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    • 5. 发明申请
    • Method and system for compensating for optical dispersion in an optical signal
    • 用于补偿光信号中的光学色散的方法和系统
    • US20070140700A1
    • 2007-06-21
    • US11311717
    • 2005-12-19
    • Olga VassilievaSusumu Kinoshita
    • Olga VassilievaSusumu Kinoshita
    • H04B10/12
    • H04L25/03006H04B10/25133H04J14/0204H04J14/0209H04J14/0212H04J14/0213H04J14/0219H04J14/0221H04J14/0227H04L2025/03375
    • A method for compensating for optical dispersion in an optical signal includes receiving an optical signal comprising a plurality of channels. The information being communicated in a first set of channels is modulated using a first modulation technique, and the information being communicated in a second set of channels is modulated using a second modulation technique. The method also includes compensating for optical dispersion in the optical signal such that dispersion compensation for the first set of channels is complete and such that dispersion compensation for the second set of channels is incomplete. In addition, the method includes splitting the optical signal into a first copy and a second copy, terminating the second set of channels in the first copy, performing additional dispersion compensation on the second copy such that dispersion compensation for the second set of channels is complete, and terminating the first set of channels in the second copy.
    • 用于补偿光信号中的光分散的方法包括接收包括多个信道的光信号。 使用第一调制技术调制在第一组信道中传送的信息,并且使用第二调制技术调制在第二组信道中传送的信息。 该方法还包括补偿光学信号中的光学色散,使得第一组信道的色散补偿完成,并且使得第二组信道的色散补偿不完整。 另外,该方法包括将光信号分为第一拷贝和第二拷贝,终止第一拷贝中的第二组信道,在第二拷贝上执行附加色散补偿,使第二组信道的色散补偿完成 并且终止第二副本中的第一组频道。
    • 6. 发明授权
    • Optimizing optical network simulations
    • 优化光网络仿真
    • US09461745B2
    • 2016-10-04
    • US13427071
    • 2012-03-22
    • Olga VassilievaInwoong KimMotoyoshi Sekiya
    • Olga VassilievaInwoong KimMotoyoshi Sekiya
    • G06F7/60H04B10/27
    • H04B10/27
    • According to an aspect of an embodiment, a method of modeling an optical signal transmission path may include obtaining first transmission characteristics of an optical signal transmission path within an optical network based on a parameter of the optical network and randomly changing states of polarization of an optical signal within the optical signal transmission path. The method may also include obtaining second transmission characteristics of the optical signal transmission path based on the parameter and a first fixed state of polarization of the optical signal. The method may also include correlating the first transmission characteristics with the second transmission characteristics to obtain an effective state of polarization of the optical signal. A simulation of the optical signal transmission path based on the parameter and the effective state of polarization of the optical signal may produce transmission characteristics that may approximate the first transmission characteristics.
    • 根据实施例的一个方面,对光信号传输路径进行建模的方法可以包括基于光网络的参数获得光网络内的光信号传输路径的第一传输特性,并随机改变光学器件的偏振态 信号在光信号传输路径内。 该方法还可以包括基于参数和光信号的第一固定偏振状态来获得光信号传输路径的第二传输特性。 该方法还可以包括将第一传输特性与第二传输特性相关联以获得光信号的有效极化状态。 基于参数和光信号的有效极化状态的光信号传输路径的模拟可以产生可以接近第一传输特性的传输特性。