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    • 8. 发明申请
    • ANONYMOUS DIGITAL IDENTIFICATION
    • 匿名数字识别
    • US20160162947A1
    • 2016-06-09
    • US15019586
    • 2016-02-09
    • Michael Callahan
    • Michael Callahan
    • G06Q30/02H04W4/02H04L29/08G06Q20/12H04L12/18
    • G06Q30/0261G06Q10/087G06Q20/1235G06Q20/327G06Q30/02G06Q30/08G06Q50/01H04L12/1813H04L67/18H04L67/20H04L67/22H04L67/306H04W4/02H04W4/023
    • Methods and systems for anonymous digital identification are disclosed and may include detecting the presence of a first wireless communication device utilizing a second communication device, the first wireless communication device being associated with a first set of content that is distinguishable from an identifier associated with said first wireless communication device. In response to a determination that the first wireless communication device and the second communication device are geographically proximate to one another based on location detection capabilities of the first wireless communication device or the second communication device, content may be provided to the first wireless communication device. The content may be based at least in part on a shared or complementary interest associated with the first wireless communication device, and the interest may have previously been expressed by a user of said first wireless communication device. The wireless communication device may be associated with a unique identifier.
    • 公开了用于匿名数字识别的方法和系统,并且可以包括使用第二通信设备来检测是否存在第一无线通信设备,第一无线通信设备与第一组内容相关联,该第一组内容可与与所述第一 无线通信设备。 响应于基于第一无线通信设备或第二通信设备的位置检测能力确定第一无线通信设备和第二通信设备在地理上彼此接近,可以向第一无线通信设备提供内容。 内容可以至少部分地基于与第一无线通信设备相关联的共享或补充兴趣,并且兴趣可以先前由所述第一无线通信设备的用户表示。 无线通信设备可以与唯一标识符相关联。
    • 9. 发明授权
    • Neural translator
    • 神经翻译
    • US08949129B2
    • 2015-02-03
    • US13964715
    • 2013-08-12
    • Michael CallahanThomas Coleman
    • Michael CallahanThomas Coleman
    • G10L13/02G10L25/48G10L13/04G10L15/24A61B5/0488
    • G06F17/28A61B5/04886G10L13/00G10L13/043G10L15/24G10L25/48
    • A method and apparatus are provided for processing a set of communicated signals associated with a set of muscles, such as the muscles near the larynx of the person, or any other muscles the person use to achieve a desired response. The method includes the steps of attaching a single integrated sensor, for example, near the throat of the person proximate to the larynx and detecting an electrical signal through the sensor. The method further includes the steps of extracting features from the detected electrical signal and continuously transforming them into speech sounds without the need for further modulation. The method also includes comparing the extracted features to a set of prototype features and selecting a prototype feature of the set of prototype features providing a smallest relative difference.
    • 提供了一种方法和装置,用于处理与一组肌肉相关联的一组传播信号,例如人的喉部附近的肌肉,或者人们用于实现期望的反应的任何其他肌肉。 该方法包括以下步骤:附接单个集成传感器,例如靠近喉部的人的喉部,并通过传感器检测电信号。 该方法还包括以下步骤:从检测到的电信号中提取特征,并将其连续地变换成语音,而不需要进一步调制。 该方法还包括将所提取的特征与一组原型特征进行比较,并且选择提供最小相对差异的原始特征集的原型特征。