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    • 1. 发明授权
    • Chromatic dispersion compensator and chromatic dispersion compensating
optical communication system
    • 色散补偿器和色散补偿光通信系统
    • US6055081A
    • 2000-04-25
    • US782756
    • 1997-01-10
    • Yasushi KoyanoMasayuki Shigematsu
    • Yasushi KoyanoMasayuki Shigematsu
    • H04B10/18
    • In a chromatic dispersion compensator, an optical signal directing unit such as an optical circulator or a directional coupler having a first, second, third and fourth ports. The optical signal directing unit directs an optical signal inputted from one of the ports to another port of the ports. A reflection-type compensator including a dispersion compensating fiber, a reflecting portion and changing unit for changing a polarization direction of a reciprocating signal light, in which the dispersion compensating fiber is connected to the reflecting portion via the changing unit. An input transmission path which is connected to the first port; and an output transmission path which is connected to the fourth port so that the signal light is outputted from the fourth port. The reflection-type compensating unit is connected to one of the second and third ports, and the chirped grating is connected to the other port.
    • 在色散补偿器中,诸如光循环器的光信号引导单元或具有第一,第二,第三和第四端口的定向耦合器。 光信号引导单元将从一个端口输入的光信号引导到端口的另一端口。 一种反射型补偿器,包括色散补偿光纤,反射部分和用于改变往复信号光的偏振方向的改变单元,其中色散补偿光纤通过改变单元连接到反射部分。 连接到第一端口的输入传输路径; 以及输出传输路径,其连接到第四端口,使得信号光从第四端口输出。 反射型补偿单元连接到第二和第三端口中的一个,并且啁啾光栅连接到另一端口。
    • 2. 发明授权
    • Chromatic dispersion compensator and chromatic dispersion compensating
optical communication system
    • 色散补偿器和色散补偿光通信系统
    • US5701188A
    • 1997-12-23
    • US535902
    • 1995-09-28
    • Masayuki ShigematsuYasushi Koyano
    • Masayuki ShigematsuYasushi Koyano
    • G02B6/34H04B10/2519H04B10/2525H04B10/00
    • G02B6/29374G02B6/29317H04B10/2519H04B10/2525
    • A chromatic dispersion compensator includes an optical circulator or a directional coupler having a first, second and third ports; an input transmission path connected to the first port; an output transmission path connected to the third port; a chirped grating connected to the second port; and a dispersion compensating fiber connected to at least one of the first, second and third ports. The dispersion compensating fiber and the chirped grating have chromatic dispersion characteristics which are opposite to the chromatic dispersion characteristics of the input and output transmission paths. In the wavelength compensator, the optical signal is incident into the first port from the input transmission path, and is made to go out to the chirped grating from the second port. Further, the optical signal is incident from the chirped grating to return to the second port, and is made to go to the output transmission path from the third port.
    • 色散补偿器包括具有第一,第二和第三端口的光循环器或定向耦合器; 连接到第一端口的输入传输路径; 连接到第三端口的输出传输路径; 连接到第二端口的啁啾光栅; 以及连接到第一,第二和第三端口中的至少一个的色散补偿光纤。 色散补偿光纤和啁啾光栅具有与输入和输出传输路径的色散特性相反的色散特性。 在波长补偿器中,光信号从输入传输路径入射到第一端口中,并从第二端口出来到啁啾光栅。 此外,光信号从啁啾光栅入射返回到第二端口,并使其从第三端口进入输出传输路径。
    • 6. 发明授权
    • Optical fiber amplifier
    • 光纤放大器
    • US5742427A
    • 1998-04-21
    • US752958
    • 1996-11-20
    • Motoki KakuiMasayuki Shigematsu
    • Motoki KakuiMasayuki Shigematsu
    • G02F1/35H01S3/06H01S3/067H01S3/07H01S3/094H01S3/10H01S3/16H01S3/23H04B10/2525H04B10/29H04B10/294H04B10/516H04B10/61G02B6/28
    • H01S3/06758H01S2301/04H01S3/094096H01S3/1608H01S3/1691
    • This invention relates to an optical fiber amplifier for amplifying and outputting input signal light. The optical fiber amplifier includes first to third amplification optical fibers. The first to third optical fibers are arranged such that the signal light passes through the first to third optical fibers in the order named. A first value as the (emission cross-section)/(absorption cross-section) of the first optical fiber and a third value as the (emission cross-section)/(absorption cross-section) of the third optical fiber are set to be larger than a second value as the (emission cross-section)/(absorption cross-section) of the second optical fiber. With this arrangement, low noise can be achieved in the first optical fiber, and a large output can be achieved in the third optical fiber. In addition, the gain characteristics associated with wavelength in this optical fiber amplifier as the overall transmission line including the first, second, and third amplification optical fibers can be sufficiently flattened.
    • 本发明涉及一种用于放大和输出输入信号光的光纤放大器。 光纤放大器包括第一至第三放大光纤。 第一至第三光纤布置成使得信号光以所述顺序通过第一至第三光纤。 作为第一光纤的(发光截面)/(吸收截面)和作为第三光纤的(发光截面)/(吸收截面)的第三值的第一值被设定为 大于作为第二光纤的(发射截面)/(吸收截面)的第二值。 利用这种布置,可以在第一光纤中实现低噪声,并且可以在第三光纤中实现大的输出。 此外,作为包括第一,第二和第三放大光纤的整体传输线的该光纤放大器中与波长相关联的增益特性可以被充分地平坦化。
    • 8. 发明授权
    • Light communication system
    • 光通信系统
    • US5214728A
    • 1993-05-25
    • US888474
    • 1992-05-22
    • Masayuki ShigematsuKohji NakazatoIzumi Sankawa
    • Masayuki ShigematsuKohji NakazatoIzumi Sankawa
    • H04B10/08H04B10/17H04B10/213
    • H04B10/27H04B10/038H04B10/071H04B10/272H04B10/291H04B10/2912
    • A bi-directional optical communication system. A first optical fiber includes a plurality of pieces, each piece having a first and second end. An optical amplifier for amplifying optical signals transmitted in a first direction is coupled to first and second pieces of the first optical fiber. A second optical fiber is coupled to the first and second pieces, bypasses the optical amplifier and transmits optical signals in a second direction opposite to the first direction. A first optical signal generator apparatus coupled to the first piece of the first optical fiber provides optical signals propagating in the first direction to a optical receiver apparatus coupled to the second piece of the first optical fiber. A second optical signal generator in the optical receiver apparatus provides optical signals propagating in the second direction to the first optical signal generator apparatus. A second optical receiver and a monitor, both in the first optical signal generator apparatus, receive the optical signals propagating in the second direction and monitor various operating conditions of the optical communication system.
    • 双向光通信系统。 第一光纤包括多个片,每片具有第一端和第二端。 用于放大沿第一方向传输的光信号的光放大器耦合到第一和第二片第一光纤。 第二光纤耦合到第一和第二片,绕过光放大器并沿与第一方向相反的第二方向传输光信号。 耦合到第一光纤的第一片的第一光信号发生器装置提供沿第一方向传播的光信号到耦合到第一光纤的第二片的光接收装置。 光接收装置中的第二光信号发生器提供沿第二方向传播的光信号到第一光信号发生装置。 在第一光信号发生器装置中的第二光接收器和监视器接收沿第二方向传播的光信号并监视光通信系统的各种操作状态。