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    • 2. 发明申请
    • ELECTROMYOGRAPHY-ENHANCED BODY AREA NETWORK SYSTEM AND METHOD
    • 电子增强身体区域网络系统和方法
    • WO2017138921A1
    • 2017-08-17
    • PCT/US2016/017117
    • 2016-02-09
    • SONY MOBILE COMMUNICATIONS INC.SONY MOBILE COMMUNICATIONS (USA) INC.
    • THÖRN, OlaMIDHOLT, MagnusAGARDH, KåreBENGTSSON, Erik
    • H04B13/00
    • H04B13/005
    • Determining the location of a body area network enabled device on a user's body and using the location information to determine whether to send instructions or data to the device over the body area network, includes integrating an EMG sensor into a device that is wearable or otherwise meant to be in contact with or close proximity to an intended area of a user's body. The integrated EMG sensor may detect the electrical potential of the user's body at the point of contact. Variance of electrical potential across the user's body may be used to determine information regarding the location of the sensor, and thus, the location of the device on the user's body. The location of the device, in turn, may be used to determine whether to send instructions or data to the device over the body area network.
    • 确定身体区域网络使能设备在用户身体上的位置并且使用位置信息来确定是否通过身体区域网络向设备发送指令或数据包括将EMG传感器集成到 一种可穿戴的或以其他方式意在与用户身体的预期区域接触或靠近的装置。 集成的EMG传感器可以检测在接触点处用户身体的电势。 可以使用穿过用户身体的电势的变化来确定关于传感器的位置以及因此设备在用户身体上的位置的信息。 设备的位置又可以用于确定是否通过身体区域网络向设备发送指令或数据。
    • 10. 发明申请
    • ELECTRONIC DEVICE AND METHOD FOR VALIDATION OF A TRUSTED USER
    • 用于验证用户的电子设备和方法
    • WO2017045772A1
    • 2017-03-23
    • PCT/EP2016/056351
    • 2016-03-23
    • SONY MOBILE COMMUNICATIONS INCSONY MOBILE COMMUNICATIONS AB
    • BENGTSSON, HenrikSANDELL, PhilipMOLINER, OlivierTHÖRN, OlaWESTENIUS, ErikSTAMCAR, DamjanRODZEVSKI, Alexandar
    • G06F21/32
    • G06F21/32G06F3/017G06F3/0227G06F3/0346G06F21/6218G06K9/00013G06K9/00087G06K9/00892
    • Method for validating a trusted user of an electronic device, which electronic device (10) comprises an input surface (12), e.g. on a key (15), dedicated for application of a user (100) finger; a user input data sensor system, including a fingerprint sensor (16) connected to the input surface for detecting user input fingerprint data, and a tremor sensor (28) for detecting user input tremor data; data access to stored (25) user input data corresponding to a trusted user; and a main processor system (22) configured to match detected user input data with stored input data for validation of a trusted user. A triggering algorithm may run in a sub-sensor system (26), for sensing device handling and comparing sensed device handling with stored (27) data. If the comparison reveals that user input is likely to occur based on the, a command is sent to the main processing system (22) to trigger activation of tremor sensing and matching.
    • 用于验证电子设备的可信用户的方法,该电子设备(10)包括输入表面(12),例如, 在专用于用户(100)手指的应用的密钥(15)上; 用户输入数据传感器系统,包括连接到输入表面的用于检测用户输入指纹数据的指纹传感器(16)和用于检测用户输入震颤数据的震动传感器(28); 数据访问存储的(25)对应于可信用户的用户输入数据; 以及主处理器系统(22),被配置为将检测到的用户输入数据与存储的输入数据进行匹配,以验证可信用户。 触发算法可以在子传感器系统(26)中运行,用于感测设备处理并将感测到的设备处理与存储的(27)数据进行比较。 如果比较显示基于该用户输入可能发生,则将命令发送到主处理系统(22)以触发震动感测和匹配的激活。