Method and system for communicating a clock signal over an optical link
    91.
    发明授权
    Method and system for communicating a clock signal over an optical link 失效
    用于通过光链路传送时钟信号的方法和系统

    公开(公告)号:US06941078B1

    公开(公告)日:2005-09-06

    申请号:US09853319

    申请日:2001-05-10

    申请人: Hiroshi Onaka

    发明人: Hiroshi Onaka

    摘要: A method and system for communicating a clock signal over an optical link includes receiving a multimodulated optical information signal including non-intensity modulation for a data signal and intensity modulation for a clock signal. The clock signal is recovered based on the intensity modulation of the multimodulated optical information signal. The non-intensity modulation for the data signal is converted to intensity modulation for the data signal. The data signal is recovered from the intensity modulation for the data signal using the clock signal.

    摘要翻译: 用于通过光链路传送时钟信号的方法和系统包括接收包括数据信号的非强度调制和时钟信号的强度调制的多模式光信息信号。 基于多模光信息信号的强度调制恢复时钟信号。 将数据信号的非强度调制转换为数据信号的强度调制。 使用时钟信号从数据信号的强度调制中恢复数据信号。

    Optical multiplexing method and optical multiplexer, and optical amplifier using same
    92.
    发明申请
    Optical multiplexing method and optical multiplexer, and optical amplifier using same 有权
    光复用方法和光复用器,以及使用其的光放大器

    公开(公告)号:US20050185885A1

    公开(公告)日:2005-08-25

    申请号:US10878619

    申请日:2004-06-29

    摘要: An object of the invention is to provide an optical multiplexing method and an optical multiplexer, capable of fixing lights of different wavelengths at required wavelengths to stably multiplex them with a simple optical circuit configuration. To this end, in the present optical multiplexer, there is provided a tilted FBG, which is formed on an optical fiber through which a first light is propagated, with a grating direction thereof being tilted to an axial direction of the optical fiber, and has the sufficiently high reflectance to a second light (multiplexed light) of a wavelength different from that of the first light. The multiplexed light emitted from a light source is irradiated to the tilted FBG, via a free space from an angle direction determined according to a grating pitch of the tilted FBG and the wavelength of the multiplexed light, to be coupled within the optical fiber. Further, a low reflective FBG reflecting light coupled within the optical fiber is formed on the optical fiber, to achieve a resonance structure between the low reflective FBG and the light source, thereby stabling the wavelength of the multiplexed light.

    摘要翻译: 本发明的目的是提供一种光复用方法和光复用器,其能够固定所需波长的不同波长的光以便以简单的光电路配置来稳定地多路复用它们。 为此,在本光传输器中,提供了一种倾斜的FBG,其形成在光纤上,第一光通过该光纤传播,其光栅方向与光纤的轴向倾斜,并且具有 与第一光不同的波长的第二光(复用光)具有足够高的反射率。 从光源发射的复用光经由自由空间从根据倾斜FBG的光栅间距确定的角度方向和复用光的波长照射到倾斜的FBG,以在光纤内耦合。 此外,在光纤上形成反射耦合在光纤内的光的低反射FBG,以实现低反射FBG和光源之间的谐振结构,从而稳定复用光的波长。

    Control method and control apparatus of optical device
    93.
    发明授权
    Control method and control apparatus of optical device 失效
    光学装置的控制方法和控制装置

    公开(公告)号:US06934433B2

    公开(公告)日:2005-08-23

    申请号:US10106315

    申请日:2002-03-27

    摘要: The present invention aims at providing a control method and a control apparatus for controlling the operation setting of an optical device with high accuracy, so as to reliably obtain characteristics according to a desired relationship to be set corresponding to a signal light, immediately after the control start. To this end, the control apparatus of the present invention comprises an optical coupler that branches a part of a main signal light input to the optical device, a monitoring optical device that operates in accordance with a control parameter same as for the optical device, and processes the monitor light branched by the optical coupler, a light receiver that receives the monitor light processed by the monitoring optical device, a detecting circuit that detects a relationship between the monitor light received by the light receiver, and the wavelength or optical power of the signal light, and a controlling circuit that adjust the control parameter for the optical device to control the operation setting, based on the relationship detected by the detecting circuit, so that characteristics of the optical device become capable of realizing the relationship to be set corresponding to the signal light.

    摘要翻译: 本发明旨在提供一种用于高精度地控制光学装置的操作设置的控制方法和控制装置,以便在控制之后立即根据与信号光对应的期望关系可靠地获得特性 开始。 为此,本发明的控制装置包括将输入到光学装置的主信号光的一部分分支的光耦合器,根据与光学装置相同的控制参数进行操作的监视光学装置,以及 处理由光耦合器分支的监视光,接收由监视光学装置处理的监视光的光接收器,检测由光接收器接收的监视光之间的关系的检测电路以及光接收器的波长或光功率 信号灯,以及控制电路,其根据由检测电路检测到的关系调整光学装置的控制参数以控制操作设置,使得光学装置的特性变得能够实现与 信号灯。

    Light branching/inserting apparatus and light branching apparatus using wavelength selection filter
    95.
    发明授权
    Light branching/inserting apparatus and light branching apparatus using wavelength selection filter 失效
    光分路/插入装置和使用波长选择滤波器的光分支装置

    公开(公告)号:US06538782B1

    公开(公告)日:2003-03-25

    申请号:US09076068

    申请日:1998-05-12

    IPC分类号: H04B1000

    摘要: A light branching/inserting apparatus which can easily control light signal wavelengths, and which can branch, insert or transmit light signals having an optional wavelength and optional multiplexed number, by using a wavelength selection filter utilizing acousto-optic effects. The apparatus comprises; an ADM node section 10 which has an AOTF 11 with four ports as a wavelength selection filter and is connected to a transmission path, an RF signal generator 20 which generates an RF signal of an optional frequency and applies the signal to the AOTF 11, a selected wavelength-variable light branching section 30 which receives and processes the light signal output from the branching port of the AOTF 11 for each wavelength, a light inserting section 40 which generates an optional number of insertion light signals with optional wavelengths and sends the insertion light signals to an insertion port of the AOTF 11, and a monitoring section 50 which monitors the spectrum of the light signal input/output to/from the ADM node section 10.

    摘要翻译: 一种光分支/插入装置,其可以容易地控制光信号波长,并且可以通过使用利用声光效应的波长选择滤波器来分支,插入或发送具有可选波长和可选复用数的光信号。 该装置包括: 具有AOTF 11的ADM节点部分10,其具有四个端口作为波长选择滤波器并连接到传输路径; RF信号发生器20,其生成任选频率的RF信号并将该信号施加到AOTF 11; 选择的波长可变光分支部分30,其接收和处理从每个波长的AOTF 11的分支端口输出的光信号;光插入部分40,其产生任选数量的具有任选波长的插入光信号,并发送插入光 信号到AOTF11的插入端口,以及监视部分50,其监视从/从ADM节点部分10输入/输出的光信号的频谱。

    Optical fiber amplifier using optical fiber having a portion which suppresses nonlinear optical phenomena
    97.
    发明授权
    Optical fiber amplifier using optical fiber having a portion which suppresses nonlinear optical phenomena 有权
    使用具有抑制非线性光学现象的部分的光纤的光纤放大器

    公开(公告)号:US06266180B1

    公开(公告)日:2001-07-24

    申请号:US09339188

    申请日:1999-06-24

    IPC分类号: H01S310

    摘要: An optical amplifier which suppresses the occurrence of a nonlinear optical phenomena, such as four-wave mixing. The optical amplifier includes an optical fiber doped with a rare earth element, and a light source providing excitation light to the fiber so that a wavelength division multiplexed (WDM) light is amplified as the WDM light travels through the fiber from a first point to a second point along the fiber. A third point exists along the fiber between the first and second points at which a power of the WDM light substantially reaches a level producing a nonlinear optical phenomenal. A first portion of the fiber is between the first point and the third point, and a second portion of the fiber is between the third point and the second point. The second portion suppresses the occurrence of the nonlinear optical phenomena as compared to the first portion. The second portion can have various different constructions to provide the required suppression effect.

    摘要翻译: 抑制诸如四波混频的非线性光学现象的发生的光放大器。 光放大器包括掺杂有稀土元素的光纤和向光纤提供激发光的光源,使得当WDM光从第一点传播到第一点时,波分复用(WDM)光被放大 第二点沿着纤维。 在第一和第二点之间的光纤上存在第三点,在该点处,WDM光的功率基本上达到产生非线性光学现象的电平。 纤维的第一部分在第一点和第三点之间,纤维的第二部分在第三点和第二点之间。 与第一部分相比,第二部分抑制非线性光学现象的发生。 第二部分可以具有各种不同的结构以提供所需的抑制效果。

    Optical device utilizing magneto-optical effect
    99.
    发明授权
    Optical device utilizing magneto-optical effect 失效
    利用磁光效应的光学器件

    公开(公告)号:US6018411A

    公开(公告)日:2000-01-25

    申请号:US859256

    申请日:1997-05-20

    IPC分类号: G02B27/28 G02F1/09

    CPC分类号: G02F1/091 G02F2203/48

    摘要: The present invention provides an optical device making use of a magneto-optical effect. The optical device comprises: a reflector for reflecting an input beam as a reflected beam; a magneto-optical crystal provided so as to pass the input and reflected beams; a first unit for applying a magnetic field to the magneto-optical crystal; and a second unit for varying the magnetic field in accordance with a control signal. The configuration described above allows a small magneto-optical crystal to be used and, thus, a small-size and a low-cost Faraday rotator to be provided. By adding a polarizer to such a Faraday rotator, a variable optical attenuator can be obtained. In particular, by employing a wedge plate as the polarizer, a polarized-independent optical attenuator can be provided.

    摘要翻译: 本发明提供一种利用磁光效应的光学装置。 光学装置包括:用于反射作为反射光束的输入光束的反射器; 设置为使输入和反射光束通过的磁光晶体; 用于向磁光晶体施加磁场的第一单元; 以及用于根据控制信号改变磁场的第二单元。 上述结构允许使用小的磁光晶体,并且因此提供小尺寸和低成本的法拉第旋转器。 通过向这种法拉第旋转器添加偏振器,可以获得可变光衰减器。 特别地,通过采用楔形板作为偏振器,可以提供偏振非依赖的光衰减器。

    Optical communication system which determines the spectrum of a
wavelength division multiplexed signal and performs various processes
in accordance with the determined spectrum
    100.
    发明授权
    Optical communication system which determines the spectrum of a wavelength division multiplexed signal and performs various processes in accordance with the determined spectrum 失效
    光通信系统,其确定波分多路复用信号的频谱,并根据所确定的频谱执行各种处理

    公开(公告)号:US5894362A

    公开(公告)日:1999-04-13

    申请号:US699563

    申请日:1996-08-19

    摘要: An optical communication system for transmitting wavelength division multiplexed (WDM) signal light through an optical fiber. The optical communication system includes a decoupling unit and a monitoring unit. The decoupling unit decouples a portion of the WDM signal light from the optical fiber as a monitoring signal. The monitoring unit determines the spectrum of the WDM signal light from the monitoring signal and performs control processing in accordance with the determined spectrum. Control processing includes performing at least one of the following: (1) controlling light sources to maintain a constant wavelength of each light signal in the WDM signal light, (b) determining a noise figure of an optical amplifier which amplifies the WDM signal light, (c) controlling the optical amplifier to achieve a desired noise figure, (d) detecting a signal-to-noise ratio of the WDM signal light, (e) detecting a true signal power of the WDM signal light, (f) maintaining the true signal power to be at a constant level, (g) counting the number of channels in the WDM signal light, (h) equalizing the gain of an optical amplifier to maintain a flat gain, (i) selecting a light source from among redundant light sources for providing a light signal on a respective channel of the WDM signal light, or (j) selecting a respective channel of the WDM signal light for signal enhancement.

    摘要翻译: 一种用于通过光纤传输波分复用(WDM)信号光的光通信系统。 光通信系统包括去耦单元和监视单元。 解耦单元将来自光纤的WDM信号光的一部分作为监测信号去耦。 监视单元根据监视信号确定WDM信号光的频谱,并根据所确定的频谱执行控制处理。 控制处理包括执行以下中的至少一个:(1)控制光源以维持WDM信号光中每个光信号的恒定波长,(b)确定放大WDM信号光的光放大器的噪声系数, (c)控制光放大器以获得所需的噪声系数,(d)检测WDM信号光的信噪比,(e)检测WDM信号光的真实信号功率,(f) (g)对WDM信号光中的通道数进行计数,(h)使光放大器的增益均衡以保持平坦的增益,(i)从冗余中选择光源 用于在WDM信号光的相应通道上提供光信号的光源,或(j)选择用于信号增强的WDM信号光的相应通道。