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    • 2. 发明公开
    • METHOD AND SYSTEM FOR AUTHENTICATION
    • 用于认证的方法和系统
    • EP3208732A1
    • 2017-08-23
    • EP17156576.5
    • 2017-02-16
    • Intercede Limited
    • EDWARDS, Christopher
    • G06F21/43H04L29/06G06F21/35
    • H04L63/0421G06F21/35G06F21/43H04L63/08H04L63/0823H04L63/0853H04L63/107H04L67/141H04W12/04H04W12/06
    • Described herein is a method of authentication between a mobile device and a service provider server. The method enables a session to be established between a computing device and the service provider server without a user having to enter any user account data on either the computing device or the mobile device. To establish a session, the session identifier is presented in machine readable form by the computing device to the mobile device and then, in response to a user authenticating with the mobile device, a credential embodying an anonymised user identifier is sent in a tamper-proof manner to the service provider service along with the session identifier. The service provider server can extract the anonymised user identifier from the credential and use it to identify the user's data and authorise the session. A method of obtaining the credential is also described.
    • 这里描述的是移动设备和服务提供商服务器之间的认证方法。 该方法使得能够在计算设备和服务提供商服务器之间建立会话,而用户不必在计算设备或移动设备上输入任何用户账户数据。 为了建立会话,会话标识符以计算设备以机器可读形式被呈现给移动设备,并且然后,响应于用户使用移动设备进行认证,体现匿名用户标识符的凭证以防篡改 方式连同会话标识符一起提供给服务提供商服务。 服务提供商服务器可以从凭证中提取匿名用户标识符,并使用它来标识用户的数据并授权会话。 还描述了获得证书的方法。
    • 7. 发明公开
    • METHOD, SYSTEM AND STORAGE MEDIUM FOR A HARDWARE DESIGN TO CALCULATE A MODULO VALUE
    • 用于计算模值的硬件设计的方法,系统和存储介质
    • EP3176712A1
    • 2017-06-07
    • EP16200786.8
    • 2016-11-25
    • Imagination Technologies Limited
    • LEE, Samuel
    • G06F17/50
    • G06F7/535G06F17/5045
    • A method of generating a hardware design to calculate a modulo value for any input value in a target input range with respect to a constant value d using one or more range reduction stages. The hardware design is generated through an iterative process that selects the optimum component for mapping successively increasing input ranges to the target output range until a component is selected that maps the target input range to the target output range. Each iteration includes generating hardware design components for mapping the input range to the target output range using each of a plurality of modulo preserving range reduction methods, synthesizing the generated hardware design components, and selecting one of the generated hardware design components based on the results of the synthesis.
    • 一种产生硬件设计以使用一个或多个范围缩减级针对目标输入范围中的任何输入值相对于恒定值d计算模值的方法。 硬件设计是通过迭代过程生成的,该过程选择最佳组件,将连续增加的输入范围映射到目标输出范围,直到选择一个将目标输入范围映射到目标输出范围的组件。 每个迭代包括使用多个模保持范围缩减方法中的每一个生成用于将输入范围映射到目标输出范围的硬件设计组件,合成所生成的硬件设计组件,并且基于 合成。
    • 9. 发明公开
    • MOTION BASED ESTIMATION OF BIOMETRIC SIGNALS
    • AUF BEWEGUNG BASIERENDESCHÄTZUNGVON BIOMETRISCHEN SIGNALEN
    • EP3148413A1
    • 2017-04-05
    • EP15779051.0
    • 2015-05-27
    • Microsoft Technology Licensing, LLC
    • KELNER, Ilya
    • A61B5/00A61B5/024A61B5/11
    • A61B5/02438A61B5/0245A61B5/1118A61B5/4866A61B5/681A61B5/721A61B5/725A61B2560/0228G06F1/32G06F17/10G06F19/00G16H50/20
    • A wearable electronic device, comprising a heart rate sensor to determine a heart rate of the user, a motion sensor to detect motion of a user, the motion sensor operated in an initial calibration phase during which the heart rate sensor is detecting the heart rate of the user, and the motion sensor is detecting the motion of the user, the calibration phase being used to compute a correspondence between motion of the user and the heart rate of the user, the motion sensor being operated in a low power phase during which the heart rate sensor is powered down, and a processor configured to run a heart rate estimation module configured to calculate an estimated heart rate of the user based upon the motion of the user and the correspondence between the heart rate of the user and the motion of the user determined in the calibration phase.
    • 一种可佩戴的电子设备,包括用于确定用户的心率的心率传感器,用于检测用户的运动的运动传感器,在初始校准阶段中操作的运动传感器,在该初始校准阶段期间心率传感器检测心率 用户和运动传感器正在检测用户的运动,所述校准阶段用于计算用户的运动与用户的心率之间的对应关系,所述运动传感器在低功率阶段中运行,在该阶段期间, 心率传感器被断电,并且处理器被配置为运行心率估计模块,该心率估计模块被配置为基于用户的运动和用户的心率与运动之间的对应关系来计算用户的估计心率 用户在校准阶段确定。