生反向像素条的系统和方法,以及准备包括反向像素条的3D图像。 提供了系统和方法,用于在平面中展开图像,而不会明显地损失分辨率。

    RESOLUTION ENHANCED 3D RENDERING SYSTEMS AND METHODS
    10.
    发明申请
    RESOLUTION ENHANCED 3D RENDERING SYSTEMS AND METHODS 有权
    分辨率增强3D渲染系统和方法

    公开(公告)号:US20140347362A1

    公开(公告)日:2014-11-27

    申请号:US14350004

    申请日:2012-10-02

    Abstract: Systems and methods are provided for rendering 3D images or video without significantly losing resolution or increasing the resolution. The systems and methods for 3D rendering technology can work with different types of 3D data frames that include left eye image and right eye image sub-frames. The 3D data frames render 3D imagery with side-by-side (SXS), top-and-bottom (TB), and frame packing (FP), as well as others such as full high definition 3D (FHD3D), frame sequential 3D, passive 3D rendering or the like. System and methods are provided for creating inverse pixel strips, and preparing 3D images that include the inverse pixel strips. Systems and methods are provided for expanding images in a plane without significant loss of resolution.

    Abstract translation: 提供了系统和方法来渲染3D图像或视频,而不会显着地损失分辨率或提高分辨率。 用于3D渲染技术的系统和方法可以使用包括左眼图像和右眼图像子帧的不同类型的3D数据帧。 3D数据框架并排渲染3D图像(SXS),上下(TB)和帧打包(FP),以及其他诸如全高清3D(FHD3D),帧顺序3D ,被动3D渲染等。 提供了用于产生反向像素条的系统和方法,以及准备包括反向像素条的3D图像。 提供了系统和方法,用于在平面中展开图像,而不会明显地损失分辨率。

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