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    • 1. 发明授权
    • Optical communication using polarized transmit signal
    • 使用偏振发射信号的光通信
    • US09374188B2
    • 2016-06-21
    • US12316389
    • 2008-12-12
    • René-Jean EssiambreStefan WeisserPeter J. WinzerChongjin Xie
    • René-Jean EssiambreStefan WeisserPeter J. WinzerChongjin Xie
    • H04B10/00H04J14/06
    • H04J14/06
    • A WDM system having at least two channels, each of which employs two polarizations, is arranged so that the start times of symbols carried by one polarization of a channel are displaced in time from the start times of symbols carried by the other polarization of that channel, e.g., the start time for each symbol on one polarization is not substantially synchronized with the closest-in-time symbol start time on the other polarization of that channel. Preferably, the data signals are modulated using a return-to-zero (RZ) format and the start times of the symbols of the data signal carried by one polarization of a channel is offset from the start time of the symbols data signal carried by the other polarization of that channel by between 20% to 80%—preferably 50%—of the symbol period of the data signals, when the data signals have the same symbol period.
    • 布置具有至少两个通道的WDM系统,每个通道采用两个极化,以使得通道的一个极化所承载的符号的开始时间从该通道的另一个极化所承载的符号的开始时间的时间偏移 例如,一个极化上的每个符号的开始时间基本上与该通道的另一个极化上的最接近时间符号开始时间同步。 优选地,使用归零(RZ)格式对数据信号进行调制,并且通过信道的一个极化承载的数据信号的符号的开始时间偏离由信道携带的符号数据信号的开始时间 当数据信号具有相同的符号周期时,该信道的其它极化在数据信号的符号周期的20%至80%之间优选地为50%。
    • 2. 发明申请
    • Time-interleaved polarization-division-multiplexed transmission systems and transmitters
    • 时间交错偏振分复用传输系统和发射机
    • US20100150559A1
    • 2010-06-17
    • US12316389
    • 2008-12-12
    • Rene-Jean EssiambreStefan WeisserPeter J. WinzerChongjin Xie
    • Rene-Jean EssiambreStefan WeisserPeter J. WinzerChongjin Xie
    • H04J14/02
    • H04J14/06
    • A WDM system having at least two channels, each of which employs two polarizations, is arranged so that the start times of symbols carried by one polarization of a channel are displaced in time from the start times of symbols carried by the other polarization of that channel, e.g., the start time for each symbol on one polarization is not substantially synchronized with the closest-in-time symbol start time on the other polarization of that channel. Preferably, the data signals are modulated using a return-to-zero (RZ) format and the start times of the symbols of the data signal carried by one polarization of a channel is offset from the start time of the symbols data signal carried by the other polarization of that channel by between 20% to 80%—preferably 50%—of the symbol period of the data signals, when the data signals have the same symbol period.
    • 布置具有至少两个通道的WDM系统,每个通道采用两个极化,以使得通道的一个极化所承载的符号的开始时间从该通道的另一个极化所承载的符号的开始时间的时间偏移 例如,一个极化上的每个符号的开始时间基本上与该通道的另一个极化上的最接近时间符号开始时间同步。 优选地,使用归零(RZ)格式对数据信号进行调制,并且通过信道的一个极化承载的数据信号的符号的开始时间偏离由信道携带的符号数据信号的起始时间 当数据信号具有相同的符号周期时,该信道的其它极化在数据信号的符号周期的20%至80%之间优选地为50%。
    • 3. 发明申请
    • OPTICAL RECEIVER HAVING A SIGNAL-EQUALIZATION CAPABILITY
    • 具有信号均衡能力的光接收机
    • US20140086594A1
    • 2014-03-27
    • US13628412
    • 2012-09-27
    • Chongjin XiePeter J. WinzerStefan WeisserAndreas Leven
    • Chongjin XiePeter J. WinzerStefan WeisserAndreas Leven
    • H04B10/06
    • H04B10/6161H04B10/6162H04B10/6165
    • In one embodiment, an optical receiver has a bulk dispersion compensator and a butterfly equalizer serially connected to one another to perform dispersion-compensation processing and electronic polarization de-multiplexing. The bulk dispersion compensator has a relatively large dispersion-compensation capacity, but is relatively slow and operates in a quasi-static configuration. The butterfly equalizer has a relatively small dispersion-compensation capacity, but can be dynamically reconfigured on a relatively fast time scale to track the changing conditions in the optical-transport link. The optical receiver has a feedback path that enables the configuration of the bulk dispersion compensator to be changed based on the configuration of the butterfly equalizer in a manner that advantageously enables the receiver to tolerate larger amounts of chromatic dispersion and/or polarization-mode dispersion than without the use of the feedback path.
    • 在一个实施例中,光接收器具有彼此串联连接的体色散补偿器和蝶式均衡器,以执行色散补偿处理和电子偏振解复用。 体积色散补偿器具有相对较大的色散补偿能力,但是相对较慢并且在准静态配置中操作。 蝶形均衡器具有相对较小的色散补偿能力,但是可以在相对较快的时间尺度上动态地重新配置以跟踪光传输链路中的变化条件。 光接收机具有反馈路径,其能够基于蝴蝶均衡器的配置来改变批量色散补偿器的配置,其有利地使得接收器容忍更大量的色散和/或偏振模色散比 而不使用反馈路径。
    • 4. 发明授权
    • Coherent optical receivers for colorless reception
    • 相干光接收器,用于无色接收
    • US08849130B2
    • 2014-09-30
    • US13537467
    • 2012-06-29
    • Chongjin XiePeter J. Winzer
    • Chongjin XiePeter J. Winzer
    • H04B10/00H04B10/61
    • H04B10/611H04B10/616
    • One coherent optical receiver includes a 3×3 coupler for receiving a signal and a local oscillator into a first and a third input port respectively, and three detectors for detecting a respective output of the coupler to generate corresponding first, second and third detected signals. A detected signal is filtered by an Alternating Current (AC) coupler to generate a respective first, second or third filtered signal. An adder adds the first, the second and the third filtered signals to determine a directly detected signal term. A first subtractor subtracts the directly detected signal term from the first filtered signal to determine an in-phase signal. A second subtractor subtracts the directly detected signal term from the third filtered signal to determine a quadrature signal. A digital signal processor processes the in-phase signal and the quadrature signal to recover the optical signal.
    • 一个相干光接收机包括一个3×3耦合器,用于分别将信号和本地振荡器接收到第一和第三输入端口,以及三个检测器,用于检测耦合器的相应输出以产生对应的第一,第二和第三检测信号。 检测信号由交流电耦合器滤波以产生相应的第一,第二或第三滤波信号。 加法器将第一,第二和第三滤波信号相加以确定直接检测的信号项。 第一减法器从第一滤波信号中减去直接检测的信号项,以确定同相信号。 第二个减法器从第三个滤波信号中减去直接检测的信号项,以确定正交信号。 数字信号处理器处理同相信号和正交信号以恢复光信号。
    • 5. 发明申请
    • Coherent Optical Receivers For Colorless Reception
    • 用于无色接收的相干光接收机
    • US20130071124A1
    • 2013-03-21
    • US13537467
    • 2012-06-29
    • Chongjin XiePeter J. Winzer
    • Chongjin XiePeter J. Winzer
    • H04B10/06
    • H04B10/611H04B10/616
    • One coherent optical receiver includes a 3×3 coupler for receiving a signal and a local oscillator into a first and a third input port respectively, and three detectors for detecting a respective output of the coupler to generate corresponding first, second and third detected signals. A detected signal is filtered by an Alternating Current (AC) coupler to generate a respective first, second or third filtered signal. An adder adds the first, the second and the third filtered signals to determine a directly detected signal term. A first subtractor subtracts the directly detected signal term from the first filtered signal to determine an in-phase signal. A second subtractor subtracts the directly detected signal term from the third filtered signal to determine a quadrature signal. A digital signal processor processes the in-phase signal and the quadrature signal to recover the optical signal.
    • 一个相干光接收机包括分别用于将信号和本地振荡器分别接收到第一和第三输入端口的3×3耦合器,以及用于检测耦合器的相应输出以产生相应的第一,第二和第三检测信号的三个检测器。 检测信号由交流电耦合器滤波以产生相应的第一,第二或第三滤波信号。 加法器将第一,第二和第三滤波信号相加以确定直接检测的信号项。 第一减法器从第一滤波信号中减去直接检测的信号项,以确定同相信号。 第二个减法器从第三个滤波信号中减去直接检测的信号项,以确定正交信号。 数字信号处理器处理同相信号和正交信号以恢复光信号。