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    • 1. 发明授权
    • Adaptive estimation of frame time stamp latency
    • 帧时间戳延迟的自适应估计
    • US09116001B2
    • 2015-08-25
    • US13523638
    • 2012-06-14
    • Christopher BrunnerMahesh RamachandranArvind RamanandanMurali Ramaswamy Chari
    • Christopher BrunnerMahesh RamachandranArvind RamanandanMurali Ramaswamy Chari
    • G01C21/16H04N17/00H04N5/232
    • G01C21/16H04N5/23254H04N5/23258H04N17/002
    • A mobile device compensates for a lack of a time stamp when an image frame is captured by estimating the frame time stamp latency. The mobile device captures images frames and time stamps each frame after the frame time stamp latency. A vision based rotation is determined from a pair of frames. A plurality of inertia based rotations is measured using time stamped signals from an inertial sensor in the mobile device based on different possible delays between time stamping each frame and time stamps on the signals from the inertial sensors. The determined rotations may be about the camera's optical axis. The vision based rotation is compared to the plurality of inertia based rotations to determine an estimated frame time stamp latency, which is used to correct the frame time stamp latency when time stamping subsequently captured frames. A median latency determined using different frame pairs may be used.
    • 当通过估计帧时间戳等待时间来捕获图像帧时,移动设备补偿缺少时间戳。 移动设备在帧时间戳延迟之后每帧捕获图像帧和时间戳。 基于视觉的旋转由一对帧确定。 基于来自移动设备中的惯性传感器的时间戳信号,基于每个帧的时间戳和来自惯性传感器的信号的时间戳之间的不同可能的延迟来测量多个基于惯量的旋转。 确定的旋转可以是关于相机的光轴。 将基于视觉的旋转与多个基于惯性的旋转进行比较,以确定估计的帧时间戳延迟,其用于在随后拍摄的帧时间戳时校正帧时间戳等待时间。 可以使用使用不同帧对确定的中值等待时间。
    • 5. 发明授权
    • Selective network switching in a wireless broadcast network
    • 无线广播网络中的选择性网络切换
    • US07948907B2
    • 2011-05-24
    • US11343380
    • 2006-01-30
    • Michael Mao WangAshok MantravadiMurali Ramaswamy Chari
    • Michael Mao WangAshok MantravadiMurali Ramaswamy Chari
    • H04L12/26H04W4/00
    • H04B1/3805H04H20/26H04H40/18
    • The disclosure is directed to a mobile communication device that may receive wireless broadcast signals from a number of different base stations or transmitters. As the location of the device moves relative to the transmitters, one transmitter will likely be identified as the transmitter broadcast the strongest, or highest quality, signal. When that determination is made, the user of the mobile device is presented the opportunity to switch to receiving that transmitters signal. Based on the user's reply, the device may remain with the current transmitter, even though it does not have the strongest signal, or the device may be configured to acquire and start receiving the new transmitter's signal. The measuring of the quality of a transmitter's signal may be based on a composite score that combines a number of individual measurements made over a predetermined period of time.
    • 本公开针对可从多个不同基站或发射机接收无线广播信号的移动通信设备。 随着设备的位置相对于发射机移动,一个发射机可能被识别为发射机广播最强或最高质量的信号。 当进行该确定时,向移动设备的用户呈现切换到接收该发射机信号的机会。 基于用户的答复,即使设备没有最强的信号,设备仍然可以保持当前的发射机,或者设备可能被配置为获取和开始接收新的发射机的信号。 发射机信号的质量的测量可以基于组合在预定时间段内进行的多个单独测量的综合得分。