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    • 36. 发明授权
    • Independent and concurrent automatic gain control for wireless communication and spectral intelligence
    • 用于无线通信和光谱智能的独立并发自动增益控制
    • US09544041B2
    • 2017-01-10
    • US13973496
    • 2013-08-22
    • Cisco Technology, Inc.
    • Raghuram RangarajanDavid KloperPaul J. Stager
    • H04M1/00H04B7/08H03G3/30
    • H04B7/0817H03G3/3078
    • A set of receiver path circuits is allocated for processing a radio-frequency (RF) signal provided by receive antennas coupled to the receiver path circuits. The RF signal may belong to a first signal class, such as Wi-Fi. A first gain control signal is applied to each of the allocated receiver path circuits to condition a signal level of the RF signal for the first signal class. A second gain control signal is applied to another set of receiver path circuits coupled to the receive antennas to condition the RF signal of a second signal class. First receive gain control signals are generated from the RF signals of the first signal class by the allocated set of the receiver path circuits. The first receive gain control signals are configured to optimize the signal level for processing the first signal class. A second receive gain control signal is generated to optimize the signal level of the RF signal for the second signal class.
    • 分配一组接收机路径电路来处理由耦合到接收机路径电路的接收天线提供的射频(RF)信号。 RF信号可以属于第一信号类,例如Wi-Fi。 对每个分配的接收机路径电路施加第一增益控制信号,以便调节第一信号类的RF信号的信号电平。 第二增益控制信号被施加到耦合到接收天线的另一组接收器路径电路以调节第二信号类的RF信号。 第一接收增益控制信号由所分配的一组接收机路径电路从第一信号类的RF信号产生。 第一接收增益控制信号被配置为优化用于处理第一信号类的信号电平。 生成第二接收增益控制信号以优化第二信号类的RF信号的信号电平。
    • 37. 发明授权
    • Distributed processing distributed-input distributed-output (DIDO) wireless communication
    • 分布式处理分布式输入分布式输出(DIDO)无线通信
    • US09241275B2
    • 2016-01-19
    • US13780513
    • 2013-02-28
    • Cisco Technology, Inc.
    • David KloperBrian D. HartPaul J. StagerMatthew A. Silverman
    • H04W16/28H04B7/02
    • H04W16/28H04B7/024
    • Techniques are presented for distributed processing Distributed-Input Distributed-Output (DIDO) wireless communication. A plurality of base stations (e.g., APs) are provided, each configured to wirelessly serve one or more wireless devices (e.g., clients). At least first and second base stations are configured to transmit simultaneously at an agreed upon time. The first and second base stations are each configured to locally generate steering matrix information used to spatially precode their respective data transmissions in order to steer their respective data transmissions to their one or more wireless devices while nulling to the one or more client devices of the other base station. Moreover, the first and second base stations are each configured to locally generate a transmit waveform by applying the steering matrix information to their respective data transmissions.
    • 提出了分布式处理分布式输入分布式输出(DIDO)无线通信的技术。 提供了多个基站(例如,AP),每个基站被配置为无线地服务于一个或多个无线设备(例如,客户端)。 至少第一和第二基站被配置为在商定的时间同时传输。 第一和第二基站各自被配置为本地生成用于对其各自的数据传输进行空间预编码的导向矩阵信息,以便将它们各自的数据传输转向其一个或多个无线设备,同时使另一个或多个无线设备的一个或多个客户端设备归零 基站。 此外,第一和第二基站各自被配置为通过将导引矩阵信息应用于它们各自的数据传输来本地生成发送波形。
    • 38. 发明申请
    • Rogue Wireless Beacon Device Detection
    • Rogue无线信标设备检测
    • US20150334569A1
    • 2015-11-19
    • US14278555
    • 2014-05-15
    • Cisco Technology, Inc.
    • Raghuram RangarajanBrian D. HartSujai HajelaSantosh PandeyDavid KloperGreg CorsettoAllen J. Huotari
    • H04W12/08H04W64/00
    • H04W12/08H04W4/80H04W12/12H04W64/003
    • Techniques are presented for detecting rogue wireless beacon devices. Wireless transmissions from beacon devices are received at a plurality of receiver devices. The wireless transmissions of the beacon devices comprise packets that carry information used for location-based services for mobile wireless devices. Content of one or more fields of the packets transmitted by the beacon devices and received by one or more of the receiver devices is obtained. The content of one or more fields of the packets is analyzed to detect an unauthorized beacon device. The analyzing operation may involve comparing the content of the one or more fields of the packets against a list that contains one or more identifiers for authorized beacon devices. In another form, analyzing may involve analyzing the content of the one or more fields of the packets with pattern information related to advertising content or advertising source.
    • 提供了用于检测流氓无线信标设备的技术。 在多个接收机设备处接收来自信标设备的无线传输。 信标设备的无线传输包括携带用于移动无线设备的基于位置的服务的信息的分组。 获得由信标设备发送并由一个或多个接收机设备接收的分组的一个或多个字段的内容。 分析分组的一个或多个字段的内容以检测未经授权的信标设备。 分析操作可以包括将分组的一个或多个字段的内容与包含用于授权信标设备的一个或多个标识符的列表进行比较。 在另一种形式中,分析可以包括利用与广告内容或广告源相关联的模式信息来分析分组的一个或多个字段的内容。
    • 39. 发明申请
    • Explicit and Implicit Hybrid Beamforming Channel Sounding
    • 显式和隐式混合波束形成通道探测
    • US20140154992A1
    • 2014-06-05
    • US13691912
    • 2012-12-03
    • CISCO TECHNOLOGY, INC.
    • Matthew A. SilvermanJeffrey R. AdamsDavid KloperYanxin NaNarayan VishwanathanDaniel Wee
    • H04W16/28
    • H04W16/28H04B7/0626H04B7/0634
    • A channel sounding scheme is presented herein that relies on a combination of a first channel sounding procedure and a second channel sounding procedure. The first channel sounding technique is one that involves an exchange of dedicated channel sounding related signals to determine channel conditions between the first wireless communication device and the particular second wireless communication device. The second channel sounding technique is one in which channel conditions are implicitly discovered from any signals transmitted by the particular second wireless communication device to the first wireless communication device. A first wireless communication device computes updates to steering matrix information used for beamforming one or more signal streams to a particular second wireless communication device based on a combination of the first channel sounding technique and the second channel sounding technique.
    • 此处呈现依赖于第一声道探测程序和第二声道探测程序的组合的声道探测方案。 第一通道探测技术是涉及专用信道探测相关信号的交换以确定第一无线通信设备和特定第二无线通信设备之间的信道状况的技术。 第二信道探测技术是从特定的第二无线通信设备向第一无线通信设备发送的任何信号隐含地发现信道条件的方法。 第一无线通信设备基于第一信道探测技术和第二信道探测技术的组合,计算用于将一个或多个信号流波束成形到特定第二无线通信设备的导引矩阵信息的更新。