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    • 1. 发明申请
    • GAZE CONTROLLED FOCUSING OF STEREOSCOPIC CONTENT
    • GAZE控制聚焦的立体内容
    • US20140198189A1
    • 2014-07-17
    • US14235709
    • 2012-07-26
    • Pär-Anders AronssonMartin Ek
    • Pär-Anders AronssonMartin Ek
    • H04N13/04
    • H04N13/383
    • An apparatus and method generate a three-dimensional image by presenting, using a stereoscopic display, a representation of a scene comprising one or more objects, tracking a gaze of the user to determine a direction of gaze within the scene, determining depths associated with one or more objects in the scene, and determining which of the objects in the scene are inside and which are outside a comfort zone based at least in part on the direction of gaze of the user and the depths associated with the one or more objects in the scene. In some embodiments, the method includes identifying one or more objects proximate the direction of gaze of the user, determining depths associated with the one or more identified objects, determining a range of depths based at least in part on the depths associated with the one or more identified objects, and establishing the comfort zone based at least in part on the range of depths. In some embodiments, the method includes modifying the presented representation of the scene based on which of the objects are outside the comfort zone.In some embodiments, the method includes focusing the stereoscopic display based at least in part on the determination of which objects are inside the comfort zone, tracking the gaze of the user to determine a second direction of gaze within the scene different from the direction of gaze within the scene, re-determining depths associated with one or more objects in the scene, re-determining which of the objects in the scene are inside and which are outside the comfort zone based at least in part on the second direction of gaze of the user and the re-determined depths associated with the one or more objects in the scene, and re-focusing the stereoscopic display based at least in part on the determination of which objects are inside the comfort zone.
    • 一种装置和方法,通过使用立体显示来呈现包括一个或多个对象的场景的表示,跟踪用户的凝视以确定场景内的凝视方向,确定与一个对象相关联的深度,来生成三维图像 或场景中的更多对象,并且至少部分地基于用户的凝视方向和与所述场景中的一个或多个对象相关联的深度来确定场景中的哪些物体在内部以及哪些位于舒适区域之外 现场。 在一些实施例中,该方法包括识别邻近用户的凝视方向的一个或多个对象,确定与一个或多个识别对象相关联的深度,至少部分地基于与该一个或多个识别对象相关联的深度确定深度范围, 更多识别的对象,以及至少部分地基于深度范围建立舒适区。 在一些实施例中,该方法包括基于哪个对象在舒适区域之外修改呈现的场景表示。 在一些实施例中,该方法包括至少部分地基于确定哪些对象位于舒适区域内的方式来聚焦立体显示器,跟踪用户的凝视以确定不同于注视方向的场景内的第二注视方向 在场景内,重新确定与场景中的一个或多个对象相关联的深度,至少部分地基于第二方向的目标,重新确定场景中的哪个物体在内部以及哪些位于舒适区域之外 用户和与场景中的一个或多个对象相关联的重新确定的深度,并且至少部分地基于哪个对象在舒适区内的确定来重新聚焦立体显示。
    • 2. 发明授权
    • Ambient light dependent themes
    • 环境光依赖主题
    • US08350834B2
    • 2013-01-08
    • US11940588
    • 2007-11-15
    • Martin Ek
    • Martin Ek
    • G09G3/38
    • G09G5/00G09G2320/066G09G2340/14G09G2360/144
    • A portable electronic device may include a display for displaying an image having different color or grey scale fields. Neighboring fields in the image may have different luminance. The portable electronic device may also include an ambient light detecting unit and a control unit. The control unit receives a luminance value corresponding to detected ambient light from the ambient light detecting unit, compares the luminance value with an ambient light level threshold and increases the difference in luminance between neighboring fields of an image being displayed by the display when the luminance exceeds the ambient light level threshold.
    • 便携式电子设备可以包括用于显示具有不同颜色或灰度场的图像的显示器。 图像中的相邻场可能具有不同的亮度。 便携式电子设备还可以包括环境光检测单元和控制单元。 控制单元接收与来自环境光检测单元的检测到的环境光相对应的亮度值,将亮度值与环境光水平阈值进行比较,并且当亮度超过亮度时,增加由显示器显示的图像的相邻场之间的亮度差 环境光级别阈值。
    • 8. 发明授权
    • Portable electronic equipment and method of controlling an autostereoscopic display
    • 便携式电子设备及自动立体显示控制方法
    • US09544578B2
    • 2017-01-10
    • US14372945
    • 2012-01-17
    • Anders LingeMartin EkJonas Gustavsson
    • Anders LingeMartin EkJonas Gustavsson
    • H04N13/04
    • H04N13/302H04N13/307H04N13/31H04N13/371H04N13/373H04N13/383
    • A portable electronic equipment (1) has an autostereoscopic display (11), a sensor device (2), and a controller (6, 7). The autostereoscopic display (11) comprises a display panel and an image directing device. The sensor device (2) is configured to capture distance information indicative of a distance of a user from the autostereoscopic display (11) and a direction in which the user is positioned. The controller (6, 7) is coupled to the autostereoscopic display (11) to control the display panel (12) and the image directing device based on the distance information and/or direction informa-tion. The controller (6, 7) is configured to compute plural images to be output based on the distance information, to control the display panel to output the computed plural images, and to control the image directing device based on the distance information and/or direction information.
    • 便携式电子设备(1)具有自动立体显示器(11),传感器装置(2)和控制器(6,7)。 自动立体显示器(11)包括显示面板和图像引导装置。 传感器装置(2)被配置为捕获指示用户距离自动立体显示器(11)的距离和用户所在的方向的距离信息。 控制器(6,7)被耦合到自动立体显示器(11),以基于距离信息和/或方向信息来控制显示面板(12)和图像定向设备。 控制器(6,7)被配置为基于距离信息计算要输出的多个图像,以控制显示面板输出所计算的多个图像,并且基于距离信息和/或方向来控制图像定向装置 信息。
    • 9. 发明授权
    • Presenting three dimensional depth
    • 呈现三维深度
    • US09129442B2
    • 2015-09-08
    • US13560466
    • 2012-07-27
    • Pär-Anders AronssonMartin EkMagnus JendbroMagnus LandqvistPär StenbergOla Thörn
    • Pär-Anders AronssonMartin EkMagnus JendbroMagnus LandqvistPär StenbergOla Thörn
    • G06T15/50H04N13/02
    • G06T15/50H04N13/254H04N13/271H04N2213/003
    • An apparatus and method generate a three-dimensional image by determining, using a light-field camera, a depth map corresponding to an environment. The depth map represents how light falls in the environment. The method also includes determining a parallax occlusion map of the environment and creating, using the depth map and the parallax occlusion map, a three-dimensional image representing the environment. In some embodiments, the method includes taking a first picture of the environment with a first flash intensity and a second picture of the environment with a greater second flash, determining differences between the first picture of the environment and the second picture of the environment, determining one or more properties of the environment based at least in part on the determined differences and dynamically re-lighting the three-dimensional image using the depth map, the parallax occlusion map, and one or more of the determined properties of the environment.
    • 设备和方法通过使用光场照相机确定与环境相对应的深度图来产生三维图像。 深度图表示光线在环境中的落差。 该方法还包括确定环境的视差遮挡图,并且使用深度图和视差遮挡图来创建表示环境的三维图像。 在一些实施例中,该方法包括以更大的第二次闪光以第一闪光强度和环境的第二图像拍摄环境的第一图像,确定环境的第一图像与环境的第二图像之间的差异,确定 至少部分地基于所确定的差异并且使用深度图,视差遮挡图以及确定的环境属性中的一个或多个来动态地重新点亮三维图像的环境的一个或多个属性。
    • 10. 发明申请
    • Electronic Display Projection Assembly Having Substantially White Off State
    • 具有基本白色关闭状态的电子显示投影组件
    • US20130258213A1
    • 2013-10-03
    • US13695203
    • 2012-02-28
    • Martin Ek
    • Martin Ek
    • G02F1/13
    • G02F1/1313G02F1/133504G02F1/133526G02F2001/133331G02F2001/133562G02F2203/66
    • One or more embodiments of a method and apparatus taught herein provide an electronic display projection assembly that comprises an electronic display configured to display an image, and a transparent glass layer positioned on one side of the electronic display on which the image is displayed. A projection layer is located on a surface of the glass layer. A projecting layer is positioned between the electronic display and the glass layer, and comprises a plurality of microlenses for projecting the displayed image onto the projection layer. The projecting and projection layers may be located on either opposing sides of the transparent glass layer, or on the same side beneath the glass layer. A corresponding method of providing an image from an electronic display is also disclosed.
    • 本文教导的方法和装置的一个或多个实施例提供一种电子显示投影组件,其包括被配置为显示图像的电子显示器和位于显示图像的电子显示器的一侧上的透明玻璃层。 投影层位于玻璃层的表面上。 突出层位于电子显示器和玻璃层之间,并且包括用于将显示的图像投影到投影层上的多个微透镜。 突出和突起层可以位于透明玻璃层的相对侧上,或者位于玻璃层下方的相同侧上。 还公开了一种从电子显示器提供图像的相应方法。