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    • 2. 发明授权
    • Ear-scan-based biometric authentication
    • 基于耳朵扫描的生物认证
    • US09530066B2
    • 2016-12-27
    • US14567984
    • 2014-12-11
    • Descartes Biometrics, Inc.
    • Michael Boczek
    • G06K9/00
    • G06K9/00885
    • The current document is directed to an ear-scan-based biometrics subsystem that is incorporated into any of a wide variety of processor-controlled devices, including mobile phones. The biometrics subsystem collects touch-point locations, device-orientation-representative angles, and, in certain implementations, additional data during each ear scan and uses the collected information to derive additional data that is stored with the collected data to generate a stored data representation of the ear scan. A first ear scan can be compared to a second ear scan to generate a matching score from weighted scores obtained from the touch-point locations and derived data, device-orientation-representative angles, and additional data within the stored data representations of the first and second ear scans. Ear-scan matching provides a basis for authentication of users and for compiling ear-scan profiles for users.
    • 目前的文献针对基于耳朵扫描的生物识别子系统,该子系统被并入到包括移动电话在内的各种处理器控制的设备中的任何一个中。 生物特征子系统收集触摸点位置,设备取向代表性角度,并且在某些实施方式中,在每次耳朵扫描期间附加数据,并且使用所收集的信息来导出与收集的数据一起存储的附加数据以生成存储的数据表示 的耳朵扫描。 可以将第一耳朵扫描与第二耳朵扫描进行比较以从从触摸点位置获得的加权分数和导出的数据,设备取向代表性角度以及所存储的数据表示内的附加数据生成匹配分数,并且 第二次耳朵扫描。 耳朵扫描匹配为用户的身份验证和用户编辑耳朵扫描配置文件提供了基础。
    • 3. 发明申请
    • EAR-SCAN-BASED BIOMETRIC AUTHENTICATION
    • 基于扫描的生物识别
    • US20150161459A1
    • 2015-06-11
    • US14567984
    • 2014-12-11
    • Descartes Biometrics, Inc.
    • Michael Boczek
    • G06K9/00G06F3/041
    • G06K9/00885
    • The current document is directed to an ear-scan-based biometrics subsystem that is incorporated into any of a wide variety of processor-controlled devices, including mobile phones. The biometrics subsystem collects touch-point locations, device-orientation-representative angles, and, in certain implementations, additional data during each ear scan and uses the collected information to derive additional data that is stored with the collected data to generate a stored data representation of the ear scan. A first ear scan can be compared to a second ear scan to generate a matching score from weighted scores obtained from the touch-point locations and derived data, device-orientation-representative angles, and additional data within the stored data representations of the first and second ear scans. Ear-scan matching provides a basis for authentication of users and for compiling ear-scan profiles for users.
    • 目前的文献针对基于耳朵扫描的生物识别子系统,该子系统被并入到包括移动电话在内的各种处理器控制的设备中的任何一个中。 生物特征子系统收集触摸点位置,设备取向代表性角度,并且在某些实施方式中,在每次耳朵扫描期间附加数据,并且使用所收集的信息来导出与收集的数据一起存储的附加数据以生成存储的数据表示 的耳朵扫描。 可以将第一耳朵扫描与第二耳朵扫描进行比较以从从触摸点位置获得的加权分数和导出的数据,设备取向代表性角度以及所存储的数据表示内的附加数据生成匹配分数,并且 第二次耳朵扫描。 耳朵扫描匹配为用户的身份验证和用户编辑耳朵扫描配置文件提供了基础。