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    • 8. 发明授权
    • Optical equalizer for intersymbol interference mitigation
    • 用于符号间干扰减轻的光均衡器
    • US07308169B2
    • 2007-12-11
    • US10922690
    • 2004-08-19
    • Sethumadhavan ChandrasekharAndrew R. ChraplyvyChristopher Richard DoerrPeter J. Winzer
    • Sethumadhavan ChandrasekharAndrew R. ChraplyvyChristopher Richard DoerrPeter J. Winzer
    • G02B6/26
    • H04B10/2507G02B6/266H04J14/0221
    • A multi-channel optical equalizer for intersymbol interference mitigation compensates for single- or multi-wavelength channels simultaneously and requires few adjustable parameters. The optical equalizer also compensates for overshoots and signal transition degradations in semiconductor optical amplifiers. The equalizer unit uses one control signal for magnitude and one to control signal phase. The equalizer includes a controllable coupling ratio coupler for splitting the light into two portions and a controllable interferometer having two arms, one arm having an additional delay which is equal to an integer multiple of 1/Δf, where Δf is the channel spacing between adjacent wavelengths utilized in the optical system. The controllable interferometer has a controllable delay in a first or second arm for adjusting the relative phase of the light passing therethrough. A coupler combines the two signal portions from the first and second arms to form the equalized output signal. A multistage optical equalizer is implemented using a plurality of optical signal equalizers.
    • 用于符号间干扰减轻的多通道光学均衡器同时补偿单波长或多波长通道,并且需要很少的可调参数。 光学均衡器还补偿半导体光放大器中的过冲和信号转换劣化。 均衡器单元使用一个控制信号的幅度和一个来控制信号相位。 均衡器包括可控耦合比耦合器,用于将光分成两部分,以及具有两个臂的可控干涉仪,一个臂具有等于1 / Deltaf的整数倍的附加延迟,其中Deltaf是相邻波长之间的信道间隔 用于光学系统。 可控干涉仪在第一或第二臂中具有可控制的延迟,用于调节通过其中的光的相对相位。 耦合器组合来自第一和第二臂的两个信号部分以形成均衡的输出信号。 使用多个光信号均衡器来实现多级光学均衡器。
    • 9. 发明申请
    • OPTICAL PUMPING AND POWERING IN SPATIALLY MULTIPLEXED TRANSMISSION LINKS
    • 在空间多路传输链路中的光泵浦和供电
    • US20120294607A1
    • 2012-11-22
    • US13112147
    • 2011-05-20
    • Peter J. WinzerAndrew R. Chraplyvy
    • Peter J. WinzerAndrew R. Chraplyvy
    • H04B10/08H04J14/00G02B6/26H01S3/067G02B6/44
    • H01S3/094061G02B6/02042G02B6/02095H01S3/06754H01S3/094096H01S3/2383H01S3/302H04B10/2912H04J14/02H04J14/04
    • A spatially multiplexed optical link having a plurality of transmission paths, wherein at least one transmission path is configured to carry an optical-pump signal while one or more other transmission paths carry data-bearing signals. Disposed within the optical link are an optical signal-distribution module and an amplifier module. The optical signal-distribution module is configured to couple portions of the optical-pump signal into the data-bearing transmission paths. The amplifier module is configured to amplify the data-bearing signals using these portions of the optical-pump signal as a power source in a suitable all-optical amplification scheme. The optical-pump signal can optionally be tapped and applied to a photovoltaic element configured to directly power a device, e.g., an optical performance monitor, or to charge the battery of that device to enable its autonomous operation if external electrical power is not available where the device is deployed.
    • 一种具有多个传输路径的空间复用光链路,其中至少一个传输路径被配置为在一个或多个其它传输路径承载数据承载信号的同时承载光泵信号。 设置在光链路内的是光信号分配模块和放大器模块。 光信号分配模块被配置为将光泵信号的部分耦合到数据承载传输路径中。 放大器模块被配置为以合适的全光放大方案将光泵信号的这些部分放大为数据承载信号作为电源。 光泵信号可以可选地被抽头并且被施加到被配置为直接为设备(例如光学性能监视器)供电的光伏元件,或者对于该设备的电池进行充电,以使得其能够自主操作,如果外部电力不可用, 该设备已部署。