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    • 2. 发明授权
    • Light frequency control apparatus
    • 光频控制装置
    • US5500762A
    • 1996-03-19
    • US364327
    • 1994-12-27
    • Haruyoshi UchiyamaTekken LeeNobunari TakeuchiKaoru ShimizuTsuneo HoriguchiYahei Koyamada
    • Haruyoshi UchiyamaTekken LeeNobunari TakeuchiKaoru ShimizuTsuneo HoriguchiYahei Koyamada
    • G02F2/02H01S3/067H01S3/10
    • H04B10/2572H01S3/06754
    • The present invention provides light frequency control apparatus comprising a light pulse signal generating mechanism for converting continuous light into a light pulse signal, and outputting this light pulse signal; a light signal generating mechanism for repeatedly generating at predetermined cycles, a light signal, in which a light frequency component therein is shifted to form a staircase shape based on the number of cycles of a loop within which the light pulse signal circulates; and a dummy light generating mechanism for generating dummy light at a timing such that the level of the light signal becomes zero, and supplying this dummy light to the light amplifying mechanism. The aforementioned loop is formed from a light amplifying mechanism for amplifying the light pulse signal outputted from the light pulse signal generating mechanism, light delay mechanism for delaying the light pulse signal a fixed amount; and frequency shifting mechanism for shifting the frequency of the light pulse signal.
    • 本发明提供一种光频控制装置,包括:光脉冲信号发生机构,用于将连续光转换为光脉冲信号,并输出该光脉冲信号; 光信号发生机构,用于以预定周期反复产生基于光脉冲信号在其中循环的循环的循环次数而将其中的光频分量偏移以形成阶梯形状的光信号; 以及用于在使得光信号的电平变为零的定时产生虚拟光并将虚拟光提供给光放大机构的虚拟光产生机构。 上述环路由用于放大从光脉冲信号发生机构输出的光脉冲信号的光放大机构形成,用于将光脉冲信号延迟固定量的光延迟机构; 以及用于移动光脉冲信号的频率的频移机构。
    • 5. 发明授权
    • Apparatus for measuring distortion position of optical fiber
    • 用于测量光纤变形位置的装置
    • US5394235A
    • 1995-02-28
    • US214136
    • 1994-03-16
    • Nobunari TakeuchiTekken LeeKaoru ShimizuTsuneo Horiguchi
    • Nobunari TakeuchiTekken LeeKaoru ShimizuTsuneo Horiguchi
    • G01D21/00G01M11/00G02F1/35G01N21/88
    • G01M11/335G01M11/319G01M11/332
    • An apparatus for measuring a distortion position of an optical fiber is disclosed. A light source generates continuous light with frequency f.sub.0 and injects the continuous light into a far-end of an optical fiber to be measured. An optical coupler divides the outgoing continuous light from a near-end of the optical fiber. An optical amplifier amplifies output light from the optical coupler. A first optical switch generates a first optical pulse by switching output light from the optical amplifier. An optical frequency shifter generates a second optical pulse having frequency components (f.sub.0 +f.sub.m) based on the first optical pulse from the first optical switch. A second optical switch injects the second optical pulse into the near-end of the optical fiber. A display displays outgoing continuous light with frequency f.sub.0 from the near-end of the optical fiber via the optical coupler and the second optical switch. A timing control circuit controls the operation timing of the first and second optical switches and the optical frequency shifter.
    • 公开了一种用于测量光纤的失真位置的装置。 光源产生具有频率f0的连续光,并将连续的光注入要测量的光纤的远端。 光耦合器分离出来自光纤近端的输出连续光。 光放大器放大来自光耦合器的输出光。 第一光开关通过切换来自光放大器的输出光产生第一光脉冲。 光移位器基于来自第一光开关的第一光脉冲产生具有频率分量(f0 + fm)的第二光脉冲。 第二光开关将第二光脉冲注入光纤的近端。 显示器通过光耦合器和第二光开关显示来自光纤近端的频率f0的出射连续光。 定时控制电路控制第一和第二光开关和光移频器的操作定时。
    • 6. 发明授权
    • Light return loss measurement system and method
    • 光回波损耗测量系统及方法
    • US5673108A
    • 1997-09-30
    • US621964
    • 1996-03-26
    • Nobunari Takeuchi
    • Nobunari Takeuchi
    • G01M11/00G02B6/26G01N21/84
    • G01M11/3145
    • A light return loss measurement method and system with an optical time domain reflectometer (OTDR) which displays an output of an arithmetic circuit. The method and system permits measurement of the light return loss over an arbitrary interval of an optical fiber. The system's arithmetic circuit calculates light return loss across a measurement interval set in a display waveform data by dividing a predetermined light return loss and integrating the measured waveform by multiplying the set interval by a light interception correction constant. The integration performed is a quadrature of various sections of an optical fiber. The light return loss measurement method and system also permits easy calibration of the light return loss in the OTDR.
    • 具有光时域反射计(OTDR)的光回波损耗测量方法和系统,其显示运算电路的输出。 该方法和系统允许在光纤的任意间隔上测量光返回损耗。 该系统的算术电路通过划分预定的光回波损耗来计算在显示波形数据中设置的测量间隔的光回波损耗,并通过将设置的间隔乘以光截取校正常数来积分测量的波形。 所执行的集成是光纤的各个部分的正交。 光回波损耗测量方法和系统还允许轻松校准OTDR中的光返回损耗。