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    • 1. 发明申请
    • SYSTEMS AND METHODS FOR SYNCHRONIZATION OF CLOCK SIGNALS
    • 用于同步时钟信号的系统和方法
    • WO2013044249A1
    • 2013-03-28
    • PCT/US2012/056948
    • 2012-09-24
    • AVIAT NETWORKS, INC.SECKER, PhilipVANN, Emerick
    • SECKER, PhilipVANN, Emerick
    • H04J3/06
    • H04J3/0691H03L7/0805H03L7/0807H04J3/0638H04J3/0647H04J3/12H04L7/0008H04L7/0337
    • A terminal of an exemplary transmitting device is configured to receive an initial clock signal. A first phase lock loop is configured to lock a phase of an initial periodic signal with a phase of the initial clock signal. A transmitting data block interface is configured to provide the plurality of data blocks with samples of the initial periodic signal to a receiving device. An exemplary receiving device includes a receiving data block interface configured to receive the plurality of data blocks. A second phase lock loop is configured to recreate the initial periodic signal and lock a phase of the recreated periodic signal with a phase of the samples of the initial periodic signal. The clock signal generator is configured to recreate and provide the initial clock signal. The recreated clock signal is synchronized to the initial clock signal based on the phase of the recreated periodic signal.
    • 示例性发送设备的终端被配置为接收初始时钟信号。 第一锁相环被配置为用初始时钟信号的相位锁定初始周期信号的相位。 发送数据块接口被配置为向接收设备提供多个数据块与初始周期信号的采样。 示例性接收设备包括被配置为接收多个数据块的接收数据块接口。 第二锁相环配置成重新创建初始周期信号,并用初始周期信号的样本的相位来锁定重新创建的周期信号的相位。 时钟信号发生器被配置为重建并提供初始时钟信号。 重新创建的时钟信号基于重新创建的周期信号的相位与初始时钟信号同步。
    • 3. 发明申请
    • SYSTEMS AND METHODS FOR CANCELLING CROSS POLARIZATION INTERFERENCE IN WIRELESS COMMUNICATION USING POLARIZATION DIVERSITY
    • 使用极化多样性消除无线通信中的交叉偏振干扰的系统和方法
    • WO2013023225A1
    • 2013-02-14
    • PCT/US2012/050661
    • 2012-08-13
    • AVIAT NETWORKS, INC.VANN, Emerick
    • VANN, Emerick
    • H01Q19/00
    • H01Q21/28
    • An exemplary system may comprise a first and second device and a first and second power splitter coupled to a single cable. The first device may be configured to receive a first noise signal of a first polarization, and to adaptively cancel, based on the first noise signal, first noise from the noisy signal associated with an orthogonal polarization. The second device may be configured to receive a second noise signal of a second polarization, and to adaptively cancel second noise from the noisy signal associated with an orthogonal polarization based on the second noise signal. The first power splitter may be configured to receive the first noise signal from the single cable and provide the first noise signal to the first device. The second power splitter may be configured to receive the second noise signal from the single cable and provide the second noise signal to the second device.
    • 示例性系统可以包括耦合到单个电缆的第一和第二设备以及第一和第二功率分配器。 第一装置可以被配置为接收第一极化的第一噪声信号,并且基于第一噪声信号自适应地消除来自与正交极化相关联的噪声信号的第一噪声。 第二装置可以被配置为接收第二极化的第二噪声信号,并且基于第二噪声信号自适应地从与正交极化相关联的噪声信号中抵消第二噪声。 第一功率分配器可以被配置为从单个电缆接收第一噪声信号并将第一噪声信号提供给第一设备。 第二功率分配器可以被配置为从单个电缆接收第二噪声信号并将第二噪声信号提供给第二设备。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR TRANSCEIVER COMMUNICATION
    • 收发机通信系统与方法
    • WO2013106051A1
    • 2013-07-18
    • PCT/US2012/032812
    • 2012-04-09
    • AVIAT NETWORKS, INC.VANN, Emerick
    • VANN, Emerick
    • H04B1/38
    • H04L25/08H04B1/40H04L27/3405
    • Systems and methods for transceiver communication are discussed herein. An exemplary system comprises a first transceiver and a second transceiver. The first transceiver may comprise an I/Q module and a PHY device. The I/Q module may receive a first complex signal and transform the first complex signal into bit words of a predetermined size and framewords. The PHY device may receive the bit words, transmit the bit words and framewords over a cable, and perform adaptive cancellation. The second transceiver may comprise a PHY device, an I/Q module, an I/Q modulator, and an antenna. The PHY device may receive the bit words and the framewords from over the cable. The I/Q module may transform the bit words to a second complex signal based on the framewords. The I/Q modulator may modulate the complex signal to generate a transmit signal. The antenna may transmit the signal.
    • 本文讨论了收发器通信的系统和方法。 示例性系统包括第一收发器和第二收发器。 第一收发机可以包括I / Q模块和PHY设备。 I / Q模块可以接收第一复合信号,并将第一复数信号变换成预定大小的位字和成帧信号。 PHY设备可以接收位字,通过电缆发送位字和帧输入,并执行自适应消除。 第二收发器可以包括PHY设备,I / Q模块,I / Q调制器和天线。 PHY设备可以通过电缆接收位字和帧信号。 I / Q模块可以将位字转换成基于信号线的第二复信号。 I / Q调制器可以调制复信号以产生发射信号。 天线可以发送信号。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR REDUCTION OF TRIPLE TRANSIT EFFECTS IN TRANSCEIVER COMMUNICATIONS
    • 用于减少收发机通信中的三重传输效应的系统和方法
    • WO2012149027A1
    • 2012-11-01
    • PCT/US2012/035010
    • 2012-04-25
    • AVIAT NETWORKS, INC.QIN, YoumingMATSUMOTO, Frank, S.VANN, Emerick
    • QIN, YoumingMATSUMOTO, Frank, S.VANN, Emerick
    • H04B3/20
    • H04L25/085H04B3/46H04W88/085
    • Systems and methods for transceiver communication are discussed herein. An exemplary system comprises a first transceiver unit comprising a first attenuator, a filter module, a gain module, and an antenna. The first attenuator may be configured to attenuate a transmission signal from a second transceiver module over a coaxial cable. The transmission signal may comprise a primary component and a triple transit component. The first attenuator may further be configured to attenuate and provide a reflection signal over the coaxial cable to the second transceiver module. The reflection signal may be based on a reflection of at least a portion of the transmission signal. The filter module configured to filter the transmission signal. The gain module may be configured to increase the gain of the transmission signal. The antenna may be configured to transmit the transmission signal.
    • 本文讨论了收发器通信的系统和方法。 示例性系统包括第一收发器单元,其包括第一衰减器,滤波器模块,增益模块和天线。 第一衰减器可以被配置为通过同轴电缆衰减来自第二收发器模块的传输信号。 传输信号可以包括主要部件和三重传送部件。 第一衰减器还可以被配置为衰减并且通过同轴电缆向第二收发器模块提供反射信号。 反射信号可以基于传输信号的至少一部分的反射。 所述过滤器模块被配置为过滤所述传输信号。 增益模块可以被配置为增加发送信号的增益。 天线可以被配置为发送传输信号。