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    • 1. 发明授权
    • Add and drop switch/aggregator for optical communications networks
    • 为光通信网络添加和删除交换机/聚合器
    • US09112636B2
    • 2015-08-18
    • US14116726
    • 2011-11-21
    • Francesco TestaMauro Rudi CasanovaAntonio D'Errico
    • Francesco TestaMauro Rudi CasanovaAntonio D'Errico
    • H04J14/00H04J14/02H04Q11/00
    • H04J14/0212H04J14/0217H04Q11/0005H04Q2011/0016H04Q2011/0039H04Q2011/0058
    • An apparatus for an optical communications network comprising a demultiplexer, a plurality of add/drop optical switches for adding and dropping wavelength channels. The add/drop optical switches arranged in a matrix with a number of rows corresponding to a number of output ports of the demultiplexer and a number of columns corresponding to a number of transponders. Each drop optical switch has an express input port associated with an output port of the demultiplexer, a drop output port associated with an individual transponder, and an express output port. Each add optical switch has an express input port, an add input port associated with an individual transponder, and an express output port. The apparatus also comprises a multiplexer with a plurality of input ports associated with express output ports of the add/drop optical switches.
    • 一种用于光通信网络的装置,包括解复用器,多个用于添加和删除波长信道的分插光开关。 所述分插光开关被布置成具有与多路分解器的输出端口的数量相对应的行数的矩阵,以及与多个转发器对应的列数。 每个分支光交换机具有与多路分解器的输出端口相关联的快速输入端口,与单个应答器相关联的分支输出端口和快速输出端口。 每个添加光开关具有快速输入端口,与单个应答器相关联的添加输入端口和快速输出端口。 该装置还包括多路复用器,其具有与分插光开关的快速输出端口相关联的多个输入端口。
    • 2. 发明申请
    • Reconfigurable Optical Add-Drop Multiplexer and Optical Network Element
    • 可重配置的光分插复用器和光网元
    • US20140056584A1
    • 2014-02-27
    • US14005122
    • 2011-03-15
    • Francesco TestaMauro Rudi CasanovaAntonio D' Errico
    • Francesco TestaMauro Rudi CasanovaAntonio D' Errico
    • H04J14/02
    • H04J14/0212H04J14/0213H04J14/0217H04Q11/0005H04Q2011/0039H04Q2011/0058
    • A reconfigurable optical add-drop multiplexer (10) comprising an input (20), an output (22), drop outputs (30), add inputs (22), a demultiplexer (18), a cross-connect element (12), a drop element (34) and an add element (26). The cross-connect element (12) comprises cross-connect outputs (36), a by-pass output (38), and optical switches (14) connected together as a first switch array. The drop element (34) comprises optical switches (14) connected together as a second switch array. The add element (26) comprises optical switches (14) connected together as a third switch array. Each optical switch (14) comprises a first input (13), a second input (15), a first output (17) and a second output (19). Each optical switch is arranged to deliver a first optical signal received at the first input to the first output. Each optical switch (14) is arranged to receive a respective control signal arranged to cause the optical switch to route a second optical signal received at its second input to a selected one of its first output and its second output.
    • 一种可重新配置的光分插复用器(10),包括输入(20),输出(22),输出输出(30),加法输入(22),解复用器(18),交叉连接元件(12) 下降元件(34)和添加元件(26)。 交叉连接元件(12)包括作为第一开关阵列连接在一起的交叉连接输出(36),旁路输出(38)和光开关(14)。 液滴元件(34)包括作为第二开关阵列连接在一起的光开关(14)。 添加元件(26)包括作为第三开关阵列连接在一起的光开关(14)。 每个光开关(14)包括第一输入(13),第二输入(15),第一输出(17)和第二输出(19)。 每个光开关被布置成将在第一输入处接收的第一光信号传送到第一输出端。 每个光开关(14)被布置成接收相应的控制信号,该控制信号被布置成使得光开关将在其第二输入处接收到的第二光信号路由到其第一输出及其第二输出中的所选择的一个。
    • 3. 发明授权
    • Method and system for bidirectional optical communication
    • 双向光通信的方法和系统
    • US08971721B2
    • 2015-03-03
    • US13320341
    • 2009-05-20
    • Rinaldo MazzoneFrancesco MartiniMauro Rudi Casanova
    • Rinaldo MazzoneFrancesco MartiniMauro Rudi Casanova
    • H04B10/00H04B10/516H04B10/2587H04B10/27H04B10/272H04B10/50H04B10/58H04J14/02H04B10/06
    • H04B10/516H04B10/2587H04B10/27H04B10/272H04B10/504H04B10/58H04J14/0246H04J14/025H04J14/0282
    • A method for bidirectional optical communication comprising the steps of:—at a first optical line terminal, directly modulating a laser source to generate a downstream optical signal which has an optical power spectrum comprising two peaks having a frequency separation and a non zero power difference at generation;—propagating said downstream optical signal at a distance along an optical line comprising at least a first optical fiber propagating said downstream optical signal to a second optical line terminal;—at the second optical line terminal: power splitting said downstream optical signal to generate a first and a second power portion of said downstream optical signal, spatially separated; passive filtering said first power portion of said downstream optical signal so as to increase in absolute value a respective power difference of said two peaks, so as to obtain a filtered optical signal which is thereafter detected; and amplitude modulating the second power portion of the downstream optical signal so as to obtain an upstream optical signal having a second amplitude modulation;—propagating back along said optical line the upstream optical signal to the first optical line terminal;—at said first optical line terminal, detecting said upstream optical signal; wherein the method further comprises the step of passive filtering said downstream optical signal and/or said second power portion of the downstream optical signal and/or said upstream optical signal, so as to lower, in absolute value, a respective non zero power difference of said two peaks.
    • 一种用于双向光通信的方法,包括以下步骤:在第一光线路终端处,直接调制激光源以产生下行光信号,所述下行光信号具有包括频率分离和非零功率差异的两个峰值的光功率谱 将所述下游光信号沿着包括至少第一光纤的光路线的一段距离传播到第二光线路终端;在第二光线路终端处:将所述下行光信号功率分配以产生 所述下游光信号的第一和第二功率部分在空间上分离; 无源滤波所述下行光信号的第一功率部分,以便绝对值增加所述两个峰值的相应功率差,从而获得随后检测的滤波后的光信号; 以及对下游光信号的第二功率部分进行幅度调制,以获得具有第二幅度调制的上行光信号;沿所述光线路向上移动上游光信号到第一光线路终端; - 在所述第一光线路 终端,检测所述上游光信号; 其中所述方法还包括以下步骤:对所述下游光信号和/或所述上游光信号的所述下游光信号和/或所述第二功率部分进行无源滤波,以便以绝对值降低相应的非零功率差 说了两个高峰。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR BIDIRECTIONAL OPTICAL COMMUNICATION
    • 双向光通信方法与系统
    • US20120128359A1
    • 2012-05-24
    • US13320341
    • 2009-05-20
    • Rinaldo MazzoneMauro Rudi Casanova
    • Rinaldo MazzoneMauro Rudi Casanova
    • H04J14/02H04J14/00
    • H04B10/516H04B10/2587H04B10/27H04B10/272H04B10/504H04B10/58H04J14/0246H04J14/025H04J14/0282
    • A method for bidirectional optical communication comprising the steps of:—at a first optical line terminal, directly modulating a laser source to generate a downstream optical signal which has an optical power spectrum comprising two peaks having a frequency separation and a non zero power difference at generation;—propagating said downstream optical signal at a distance along an optical line comprising at least a first optical fiber propagating said downstream optical signal to a second optical line terminal;—at the second optical line terminal: power splitting said downstream optical signal to generate a first and a second power portion of said downstream optical signal, spatially separated; passive filtering said first power portion of said downstream optical signal so as to increase in absolute value a respective power difference of said two peaks, so as to obtain a filtered optical signal which is thereafter detected; and amplitude modulating the second power portion of the downstream optical signal so as to obtain an upstream optical signal having a second amplitude modulation;—propagating back along said optical line the upstream optical signal to the first optical line terminal;—at said first optical line terminal, detecting said upstream optical signal; wherein the method further comprises the step of passive filtering said downstream optical signal and/or said second power portion of the downstream optical signal and/or said upstream optical signal, so as to lower, in absolute value, a respective non zero power difference of said two peaks.
    • 一种用于双向光通信的方法,包括以下步骤:在第一光线路终端处,直接调制激光源以产生下行光信号,所述下行光信号具有包括频率分离和非零功率差异的两个峰值的光功率谱 将所述下游光信号沿着包括至少第一光纤的光路线的一段距离传播到第二光线路终端;在第二光线路终端处:将所述下行光信号功率分配以产生 所述下游光信号的第一和第二功率部分在空间上分离; 无源滤波所述下行光信号的第一功率部分,以便绝对值增加所述两个峰值的相应功率差,从而获得随后检测的滤波后的光信号; 以及对下游光信号的第二功率部分进行幅度调制,以获得具有第二幅度调制的上行光信号;沿所述光线路向上移动上游光信号到第一光线路终端; - 在所述第一光线路 终端,检测所述上游光信号; 其中所述方法还包括以下步骤:对所述下游光信号和/或所述上游光信号的所述下游光信号和/或所述第二功率部分进行无源滤波,以便以绝对值降低相应的非零功率差 说了两个高峰。