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    • 1. 发明授权
    • Line setting and phase adjusting apparatus for synchronous multiplex
communications
    • 用于同步多路复用通信的线路设置和相位调整装置
    • US5517493A
    • 1996-05-14
    • US215314
    • 1994-03-21
    • Kimio UekamaHideaki Mochizuki
    • Kimio UekamaHideaki Mochizuki
    • H04J3/00H04J3/06H04J3/16H04Q11/04H04L12/52
    • H04J3/0623
    • The setting and phase adjusting apparatus for synchronous multiplex communications is provided which adjusts phase differences of main signals caused between a plurality of synchronous multiplexing sections and a line setting section during line setting, in which to reduce the scale of circuitry of the line setting section in a transmission device for carrying out multiplexing and line setting on large-capacity signals, a plurality of pointer modifiers are arranged on a shelf on which the line setting section is arranged. The pointer modifiers connect the line setting section to the respective synchronous multiplexing sections. The pointer modifiers are supplied with multiplexed signals of respective signal series whose data head positions are shifted from one another. The head positions of these signals are synchronized with a timing signal from a timing generator by the pointer modifiers. Line switching is then effected by time switches and a space switch.
    • 提供了用于同步多路复用通信的设置和相位调整装置,其调节在线路设置期间在多个同步多路复用部分和线路设置部分之间引起的主信号的相位差,其中减少线路设置部分的电路规模 用于在大容量信号上执行多路复用和线路设置的传输设备,多个指示器改进器被布置在布置有线路设置部分的架子上。 指针修改器将线路设置部分连接到各个同步复用部分。 指针修改器被提供有数据头位置彼此偏移的各个信号序列的多路复用信号。 这些信号的头部位置与来自定时发生器的定时信号通过指针调节器同步。 然后线路切换由时间开关和空间开关实现。
    • 2. 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。
    • 3. 发明授权
    • Optical packet switching system and optical packet transmitter device
    • 光分组交换系统和光分组发射机设备
    • US08879910B2
    • 2014-11-04
    • US13368109
    • 2012-02-07
    • Kimio UekamaShota Mori
    • Kimio UekamaShota Mori
    • H04J14/00H04L12/721H04Q11/00
    • H04Q11/0005H04L45/62H04Q11/0066H04Q2011/0016H04Q2011/0039
    • An optical packet transmitter device includes: a detection unit for detecting packet-length information and priority information from a received Ether signal; a setting unit for setting, according to the degree of priority, a division factor by which the Ether signal is divided and a wavelength used for an optical packet signal to be transmitted; a header generation unit for generating a header containing destination information, the packet-length information, the priority information, and information of wavelength in use of the Ether signal; a transmission processing unit for dividing the Ether signal according to the set division factor and generating a plurality of packet signals; a header insertion unit for inserting the generated header in at least one packet signal; and an electrical/optical converter unit for converting the plurality of packet signals into optical packet signals of a plurality of wavelengths according to the set wavelength in use.
    • 光分组发送装置包括:检测单元,用于从接收到的以太信号中检测分组长度信息和优先级信息; 设置单元,根据优先级设定分配以太网信号的分割因子和用于要发送的光分组信号的波长; 标题生成单元,用于生成包含目的地信息的报头,分组长度信息,优先级信息和使用以太信号的波长信息; 发送处理单元,用于根据所设置的分频因子分配以太信号,并产生多个分组信号; 标题插入单元,用于将生成的标题插入到至少一个分组信号中; 以及电/光转换器单元,用于根据所使用的设定波长将多个分组信号转换成多个波长的光分组信号。
    • 4. 发明申请
    • OPTICAL TRANSMISSION SYSTEM
    • 光传输系统
    • US20110103804A1
    • 2011-05-05
    • US12843753
    • 2010-07-26
    • Kimio Uekama
    • Kimio Uekama
    • H04B10/00
    • H04B10/25133
    • An optical transmission system is provided with an optical transmission apparatus, an optical reception apparatus, an optical transmission line redundantly configured with an active system optical transmission line and an standby system optical transmission line, an optical switch that switches an optical transmission line between the active system optical transmission line and the standby system optical transmission line, a variable dispersion compensator placed between the optical switch and the optical reception apparatus, a dispersion amount measuring unit that measures the dispersion amount of the standby system optical transmission line when the active system optical transmission line is being selected by the optical switch, a dispersion compensation amount setting unit that sets the amount of dispersion compensation to be applied to the standby system optical transmission line based on the measured dispersion amount of the standby system optical transmission line, and a control unit that controls, when the optical transmission line is switched from the active system optical transmission line to the standby system optical transmission line by the optical switch, the variable dispersion compensator so that the amount of dispersion compensation becomes the set amount of dispersion compensation.
    • 光传输系统设有光传输装置,光接收装置,冗余配置有源系统光传输线和备用系统光传输线的光传输线,光开关,用于将光传输线切换到主动 系统光传输线路和备用系统光传输线路,位于光开关和光接收装置之间的可变色散补偿器,分散量测量单元,用于测量当主动系统光传输时备用系统光传输线的色散量 线路由光开关选择;色散补偿量设定单元,其基于所测量的备用系统光传输线的色散量来设定应用于备用系统光传输线路的色散补偿量;以及控制 单元,当通过光开关将光传输线路从有源系统光传输线路切换到备用系统光传输线路时,可控色散补偿器使色散补偿量成为色散补偿的设定量。
    • 6. 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。
    • 7. 发明申请
    • OPTICAL PACKET SWITCHING SYSTEM AND OPTICAL PACKET SWITCHING DEVICE
    • 光学分组开关系统和光学分组开关装置
    • US20120201540A1
    • 2012-08-09
    • US13366179
    • 2012-02-03
    • Kimio UekamaShota Mori
    • Kimio UekamaShota Mori
    • H04J14/00H04L12/56
    • H04L47/2441H04J14/0212H04J14/0257H04J14/0269H04L49/90H04Q11/0005H04Q11/0066H04Q2011/0015H04Q2011/0039
    • An optical packet switching device is provided with: a first input unit and a second input unit for receiving an optical packet signal having destination information and priority information; a first demultiplexer and a second demultiplexer for branching the optical packet signal; an optical switch unit for routing one of branched optical packet signals; a first analyzer unit and a second analyzer unit for analyzing the header of the other branched optical packet signal so as to detect the destination information and the priority information; and an output competition determination unit for checking for temporal competition of a plurality of optical packet signals based on destination information and for determining whether the optical packet signals should be transmitted or discarded based on priority information when there is competition.
    • 光分组交换装置具有:第一输入单元和第二输入单元,用于接收具有目的地信息和优先级信息的光分组信号; 第一解复用器和第二解复用器,用于分支光分组信号; 用于路由分支光分组信号之一的光开关单元; 第一分析器单元和第二分析器单元,用于分析另一分支光分组信号的报头,以便检测目的地信息和优先级信息; 以及输出比赛确定单元,用于基于目的地信息检查多个光分组信号的时间竞争,并且用于当存在竞争时基于优先级信息确定是否应该发送或丢弃光分组信号。
    • 8. 发明申请
    • OPTICAL PACKET SWITCHING SYSTEM AND OPTICAL PACKET TRANSMITTER DEVICE
    • 光学分组开关系统和光学分组传输器件
    • US20120201538A1
    • 2012-08-09
    • US13368109
    • 2012-02-07
    • Kimio UekamaShota Mori
    • Kimio UekamaShota Mori
    • H04J14/02H04L12/56
    • H04Q11/0005H04L45/62H04Q11/0066H04Q2011/0016H04Q2011/0039
    • An optical packet transmitter device includes: a detection unit for detecting packet-length information and priority information from a received Ether signal; a setting unit for setting, according to the degree of priority, a division factor by which the Ether signal is divided and a wavelength used for an optical packet signal to be transmitted; a header generation unit for generating a header containing destination information, the packet-length information, the priority information, and information of wavelength in use of the Ether signal; a transmission processing unit for dividing the Ether signal according to the set division factor and generating a plurality of packet signals; a header insertion unit for inserting the generated header in at least one packet signal; and an electrical/optical converter unit for converting the plurality of packet signals into optical packet signals of a plurality of wavelengths according to the set wavelength in use.
    • 光分组发送装置包括:检测单元,用于从接收到的以太信号中检测分组长度信息和优先级信息; 设置单元,根据优先级设定分配以太网信号的分割因子和用于要发送的光分组信号的波长; 标题生成单元,用于生成包含目的地信息的报头,分组长度信息,优先级信息和使用以太信号的波长信息; 发送处理单元,用于根据所设置的分频因子分配以太信号,并产生多个分组信号; 标题插入单元,用于将生成的标题插入到至少一个分组信号中; 以及电/光转换器单元,用于根据所使用的设定波长将多个分组信号转换成多个波长的光分组信号。
    • 10. 发明授权
    • Order wire device having function for reducing noise in communication
system having a plurality of order wire devices
    • 具有用于降低具有多个订单线装置的通信系统中的噪声的功能的订购线装置
    • US5347565A
    • 1994-09-13
    • US894367
    • 1992-06-04
    • Kimio Uekama
    • Kimio Uekama
    • H04M3/00H04M1/74H04M19/02H04M1/24G05B23/02H04J3/06H04M1/00
    • H04M1/74H04M19/02
    • An order wire device in a communication system having a plurality of order wire devices, signals output from each of the order wire devices being serially transmitted to remaining order wire devices, each of the order wire devices being capable of simultaneously calling remaining order wire devices in an all station calling mode. The order wire device includes, a tone ringer circuit for outputting a ring-back-tone signal, a first detection circuit for detecting a request for a call in the all station calling mode, a first control circuit for activating the tone ringer circuit when the first detection circuit detects the request, a second control circuit for inactivating the tone ringer circuit when an off-hook operation is carried out in response to the request, a signal output circuit for outputting a stop signal when the first detection circuit detects the request and the off-hook operation is carried out, a second detection circuit for detecting a stop signal output from an order wire device in which the off-hook operation has been carried out, and a third control circuit for inactivating the tone ringer circuit when the first detection circuit detects the requirement and the second detection circuit detects the stop signal.
    • 在具有多个订单线装置的通信系统中的订单线装置,从每个订单线装置输出的信号被串行发送到剩余订单线装置,每个订单线装置能够同时调用剩余订单线装置 全站呼叫模式。 有线装置包括:用于输出回铃音信号的铃音电路,用于在全站呼叫模式中检测呼叫请求的第一检测电路;第一控制电路,用于当音调振铃电路 第一检测电路检测该请求,当响应于该请求执行摘机操作时,用于使该铃音电路失灵的第二控制电路;当第一检测电路检测到请求时输出停止信号的信号输出电路;以及 执行摘机操作,用于检测从执行了摘机操作的订单线装置输出的停止信号的第二检测电路和用于当第一 检测电路检测要求,第二检测电路检测停止信号。