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    • 4. 发明申请
    • COMMUNICATION SYSTEM
    • 通讯系统
    • US20100128809A1
    • 2010-05-27
    • US12623850
    • 2009-11-23
    • Taizo MaedaMotoyoshi SekiyaTakuya MiyashitaRikiya Watanabe
    • Taizo MaedaMotoyoshi SekiyaTakuya MiyashitaRikiya Watanabe
    • H04L5/12
    • H04L25/03248H04L25/03318
    • A communication system is provided for communicating over a network. A plurality of transmission devices are disposed within a network and connected by transmission channels. A control device calculates initial data required during an initial operation of the transmission devices and sets the initial data to the transmission devices. The transmission devices perform reception processing using maximum likelihood sequence estimation, and the control device obtains, as the initial data, with respect to paths that are signal communication pathways between the transmission devices and in accordance with transmission states of individual paths, initial likelihood information that is initial-stage likelihood information for performing the maximum likelihood sequence estimation.
    • 提供一种通过网络通信的通信系统。 多个传输设备设置在网络内并通过传输信道连接。 控制装置计算在发送装置的初始操作期间所需的初始数据,并将初始数据设置为发送装置。 传输设备使用最大似然序列估计来执行接收处理,并且控制设备获得关于作为发送设备之间的信号通信路径的路径并且根据各个路径的传输状态作为初始数据,初始似然信息 是用于执行最大似然序列估计的初始阶段似然信息。
    • 8. 发明授权
    • Multistage optical amplifier having tilt compensation feature
    • 具有倾斜补偿功能的多级光放大器
    • US07391560B2
    • 2008-06-24
    • US10945272
    • 2004-09-21
    • Hidezumi NatoriMotoyoshi SekiyaTakehiro Fujita
    • Hidezumi NatoriMotoyoshi SekiyaTakehiro Fujita
    • H01S4/00H04B10/12
    • H01S3/06758H01S3/005H01S3/10007H01S3/10015H01S3/1305H01S3/1608H01S2301/04H04B10/2941H04B2210/003
    • The present invention relates to an optical amplifier and, in particular, it relates to multistage optical amplification having a feature for compensating for the tilt that is generated when a signal having a plurality of optical wavelengths and the like according to a wavelength division multiplexing (WDM) method is amplified in a wide bandwidth. The multistage optical amplifier comprises: a plurality of optical amplifiers that are connected in a multistage manner; and a common control section for commonly controlling pumping light powers of said plurality of optical amplifiers, wherein said common control section includes: tilt detection means for detecting amounts of tilt of each of said plurality of optical amplifiers; and tilt cancellation means for controlling the pumping light powers of said plurality of optical amplifiers so that the amounts of tilt of each of the optical amplifiers detected by said tilt detection means cancel each other.
    • 光放大器技术领域本发明涉及一种光放大器,特别涉及具有补偿根据波分多路复用(WDM)具有多个光波长等的信号时产生的倾斜的特征的多级光放大 )方法在宽带宽中被放大。 多级光放大器包括:以多级方式连接的多个光放大器; 以及用于共同控制所述多个光放大器的泵浦光功率的公共控制部分,其中所述公共控制部分包括:倾斜检测装置,用于检测所述多个光放大器中的每一个的倾斜量; 以及用于控制所述多个光放大器的泵浦光功率的倾斜消除装置,使得由所述倾斜检测装置检测的每个光放大器的倾斜量相互抵消。
    • 9. 发明申请
    • Wdm system
    • Wdm系统
    • US20060285846A1
    • 2006-12-21
    • US10570840
    • 2003-11-11
    • Kimio UekamaTakehiro FujitaMotoyoshi Sekiya
    • Kimio UekamaTakehiro FujitaMotoyoshi Sekiya
    • H04B10/08
    • H04J14/0246H04B10/0775H04B2210/077H04J14/0221H04J14/0227H04J14/0279
    • A WDM system includes a plurality of P to P WDM systems connected for wavelength-multiplexing optical signals of a plurality of wavelengths, transmitting them to a transmission path, transmitting wavelength-division multiplexed light while performing amplification by using optical AMP in the transmission path, and subjecting the wavelength-division multiplexed light to wavelength isolation at the reception side. An OSC which is a monitoring control signal such as a normal optical signal is used closely within one P to P WDM system. However, by transmitting and receiving the OSC between a plurality of P to P WDM systems, it is possible to solve a problem at the system rise. Moreover, since accumulative OSNR data is transmitted up to the P to P WDM system of the final stage, it is possible to detect an accurate OSNR value and a leak ASE light quantity at the end side.
    • WDM系统包括多个连接用于多个波长的波分复用光信号的多个P至P WDM系统,将它们发送到传输路径,在通过在传输路径中使用光AMP进行放大的同时发射波分复用光, 并且在接收侧对波分复用光进行波长隔离。 作为监视控制信号的正常光信号的OSC紧密地在一个P到P WDM系统内使用。 然而,通过在多个P至P WDM系统之间发送和接收OSC,可以解决系统上升的问题。 此外,由于累积OSNR数据被传送到最终级的P至P WDM系统,因此可以在端侧检测精确的OSNR值和泄漏的ASE光量。
    • 10. 发明授权
    • WDM system
    • WDM系统
    • US07689131B2
    • 2010-03-30
    • US10570840
    • 2003-11-11
    • Kimio UekamaTakehiro FujitaMotoyoshi Sekiya
    • Kimio UekamaTakehiro FujitaMotoyoshi Sekiya
    • H04B10/02
    • H04J14/0246H04B10/0775H04B2210/077H04J14/0221H04J14/0227H04J14/0279
    • A WDM system includes a plurality of P to P WDM systems connected for wavelength-multiplexing optical signals of a plurality of wavelengths, transmitting them to a transmission path, transmitting wavelength-division multiplexed light while performing amplification by using optical AMP in the transmission path, and subjecting the wavelength-division multiplexed light to wavelength isolation at the reception side. An OSC which is a monitoring control signal such as a normal optical signal is used closely within one P to P WDM system. However, by transmitting and receiving the OSC between a plurality of P to P WDM systems, it is possible to solve a problem at the system rise. Moreover, since accumulative OSNR data is transmitted up to the P to P WDM system of the final stage, it is possible to detect an accurate OSNR value and a leak ASE light quantity at the end side.
    • WDM系统包括多个连接用于多个波长的波分复用光信号的多个P至P WDM系统,将它们发送到传输路径,在通过在传输路径中使用光AMP进行放大的同时发送波分复用光, 并且在接收侧对波分复用光进行波长隔离。 作为监视控制信号的正常光信号的OSC紧密地在一个P到P WDM系统内使用。 然而,通过在多个P至P WDM系统之间发送和接收OSC,可以解决系统上升的问题。 此外,由于累积OSNR数据被传送到最终级的P至P WDM系统,因此可以在端侧检测精确的OSNR值和泄漏的ASE光量。