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    • 6. 发明申请
    • OPTICAL FIBRE NETWORK
    • 光纤网络
    • US20100266285A1
    • 2010-10-21
    • US12742427
    • 2008-11-13
    • Peter HealeyDavid William Smith
    • Peter HealeyDavid William Smith
    • H04J14/02
    • H04J14/0282H04J3/0682
    • An optical fibre network comprises a laser source (1a) configured to generate laser light of a plurality of wavelengths. A first optical fibre (4a), transmits multi-wavelength light from the laser source to a location remote from the laser source. A wavelength division multiplexer (2) at the remote location (203) is connected to a plurality of second optical fibres (8). A plurality of optical modulators (9) are each connected optically to the wavelength division multiplexer (2) via a respective second optical fibre (8). The wavelength division multiplexer (2) is arranged to de-multiplex the multi-wavelength light received from the first optical fibre (4a) into a plurality of wavelengths and to supply a respective wavelength to each of the second optical fibres (8). The optical modulators (9) are reflective optical modulators each arranged to modulate light received from the associated second optical fibre (8) with a data signal and to reflect the modulated light back along the second optical fibre (8). The wavelength division multiplexer (2) is arranged to multiplex the modulated light from all of the second optical fibres (8) into a wavelength division multiplexed optical signal for onward transmission along a third optical fibre (13).
    • 光纤网络包括被配置为产生多个波长的激光的激光源(1a)。 第一光纤(4a)将来自激光源的多波长光传输到远离激光源的位置。 在远程位置(203)处的波分复用器(2)连接到多个第二光纤(8)。 多个光调制器(9)各自经由相应的第二光纤(8)光学地连接到波分复用器(2)。 波分多路复用器(2)被布置成将从第一光纤(4a)接收的多波长光解复用为多个波长,并向每个第二光纤(8)提供相应的波长。 光学调制器(9)是反射式光学调制器,每一个都配置成用数据信号调制从相关联的第二光纤(8)接收的光,并且沿着第二光纤(8)反射经调制的光。 波分复用器(2)被布置为将来自所有第二光纤(8)的调制光复用为波分复用光信号,以沿着第三光纤(13)向前传输。
    • 7. 发明授权
    • Optical fibre network
    • 光纤网络
    • US08606106B2
    • 2013-12-10
    • US12742427
    • 2008-11-13
    • Peter HealeyDavid William Smith
    • Peter HealeyDavid William Smith
    • H04J14/00H04J14/08
    • H04J14/0282H04J3/0682
    • An optical fiber network comprises a laser source (1a) configured to generate laser light of a plurality of wavelengths. A first optical fiber (4a), transmits multi-wavelength light from the laser source to a location remote from the laser source. A wavelength division multiplexer (2) at the remote location (203) is connected to a plurality of second optical fibers (8). A plurality of optical modulators (9) are each connected optically to the wavelength division multiplexer (2) via a respective second optical fiber (8). The wavelength division multiplexer (2) is arranged to de-multiplex the multi-wavelength light received from the first optical fiber (4a) into a plurality of wavelengths and to supply a respective wavelength to each of the second optical fibers (8). The optical modulators (9) are reflective optical modulators each arranged to modulate light received from the associated second optical fiber (8) with a data signal and to reflect the modulated light back along the second optical fiber (8). The wavelength division multiplexer (2) is arranged to multiplex the modulated light from all of the second optical fibers (8) into a wavelength division multiplexed optical signal for onward transmission along a third optical fiber (13).
    • 光纤网络包括被配置为产生多个波长的激光的激光源(1a)。 第一光纤(4a)将来自激光源的多波长光传输到远离激光源的位置。 在远程位置(203)处的波分复用器(2)连接到多个第二光纤(8)。 多个光调制器(9)各自经由相应的第二光纤(8)光学地连接到波分复用器(2)。 波分多路复用器(2)被布置成将从第一光纤(4a)接收的多波长光解复用为多个波长,并向每个第二光纤(8)提供相应的波长。 光学调制器(9)是反射式光学调制器,每一个都配置成用数据信号调制从相关联的第二光纤(8)接收的光,并且沿着第二光纤(8)反射经调制的光。 波分复用器(2)被布置为将来自所有第二光纤(8)的调制光复用为波分复用光信号,以沿着第三光纤(13)向前传输。
    • 8. 发明申请
    • Wavelength Division Multiplexing Transmission Equipment
    • 波分复用传输设备
    • US20110217039A1
    • 2011-09-08
    • US13125940
    • 2009-10-26
    • David William Smith
    • David William Smith
    • H04J14/02
    • H04J14/02
    • An optical transmission network comprises a multi-wavelength source (7) shared between multiple sets of client side equipment for manipulating electrical signals. A first wavelength selective routing element (5) is connected to the multi-wavelength source (7). Each set of client-side equipment (1) comprises an optical modulator (3) connected to the first wavelength selective routing element (5) and an optical receiver (2). A second wavelength selective routing element (6) is connected to the optical receiver (2) and is operative to direct incoming signals from one or more remote locations to the optical receiver (2). The network provides a WDM architecture solution for networks whereby the cost of implementing and running client side equipment (1) is reduced by not having the WDM source (7) within the client side equipment (1).
    • 光传输网络包括在用于操纵电信号的多套客户端设备之间共享的多波长源(7)。 第一波长选择性路由元件(5)连接到多波长源(7)。 每组客户端设备(1)包括连接到第一波长选择路由元件(5)和光接收器(2)的光调制器(3)。 第二波长选择性路由元件(6)连接到光接收器(2),并且可操作地将来自一个或多个远程位置的输入信号引导到光接收器(2)。 网络为网络提供WDM架构解决方案,通过在客户端设备(1)内没有WDM源(7)来实现和运行客户端设备(1)的成本降低。