CLOUD-BASED PERSONAL TRAIT PROFILE DATA
    51.
    发明申请
    CLOUD-BASED PERSONAL TRAIT PROFILE DATA 有权
    基于云的个人旅行个人资料

    公开(公告)号:US20110296505A1

    公开(公告)日:2011-12-01

    申请号:US12789768

    申请日:2010-05-28

    IPC分类号: H04L9/32 G06F3/048 G06F3/033

    摘要: A system and method is disclosed for sensing, storing and using personal trait profile data. Once sensed and stored, this personal trait profile data may be used for a variety of purposes. In one example, a user's personal trait profile data may be accessed and downloaded to different computing systems with which a user may interact so that the different systems may be instantly tuned to the user's personal traits and manner of interaction. In a further example, a user's personal trait profile data may also be used for authentication purposes.

    摘要翻译: 公开了用于感测,存储和使用个人特征简档数据的系统和方法。 一旦被感测和存储,该个人特征简档数据可以用于各种目的。 在一个示例中,可以访问用户的个人特征简档数据并将其下载到用户可以与之交互的不同计算系统,使得不同的系统可以被立即调整到用户的个人特征和交互方式。 在另一示例中,用户的个人特征简档数据也可以用于认证目的。

    Updating printed content with personalized virtual data
    52.
    发明授权
    Updating printed content with personalized virtual data 有权
    使用个性化虚拟数据更新打印内容

    公开(公告)号:US09229231B2

    公开(公告)日:2016-01-05

    申请号:US13346674

    申请日:2012-01-09

    摘要: The technology provides for updating printed content with personalized virtual data using a see-through, near-eye, mixed reality display device system. A printed content item, for example a book or magazine, is identified from image data captured by cameras on the display device, and user selection of a printed content selection within the printed content item is identified based on physical action user input, for example eye gaze or a gesture. Virtual data is selected from available virtual data for the printed content selection based on user profile data, and the display device system displays the selected virtual data in a position registered to the position of the printed content selection. In some examples, a task related to the printed content item is determined based on physical action user input, and personalized virtual data is displayed registered to the printed content item in accordance with the task.

    摘要翻译: 该技术提供使用透视,近眼,混合的现实显示设备系统来更新具有个性化虚拟数据的打印内容。 从显示装置上的照相机拍摄的图像数据识别出打印的内容项目,例如书籍或杂志,并且基于物理动作用户输入来识别打印内容项目内的打印内容选择的用户选择,例如眼睛 注视或手势。 基于用户简档数据从打印内容选择的可用虚拟数据中选择虚拟数据,并且显示设备系统将所选择的虚拟数据显示在登记在打印内容选择位置的位置。 在一些示例中,基于物理动作用户输入确定与打印的内容项相关的任务,并且根据任务将个性化虚拟数据显示登记到打印内容项。

    Displaying virtual data as printed content
    53.
    发明授权
    Displaying virtual data as printed content 有权
    显示虚拟数据作为打印内容

    公开(公告)号:US09183807B2

    公开(公告)日:2015-11-10

    申请号:US13347576

    申请日:2012-01-10

    摘要: The technology provides embodiments for displaying virtual data as printed content by a see-through, near-eye, mixed reality display device system. One or more literary content items registered to a reading object in a field of view of the display device system are displayed with print layout characteristics. Print layout characteristics from a publisher of each literary content item are selected if available. The reading object has a type like a magazine, book, journal or newspaper and may be a real object or a virtual object displayed by the display device system. The reading object type of the virtual object is based on a reading object type associated with a literary content item to be displayed. Virtual augmentation data registered to a literary content item is displayed responsive to detecting user physical action in image data. An example of a physical action is a page flipping gesture.

    摘要翻译: 该技术提供了通过透视,近眼,混合现实显示设备系统将虚拟数据显示为打印内容的实施例。 在显示装置系统的视野中登记到读取对象的一个​​或多个文学内容项以打印布局特征显示。 选择每个文学内容项目的发布者的打印布局特征(如果可用)。 读取对象具有类似于杂志,书籍,日记或报纸的类型,并且可以是由显示设备系统显示的真实对象或虚拟对象。 虚拟对象的读取对象类型基于与要显示的文学内容项相关联的读取对象类型。 响应于检测到图像数据中的用户身体动作,显示登记到文学内容项目的虚拟增强数据。 物理动作的一个例子是翻页手势。

    HEAD MOUNTED DISPLAY WITH IRIS SCAN PROFILING
    56.
    发明申请
    HEAD MOUNTED DISPLAY WITH IRIS SCAN PROFILING 有权
    头部安装显示与IRIS扫描配置文件

    公开(公告)号:US20130169683A1

    公开(公告)日:2013-07-04

    申请号:US13689542

    申请日:2012-11-29

    IPC分类号: G09G5/377

    摘要: A see-through head mounted-display and method for operating the display to optimize performance of the display by referencing a user profile automatically. The identity of the user is determined by performing an iris scan and recognition of a user enabling user profile information to be retrieved and used to enhance the user's experience with the see through head mounted display. The user profile may contain user preferences regarding services providing augmented reality images to the see-through head-mounted display, as well as display adjustment information optimizing the position of display elements in the see-though head-mounted display.

    摘要翻译: 一种直观的头戴显示器和用于操作显示器的方法,以通过自动引用用户配置文件来优化显示器的性能。 通过执行虹膜扫描和用户的识别来确定用户的身份,使得能够检索用户简档信息并用于通过头戴式显示器来增强用户体验。 用户简档可以包含关于向透视头戴式显示器提供增强现实图像的服务的用户偏好,以及优化透视头戴显示器中的显示元件的位置的显示调整信息。

    ALIGNING INTER-PUPILLARY DISTANCE IN A NEAR-EYE DISPLAY SYSTEM
    57.
    发明申请
    ALIGNING INTER-PUPILLARY DISTANCE IN A NEAR-EYE DISPLAY SYSTEM 有权
    在近视显示系统中对准间隔距离

    公开(公告)号:US20130050642A1

    公开(公告)日:2013-02-28

    申请号:US13221662

    申请日:2011-08-30

    IPC分类号: A61B3/11

    摘要: The technology provides for automatic alignment of a see-through near-eye, mixed reality device with an inter-pupillary distance (IPD). A determination is made as to whether a see-through, near-eye, mixed reality display device is aligned with an IPD of a user. If the display device is not aligned with the IPD, the display device is automatically adjusted. In some examples, the alignment determination is based on determinations of whether an optical axis of each display optical system positioned to be seen through by a respective eye is aligned with a pupil of the respective eye in accordance with an alignment criteria. The pupil alignment may be determined based on an arrangement of gaze detection elements for each display optical system including at least one sensor for capturing data of the respective eye and the captured data. The captured data may be image data, image and glint data, and glint data only.

    摘要翻译: 该技术提供了透视近眼,混合现实设备与瞳孔间距离(IPD)的自动对准。 确定透视,近眼,混合现实显示设备是否与用户的IPD对准。 如果显示设备未与IPD对齐,则会自动调整显示设备。 在一些示例中,对准确定是基于根据对准标准确定位于通过各个眼睛看到的每个显示光学系统的光轴是否与各个眼睛的瞳孔对齐的确定。 可以基于每个显示光学系统的注视检测元件的布置来确定瞳孔对准,包括用于捕获各个眼睛的数据和捕获的数据的至少一个传感器。 捕获的数据可以仅是图像数据,图像和闪烁数据,以及闪烁数据。

    LIFE STREAMING
    58.
    发明申请
    LIFE STREAMING 有权
    生活流水

    公开(公告)号:US20120213212A1

    公开(公告)日:2012-08-23

    申请号:US13031033

    申请日:2011-02-18

    IPC分类号: H04W84/12 H04N7/025 H04N9/80

    摘要: A system and method for analyzing, summarizing, and transmitting life experiences captured using a life recorder is described. A life recorder is a recording device that continuously captures life experiences, including unanticipated life experiences, in video and/or audio recordings. In some embodiments, the video and/or audio recordings generated by a life recorder are automatically summarized, indexed, and stored for future use. By indexing and storing life recordings, a life recorder may search for and acquire life recordings generated by itself or another life recorder, thereby allowing life experiences to be shared minutes or even years later. In some embodiments, recordings generated by a life recorder may be analyzed in real-time and automatically pushed to one or more target devices. The ability to automatically and instantaneously push life recordings as live feeds to one or more target devices allows friends and family to experience one's life experience in real-time.

    摘要翻译: 描述了一种用于分析,总结和传送使用生命记录器捕获的生活体验的系统和方法。 生命记录器是一种记录设备,可以在视频和/或录音中不断捕获生活体验,包括意外的生活体验。 在一些实施例中,由生命记录器生成的视频和/或音频记录被自动地汇总,索引并存储以备将来使用。 通过索引和存储生命记录,生命记录器可以搜索和获取自身或其他生命记录器生成的生命记录,从而允许在几分钟甚至几年之后共享生活体验。 在一些实施例中,寿命记录仪产生的记录可以被实时分析并自动推送到一个或多个目标设备。 将生活记录自动和即时推送到一个或多个目标设备的实时信息的能力允许朋友和家人实时体验自己的生活体验。

    Cloud-based personal trait profile data
    59.
    发明授权
    Cloud-based personal trait profile data 有权
    基于云的个人特征资料数据

    公开(公告)号:US09274594B2

    公开(公告)日:2016-03-01

    申请号:US12789768

    申请日:2010-05-28

    IPC分类号: G06F3/01 G06F21/32 G06F21/34

    摘要: A system and method is disclosed for sensing, storing and using personal trait profile data. Once sensed and stored, this personal trait profile data may be used for a variety of purposes. In one example, a user's personal trait profile data may be accessed and downloaded to different computing systems with which a user may interact so that the different systems may be instantly tuned to the user's personal traits and manner of interaction. In a further example, a user's personal trait profile data may also be used for authentication purposes.

    摘要翻译: 公开了用于感测,存储和使用个人特征简档数据的系统和方法。 一旦被感测和存储,该个人特征简档数据可以用于各种目的。 在一个示例中,可以访问用户的个人特征简档数据并将其下载到用户可以与之交互的不同计算系统,使得不同的系统可以被立即调整到用户的个人特征和交互方式。 在另一示例中,用户的个人特征简档数据也可以用于认证目的。

    GAZE DETECTION IN A SEE-THROUGH, NEAR-EYE, MIXED REALITY DISPLAY
    60.
    发明申请
    GAZE DETECTION IN A SEE-THROUGH, NEAR-EYE, MIXED REALITY DISPLAY 有权
    在一个看到眼睛,近眼睛,混合现实显示的GAZE检测

    公开(公告)号:US20130286178A1

    公开(公告)日:2013-10-31

    申请号:US13844453

    申请日:2013-03-15

    IPC分类号: G06F3/01

    摘要: The technology provides various embodiments for gaze determination within a see-through, near-eye, mixed reality display device. In some embodiments, the boundaries of a gaze detection coordinate system can be determined from a spatial relationship between a user eye and gaze detection elements such as illuminators and at least one light sensor positioned on a support structure such as an eyeglasses frame. The gaze detection coordinate system allows for determination of a gaze vector from each eye based on data representing glints on the user eye, or a combination of image and glint data. A point of gaze may be determined in a three-dimensional user field of view including real and virtual objects. The spatial relationship between the gaze detection elements and the eye may be checked and may trigger a re-calibration of training data sets if the boundaries of the gaze detection coordinate system have changed.

    摘要翻译: 该技术提供了在透视,近眼,混合现实显示设备内的凝视确定的各种实施例。 在一些实施例中,可以从用户眼睛和注视检测元件(例如照明器)和位于诸如眼镜框架的支撑结构上的至少一个光传感器之间的空间关系来确定注视检测坐标系的边界。 注视检测坐标系允许基于用户眼睛上的闪烁的数据,或图像和闪光数据的组合来确定来自每只眼睛的注视矢量。 注视点可以在包括实际和虚拟对象的三维用户视野中确定。 可以检查注视检测元件和眼睛之间的空间关系,并且如果注视检测坐标系的边界已经改变,则可以触发训练数据集的重新校准。