EYEWEAR-MOUNTABLE EYE TRACKING DEVICE
    1.
    发明申请
    EYEWEAR-MOUNTABLE EYE TRACKING DEVICE 审中-公开
    眼线索眼镜追踪装置

    公开(公告)号:WO2016077258A1

    公开(公告)日:2016-05-19

    申请号:PCT/US2015/059803

    申请日:2015-11-10

    Abstract: An eye movement tracking device that can be mounted to standard eyeglasses as disclosed. The device comprises an illumination source, a time-of-flight (TOF) camera and a processor. The source transmits energy within a frequency band from a location proximate to an eye of a person, such that at least a first portion of the transmitted energy is reflected off a lens of eyewear worn by the person to subsequently reflect off the eye, and such that at least a second portion of the transmitted energy is transmitted through the lens to reflect off objects in the person's environment. The TOF camera detects reflections of at least the first portion of the transmitted energy, and distinguishes them from other energy detected by the TOF camera in said frequency band, based on TOF principles. The processor uses the detected reflections of the first portion of the transmitted energy to determine eye position.

    Abstract translation: 如所公开的,可以安装到标准眼镜上的眼睛运动跟踪装置。 该装置包括照明源,飞行时间(TOF)照相机和处理器。 源从位于人眼附近的位置的频带内传送能量,使得所传送的能量的至少第一部分被人的眼镜的镜片反射,以随后反射出眼睛。 透射能量的至少第二部分透过透镜以反射人的环境中的物体。 TOF摄像机根据TOF原理检测至少第一部分发射能量的反射,并将它们与TOF相机在所述频带中检测到的其他能量进行区分。 处理器使用检测到的透射能量的第一部分的反射来确定眼睛位置。

    ALIGNABLE USER INTERFACE
    3.
    发明申请
    ALIGNABLE USER INTERFACE 审中-公开
    可以使用用户界面

    公开(公告)号:WO2016014371A1

    公开(公告)日:2016-01-28

    申请号:PCT/US2015/041049

    申请日:2015-07-20

    Abstract: Embodiments are disclosed that relate to interacting with a graphical user interface in a manner to facilitate hands-free operation. For example, one disclosed embodiment provides a method including outputting to a display device a user interface that displays graphical representations of a plurality of alignable user interface objects, each alignable user interface object representing a selectable object. The method further includes receiving depth data from an imaging device, the image data capturing an image of a face directed toward the display device. The method further comprises changing an alignment condition of a first user interface object of the plurality of alignable user interface objects to move the first user interface object into an aligned condition, and changing an alignment condition of a second user interface object to move the second user interface object out of an aligned condition based on the received image data.

    Abstract translation: 公开了涉及以便于免提操作的方式与图形用户界面交互的实施例。 例如,一个公开的实施例提供了一种方法,包括向显示设备输出显示多个可对准的用户界面对象的图形表示的用户界面,每个可对齐的用户界面对象表示可选对象。 该方法还包括从成像装置接收深度数据,图像数据捕获指向显示装置的脸部的图像。 该方法还包括改变多个可对准的用户界面对象中的第一用户界面对象的对齐状态,以将第一用户界面对象移动到对准状态,并且改变第二用户界面对象的对齐状态以移动第二用户 基于接收到的图像数据的对齐状态的接口对象。

    MULTIMODE PHOTOSENSOR
    4.
    发明申请
    MULTIMODE PHOTOSENSOR 审中-公开
    多模光电传感器

    公开(公告)号:WO2017087137A1

    公开(公告)日:2017-05-26

    申请号:PCT/US2016/059373

    申请日:2016-10-28

    Abstract: A multimode interline charge coupled device having an array of light sensitive pixels, each configured to accumulate photocharge responsive to light incident on the pixel, and a controller configured to allocate a first portion of the pixels to accumulate photocharge responsive to light from a scene during a plurality of exposure periods and allocate a second portion of the pixels to store photocharge accumulated by pixels in the first portion to provide a plurality of images of the scene greater than two.

    Abstract translation: 具有光敏像素阵列的多模式行间电荷耦合器件,每个光敏像素被配置为累积响应于入射在像素上的光的光电荷,以及控制器,被配置为分配像素的第一部分以累积光电荷 响应在多个曝光周期期间来自场景的光并且分配像素的第二部分以存储由第一部分中的像素累积的光电荷以提供场景的多于两个的图像。

    MULTIMODE DEPTH IMAGING
    5.
    发明申请
    MULTIMODE DEPTH IMAGING 审中-公开
    多模深度成像

    公开(公告)号:WO2016111878A1

    公开(公告)日:2016-07-14

    申请号:PCT/US2015/067756

    申请日:2015-12-29

    Abstract: An imaging system includes first and second imaging arrays separated by a fixed distance, first and second drivers, and a modulated light source. The first imaging array includes a plurality of phase-responsive pixels distributed among a plurality of intensity-responsive pixels; the modulated light source is configured to emit modulated light in a field of view of the first imaging array. The first driver is configured to modulate the light output from the modulated light source and synchronously control charge collection from the phase-responsive pixels. The second driver is configured to recognize positional disparity between the intensity-responsive pixels of the first imaging array and corresponding intensity-responsive pixels of the second imaging array.

    Abstract translation: 成像系统包括由固定距离分隔的第一和第二成像阵列,第一和第二驱动器以及调制光源。 第一成像阵列包括分布在多个强度响应像素之间的多个相位响应像素; 调制光源被配置为在第一成像阵列的视场中发射调制光。 第一驱动器被配置为调制来自调制光源的光输出并且同步地控制来自相位响应像素的电荷收集。 第二驱动器被配置为识别第一成像阵列的强度响应像素和第二成像阵列的对应的强度响应像素之间的位置差异。

Patent Agency Ranking