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    • 4. 发明申请
    • SYSTEMS AND METHODS FOR SIGNAL CLASSIFICATION
    • 用于信号分类的系统和方法
    • WO2016057148A1
    • 2016-04-14
    • PCT/US2015/048870
    • 2015-09-08
    • INTEL CORPORATION
    • KENNEY, Thomas J.PERAHIA, EldadAZIZI, ShahrnazSTACEY, Robert
    • H04L27/26H04L29/06
    • H04L5/0048H04B7/0413H04L5/0023H04L27/0012H04L27/20H04L27/2035H04L69/22H04W72/0453H04W84/12
    • This disclosure describes systems, and methods related to signal classification in a wireless communication network. A first computing device comprising one or more processors and one or more transceiver component may receive a signal transmission packet comprising a physical layer (PHY) preamble. The first computing device may identify within the PHY preamble, one or more signal (SIG) fields, wherein at least one of the one or more SIG fields includes at least a length field indicating a length of the signal transmission packet. The first computing device may determine based at least in part on the length field, that the signal transmission packet is associated with a predetermined communication standard utilized to transmit the signal transmission packet. The first computing device may decode the signal transmission packet based at least in part on the determination that the signal transmission packet is associated with the predetermined communication standard.
    • 本公开描述了与无线通信网络中的信号分类相关的系统和方法。 包括一个或多个处理器和一个或多个收发器组件的第一计算设备可以接收包括物理层(PHY)前导码的信号传输分组。 第一计算设备可以在PHY前同步码内识别一个或多个信号(SIG)字段,其中所述一个或多个SIG字段中的至少一个至少包括指示信号传输分组的长度的长度字段。 第一计算设备可以至少部分地基于长度字段来确定信号传输分组与用于发送信号传输分组的预定通信标准相关联。 第一计算设备可以至少部分地基于信号传输分组与预定通信标准相关联的确定来解码信号传输分组。
    • 6. 发明申请
    • DETECTION OF 802.11P SIGNALS IN 802.11N/AC ENABLED DEVICES
    • 在802.11N / AC启用的设备中检测802.11P信号
    • WO2014182335A1
    • 2014-11-13
    • PCT/US2013/071907
    • 2013-11-26
    • INTEL CORPORATION
    • AZIZI, ShahrnazKENNEY, Thomas J.PERAHIA, Eldad
    • H04B7/24
    • H04W74/0816H04W84/12
    • Embodiments allow a wireless device configured to work with the 802.11n/ac standard to work in the communication bands where 802.11p devices operate with little change. Embodiments may receive signals using a receiver adapted for the wider bandwidth 802.11n/ac signals. Embodiments may also increase the sensitivity of the receiver to reduce the likelihood of missing the presence of a lower bandwidth 802.11p signal. When a signal is detected, embodiments may process the incoming signal as if it were an 802.11n/ac signal while also processing incoming signal samples in a way that effectively narrows the receiver bandwidth to identify whether an 802.11p signal is present. If the device detects the presence of an 802.11n/ac signal, it may terminate the 802.11p signal processing and proceed with normal 802.11n/ac operation. If the device detects the presence of an 802.11p signal, it may terminate 802.11n/ac processing and trigger collision avoidance processes.
    • 实施例允许配置成使用802.11n / ac标准的无线设备在802.11p设备以几乎没有变化的操作的通信频带中工作。 实施例可以使用适合于更宽带宽802.11n / ac信号的接收机来接收信号。 实施例还可以增加接收机的灵敏度,以减少缺少较低带宽802.11p信号的存在的可能性。 当检测到信号时,实施例可以处理输入信号,如同它是802.11n / ac信号一样,同时也以有效地缩小接收机带宽以识别是否存在802.11p信号的方式来处理输入信号样本。 如果设备检测到802.11n / ac信号的存在,它可能会终止802.11p信号处理,并进行正常的802.11n / ac操作。 如果设备检测到802.11p信号的存在,它可能会终止802.11n / ac处理并触发避免冲突的过程。
    • 8. 发明申请
    • DEVICE-TO-DEVICE (D2D) DISCOVERY WITHOUT AUTHENTICATING THROUGH CLOUD
    • 设备到设备(D2D)发现,不通过云端认证
    • WO2014092772A1
    • 2014-06-19
    • PCT/US2013/044678
    • 2013-06-07
    • INTEL CORPORATION
    • AZIZI, ShahrnazSTEPHENS, Adrian P.KENNEY, Thomas J.PERAHIA, EldadQI, Emily H.PARK, Minyoung
    • H04W76/02H04W12/06H04W48/16
    • H04W12/06H04W8/005H04W76/14H04W88/06
    • Embodiments of device-to-device (D2D) discovery, authentication, and connection techniques are generally described herein. In an example, a device-to-device connection establishment technique may be performed directly between peer-to-peer wireless communication devices without obtaining authentication information from a cloud network or an external service. The device-to-device connection establishment technique may include a transmission of a discovery request to available devices, a transmission of a response from available devices including authentication data, and a verification of the authentication data. The authentication data may include previously stored image data associated with a device or human user associated with a device. In further examples, image processing and image recognition techniques may be used to verify a particular device or human user associated with a device.
    • 本文通常描述设备到设备(D2D)发现,认证和连接技术的实施例。 在一个示例中,可以在对等无线通信设备之间直接执行设备到设备连接建立技术,而不从云网络或外部服务获取认证信息。 设备到设备连接建立技术可以包括向可用设备发送发现请求,从包括认证数据的可用设备的响应的传输和认证数据的验证。 认证数据可以包括与与设备相关联的设备或人类用户相关联的先前存储的图像数据。 在另外的示例中,可以使用图像处理和图像识别技术来验证与设备相关联的特定设备或人类用户。