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    • 1. 发明申请
    • METHODS, APPARATUS, SERVERS, AND SYSTEMS FOR HUMAN IDENTIFICATION BASED ON HUMAN RADIO BIOMETRIC INFORMATION
    • 基于人体无线电生物统计信息的人体识别方法,装置,服务器和系统
    • WO2017156487A1
    • 2017-09-14
    • PCT/US2017/021957
    • 2017-03-10
    • ORIGIN WIRELESS, INC.
    • XU, QinyiCHEN, YanWANG, BeibeiLIU, K., J., Ray
    • A61B5/08G05B19/00G06F7/04G06F21/32G06K9/00G06T15/00G07C9/00
    • The present teaching relates to human identification based on human radio biometric information in an environment without line-of-sight. In one example, an apparatus for human identification is disclosed. The apparatus comprises a receiver, a processor and a memory communicatively coupled with the processor. The receiver is configured for receiving at least one wireless signal from a multipath channel that is impacted by a person to be identified. The processor is configured for: extracting channel state information (CSI) from the at least one wireless signal, obtaining radio biometric information based on the CSI, wherein the radio biometric information represents how the at least one wireless signal was impacted by at least part of a body of the person, and determining an identity of the person based on the radio biometric information.
    • 本教导涉及基于在无视线的环境中的人类无线电生物测量信息的人类识别。 在一个示例中,公开了一种用于人类识别的装置。 该设备包括接收器,处理器和与处理器通信地耦合的存储器。 接收器被配置用于从受到待识别的人影响的多路径信道接收至少一个无线信号。 所述处理器被配置用于:从所述至少一个无线信号中提取信道状态信息(CSI),基于所述CSI获得无线电生物测定信息,其中所述无线电生物测定信息表示所述至少一个无线信号如何受至少一部分 一个人的身体,并根据无线电生物特征信息确定该人的身份。
    • 3. 发明申请
    • METHODS, APPARATUS, SERVERS, AND SYSTEMS FOR OBJECT TRACKING
    • 用于对象跟踪的方法,装置,服务器和系统
    • WO2017180698A1
    • 2017-10-19
    • PCT/US2017/027131
    • 2017-04-12
    • ORIGIN WIRELESS, INC.
    • ZHANG, FengCHEN, ChenHAN, YiWANG, BeibeiLAI, Hung-Quoc, DucWU, Zhung-hanCHEN, Chun-ILIU, K. J. Ray
    • G01C21/10
    • The present teaching relates to object tracking based on time-reversal technology in a rich-scattering environment. In one example, a method for tracking a movement of an object in real-time is disclosed. The method may be implemented on a machine including at least a processor and a memory communicatively coupled with the processor. The method may comprise: obtaining an initial position of the object prior to a movement of the object; obtaining at least one wireless signal from a multipath channel that is impacted by the movement of the object; extracting a time series of channel state information (CSI) for the multipath channel from the at least one wireless signal; determining a distance of the movement of the object based on the time series of CSI; estimating a direction of the movement of the object; and determining a new position of the object after the movement based on the distance, the direction, and the initial position.
    • 本教导涉及在富散射环境中基于时间反转技术的对象跟踪。 在一个示例中,公开了一种用于实时追踪对象的移动的方法。 该方法可以在包括至少一个处理器和通信地与处理器耦合的存储器的机器上实现。 该方法可以包括:在对象移动之前获得对象的初始位置; 从受所述物体的移动影响的多路径信道获得至少一个无线信号; 从所述至少一个无线信号中提取所述多径信道的信道状态信息(CSI)的时间序列; 基于CSI的时间序列来确定物体的移动距离; 估计物体运动的方向; 并根据距离,方向和初始位置确定移动后的对象的新位置。
    • 4. 发明申请
    • METHODS, APPARATUS, SERVERS, AND SYSTEMS FOR VITAL SIGNS DETECTION AND MONITORING
    • 用于重要信号检测和监测的方法,装置,服务器和系统
    • WO2017156492A1
    • 2017-09-14
    • PCT/US2017/021963
    • 2017-03-10
    • ORIGIN WIRELESS, INC.
    • CHEN, ChenWANG, BeibeiHAN, YiZHANG, FengLAI, Hung-Quoc, DucCHEN, YanLIU, K.J., Ray
    • A61B5/0205A61B5/04A61B5/08G01S3/74
    • The present teaching relates to vital sign detection and monitoring based on channel state information (CSI). In one example, an apparatus for vital sign detection is disclosed. The apparatus comprises a receiver, a processor and a memory communicatively coupled with the processor. The receiver is configured for receiving at least one wireless signal from a multipath channel that can be impacted by a vital sign of at least one living being. The processor is configured for: extracting a time series of channel state information (CSI) for the multipath channel from the at least one wireless signal, obtaining one or more periodic fluctuations based on a spectral analysis of the time series of CSI, and determining whether the vital sign is present based on the one or more periodic fluctuations.
    • 本教导涉及基于信道状态信息(CSI)的生命体征检测和监测。 在一个示例中,公开了用于生命体征检测的设备。 该设备包括接收器,处理器和与处理器通信地耦合的存储器。 接收器被配置用于接收来自多径信道的至少一个无线信号,该多径信道可受到至少一个生命体的生命体征的影响。 所述处理器被配置用于:从所述至少一个无线信号中提取所述多径信道的信道状态信息(CSI)的时间序列,基于所述CSI的时间序列的频谱分析获得一个或多个周期性波动,以及确定是否 生命体征是基于一种或多种周期性波动而呈现的。