OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS
    1.
    发明申请
    OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS 审中-公开
    用于增强现实显示的优化焦点面积

    公开(公告)号:WO2012082807A3

    公开(公告)日:2012-09-27

    申请号:PCT/US2011064750

    申请日:2011-12-14

    Applicant: MICROSOFT CORP

    Abstract: A method and system that enhances a user's experience when using a near eye display device, such as a see-through display device or a head mounted display device is provided. An optimized image for display relative to the a field of view of a user in a scene is created. The user's head and eye position and movement are tracked to determine a focal region for the user. A portion of the optimized image is coupled to the user's focal region in the current position of the eyes, a next position of the head and eyes predicted, and a portion of the optimized image coupled to the user's focal region in the next position.

    Abstract translation: 提供了在使用诸如透视显示设备或头戴式显示设备的近眼显示设备时增强用户体验的方法和系统。 创建相对于场景中用户的视野的显示的优化图像。 跟踪用户的头部和眼睛位置和移动以确定用户的聚焦区域。 优化的图像的一部分在眼睛的当前位置,预测的头部和眼睛的下一个位置以及在下一个位置耦合到用户的聚焦区域的优化图像的一部分被耦合到用户的聚焦区域。

    HEAD MOUNTED DISPLAY WITH IRIS SCAN PROFILING
    2.
    发明申请
    HEAD MOUNTED DISPLAY WITH IRIS SCAN PROFILING 审中-公开
    头部安装显示与IRIS扫描配置文件

    公开(公告)号:WO2013033195A3

    公开(公告)日:2013-05-10

    申请号:PCT/US2012052839

    申请日:2012-08-29

    Applicant: MICROSOFT CORP

    Abstract: 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.

    Abstract translation: 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且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。

    OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS
    4.
    发明公开
    OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS 有权
    用于显示先进现实的优化对焦区域

    公开(公告)号:EP2652543A4

    公开(公告)日:2013-10-23

    申请号:EP11848918

    申请日:2011-12-14

    Applicant: MICROSOFT CORP

    Abstract: A method and system that enhances a user's experience when using a near eye display device, such as a see-through display device or a head mounted display device is provided. An optimized image for display relative to the a field of view of a user in a scene is created. The user's head and eye position and movement are tracked to determine a focal region for the user. A portion of the optimized image is coupled to the user's focal region in the current position of the eyes, a next position of the head and eyes predicted, and a portion of the optimized image coupled to the user's focal region in the next position.

    GAZE DETECTION IN A SEE-THROUGH, NEAR-EYE, MIXED REALITY DISPLAY

    公开(公告)号:CA2750287A1

    公开(公告)日:2011-11-02

    申请号:CA2750287

    申请日:2011-08-29

    Applicant: MICROSOFT CORP

    Abstract: 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 bechecked and may trigger a re-calibration of training data sets if the boundaries of the gaze detection coordinate system have changed.

    OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS

    公开(公告)号:CA2820950C

    公开(公告)日:2018-08-07

    申请号:CA2820950

    申请日:2011-12-14

    Applicant: MICROSOFT CORP

    Abstract: A method and system that enhances a user's experience when using a near eye display device, such as a see-through display device or a head mounted display device is provided. An optimized image for display relative to the a field of view of a user in a scene is created. The user's head and eye position and movement are tracked to determine a focal region for the user. A portion of the optimized image is coupled to the user's focal region in the current position of the eyes, a next position of the head and eyes predicted, and a portion of the optimized image coupled to the user's focal region in the next position.

    OPTIMIZED FOCAL AREA FOR AUGMENTED REALITY DISPLAYS

    公开(公告)号:CA2820950A1

    公开(公告)日:2012-06-21

    申请号:CA2820950

    申请日:2011-12-14

    Applicant: MICROSOFT CORP

    Abstract: A method and system that enhances a user's experience when using a near eye display device, such as a see-through display device or a head mounted display device is provided. An optimized image for display relative to the a field of view of a user in a scene is created. The user's head and eye position and movement are tracked to determine a focal region for the user. A portion of the optimized image is coupled to the user's focal region in the current position of the eyes, a next position of the head and eyes predicted, and a portion of the optimized image coupled to the user's focal region in the next position.

    GAZE DETECTION IN A SEE-THROUGH, NEAR-EYE, MIXED REALITY DISPLAY

    公开(公告)号:CA2750287C

    公开(公告)日:2012-07-03

    申请号:CA2750287

    申请日:2011-08-29

    Applicant: MICROSOFT CORP

    Abstract: 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.

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