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    • 1. 发明申请
    • Dual Narrow-Broad Focus Sensing Of Proximity
    • 双重窄范围近距离感测
    • US20120242978A1
    • 2012-09-27
    • US13069061
    • 2011-03-22
    • Edward Reuss
    • Edward Reuss
    • G01B11/14G01J3/00
    • G01B11/14G01B11/26G01S11/12
    • A proximity detection system is described among devices in a unified communications network. A narrow beam LED and a diffuse beam LED, both located near a first object, such as a computer monitor, provide a light illumination pattern detected by a narrow beam light detector and a broad beam light detector, both located near a second device, such as a headset. A processor calculates the ratio of measured intensity from the narrow beam LED compared to the broad beam LED as measured by the broad beam detector to provide an estimate for how far off axis the second object (e.g., a user of the headset) is with respect to the centerline in front of the second object (e.g., the computer monitor). The processor also calculates the ratio of measured intensity of the narrow IR beam detector to the broad IR beam detector to provide an estimate of the second object's orientation (e.g., the headset user's head) with respect to the first object to determine if the second object is facing the first object.
    • 在统一通信网络中的设备之间描述接近检测系统。 位于第一物体附近的窄光束LED和漫射束LED(诸如计算机监视器)提供由位于第二装置附近的窄光束光检测器和宽光束光检测器检测到的光照度图案, 作为耳机。 处理器计算由宽波束检测器测量的与宽波束LED相比的窄波束LED的测量强度的比值,以提供第二对象(例如耳机的用户)离轴远离的估计值 到第二个物体前面的中心线(例如,电脑显示器)。 处理器还计算窄IR光束检测器与宽IR光束检测器的测量强度的比率,以提供相对于第一对象的第二物体的取向(例如耳机用户的头部)的估计,以确定第二物体 正面临着第一个对象。
    • 3. 发明授权
    • Dual narrow-broad focus sensing of proximity
    • 双重窄范围的近距离感测
    • US08642962B2
    • 2014-02-04
    • US13069061
    • 2011-03-22
    • Edward Reuss
    • Edward Reuss
    • G01J5/00
    • G01B11/14G01B11/26G01S11/12
    • A proximity detection system is described among devices in a unified communications network. A narrow beam LED and a diffuse beam LED, both located near a first object, such as a computer monitor, provide a light illumination pattern detected by a narrow beam light detector and a broad beam light detector, both located near a second device, such as a headset. A processor calculates the ratio of measured intensity from the narrow beam LED compared to the broad beam LED as measured by the broad beam detector to provide an estimate for how far off axis the second object (e.g., a user of the headset) is with respect to the centerline in front of the second object (e.g., the computer monitor). The processor also calculates the ratio of measured intensity of the narrow IR beam detector to the broad IR beam detector to provide an estimate of the second object's orientation (e.g., the headset user's head) with respect to the first object to determine if the second object is facing the first object.
    • 在统一通信网络中的设备之间描述接近检测系统。 位于第一物体附近的窄光束LED和漫射束LED(诸如计算机监视器)提供由位于第二装置附近的窄光束光检测器和宽光束光检测器检测到的光照度图案, 作为耳机。 处理器计算由宽波束检测器测量的与宽波束LED相比的窄波束LED的测量强度的比值,以提供第二对象(例如,耳机的用户)离轴远离的估计值 到第二个物体前面的中心线(例如,电脑显示器)。 处理器还计算窄IR光束检测器与宽IR光束检测器的测量强度的比率,以提供相对于第一对象的第二物体的取向(例如耳机用户的头部)的估计,以确定第二物体 正面临着第一个对象。