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    • 16. 发明授权
    • OSNR model for optical engineering rules used in a planning tool
    • 用于规划工具中使用的光学工程规则的OSNR模型
    • US08467678B2
    • 2013-06-18
    • US12544571
    • 2009-08-20
    • David W. JenkinsJulia Y. LarikovaRichard C. Younce
    • David W. JenkinsJulia Y. LarikovaRichard C. Younce
    • H04B10/08
    • H04B10/07H04L41/12H04L41/145H04L45/02H04L45/70
    • Increasing data rates in next-generation optical networks requires a change in the type of optical modulation used to encode optical signals carried by the optical networks. Different types of optical modulation incur different optical impairments, which may degrade the fidelity of the optical signals by reducing the optical signal-to-noise ratio (OSNR). A method or corresponding apparatus in an example embodiment of the present invention provides a planning tool for deploying an optical network in a manner based on the optical modulation that reduces the cost and complexity of the deployed network. In one embodiment, the disclosed planning tool may adjust a model of the optical network to be deployed by changing the topology and/or the number and/or type of optical network elements in response to optical impairments for a given optical modulation.
    • 在下一代光网络中增加数据速率需要改变用于编码由光网络承载的光信号的光调制类型。 不同类型的光学调制产生不同的光学损伤,这可能通过降低光信噪比(OSNR)来降低光信号的保真度。 在本发明的示例性实施例中的方法或相应装置提供了一种用于以基于光调制的方式部署光网络的规划工具,所述光调制降低了部署网络的成本和复杂性。 在一个实施例中,所公开的规划工具可以响应于给定光学调制的光学损伤,通过改变光网络元件的拓扑和/或数量和/或类型来调整要部署的光网络的模型。
    • 17. 发明申请
    • OSNR MODEL FOR OPTICAL ENGINEERING RULES USED IN A PLANNING TOOL
    • 用于规划工具中使用的光学工程规则的OSNR模型
    • US20100322621A1
    • 2010-12-23
    • US12544571
    • 2009-08-20
    • David W. JenkinsJulia Y. LarikovaRichard C. Younce
    • David W. JenkinsJulia Y. LarikovaRichard C. Younce
    • H04B10/08
    • H04B10/07H04L41/12H04L41/145H04L45/02H04L45/70
    • Increasing data rates in next-generation optical networks requires a change in the type of optical modulation used to encode optical signals carried by the optical networks. Different types of optical modulation incur different optical impairments, which may degrade the fidelity of the optical signals by reducing the optical signal-to-noise ratio (OSNR). A method or corresponding apparatus in an example embodiment of the present invention provides a planning tool for deploying an optical network in a manner based on the optical modulation that reduces the cost and complexity of the deployed network. In one embodiment, the disclosed planning tool may adjust a model of the optical network to be deployed by changing the topology and/or the number and/or type of optical network elements in response to optical impairments for a given optical modulation.
    • 在下一代光网络中增加数据速率需要改变用于编码由光网络承载的光信号的光调制类型。 不同类型的光学调制产生不同的光学损伤,这可能通过降低光信噪比(OSNR)来降低光信号的保真度。 在本发明的示例性实施例中的方法或相应装置提供了一种用于以基于光调制的方式部署光网络的规划工具,所述光调制降低了部署网络的成本和复杂性。 在一个实施例中,所公开的规划工具可以响应于给定光学调制的光学损伤,通过改变光网络元件的拓扑和/或数量和/或类型来调整要部署的光网络的模型。
    • 19. 发明申请
    • BEAM STEERING ELEMENT WITH BUILT-IN DETECTOR AND SYSTEM FOR USE THEREOF
    • 具有内置检测器的波束转向元件及其使用的系统
    • US20100133633A1
    • 2010-06-03
    • US12684293
    • 2010-01-08
    • Roger P. HolmstromMiriam QunellDavid W. Jenkins
    • Roger P. HolmstromMiriam QunellDavid W. Jenkins
    • H01L31/0232H01L31/18
    • G02B6/3588G02B6/26G02B6/3512G02B26/08G02B26/0841
    • An all-optical cross-connect switching system provides optical switching that may reduce processing requirements by three orders of magnitude over conventional techniques by associating at least one optical detector with an optical beam steering element. In one embodiment, a first beam steering element, having a reflective surface in optical association with a first optical fiber array, and a second beam steering element, having a reflective surface in optical association with a second optical fiber array, are optically arranged to direct an optical beam from a first optical fiber in the first optical fiber array to a second optical fiber in the second optical fiber array. The optical detector provides information about a first position of the optical beam on the second beam steering element. Based on this information, the angle of the first beam steering element may be adjusted to cause the optical beam to change to a second position on the second beam steering element.
    • 全光交叉连接交换系统提供光切换,其可以通过将至少一个光学检测器与光束操纵元件相关联而将处理要求降低三个数量级以上。 在一个实施例中,具有与第一光纤阵列光学关联的反射表面的第一光束操纵元件和具有与第二光纤阵列光学关联的反射表面的第二光束操纵元件被光学地布置成直接 从第一光纤阵列中的第一光纤到第二光纤阵列中的第二光纤的光束。 光学检测器提供关于光束在第二光束操纵元件上的第一位置的信息。 基于该信息,可以调整第一光束操纵元件的角度以使光束改变到第二光束操纵元件上的第二位置。