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    • 5. 发明授权
    • Optical passive network system and its operation method
    • 光无源网络系统及其运行方式
    • US08428457B2
    • 2013-04-23
    • US12767750
    • 2010-04-26
    • Masahiko MizutaniYusuke YajimaAkihiko Tsuchiya
    • Masahiko MizutaniYusuke YajimaAkihiko Tsuchiya
    • H04J14/00H04B10/06H04B10/20
    • H04Q11/0067H04B10/272H04J3/0682H04J3/1694H04J14/0247H04J14/0252H04Q2011/0079H04Q2011/009
    • In the configuration of an optical communication system interconnecting a parent station and a plurality of child stations via an optical fiber network equipped with an optical splitter, RE is provided having a measuring unit for measuring a transmission distance or time to a child station, a determining unit for determining a timing when a child station transmits a signal, in accordance with a transmission bandwidth request from the child station, and a signal processing unit for processing a signal received from a child station and transmitting the processed signal to the parent station. When a burst signal is received from each child station at the determined timing, a portion of the header of the burst signal is deleted, and a dummy signal is inserted into the deleted area and a gap area between received burst signals to convert the burst signals into a series of signals to be sent to the parent station.
    • 在通过配备有分光器的光纤网络将母站和多个子站互连的光通信系统的配置中,提供具有用于测量到子站的传输距离或时间的测量单元的确定 单元,用于根据来自子站的传输带宽请求确定子站发送信号的定时;以及信号处理单元,用于处理从子站接收的信号,并将处理的信号发送到母站。 当在所确定的定时从每个子站接收到突发信号时,突发信号的头部的一部分被删除,并且将虚拟信号插入到被删除的区域中,以及接收的突发信号之间的间隙区域以转换突发信号 成为一系列要发送给母站的信号。
    • 6. 发明申请
    • OPTICAL PASSIVE NETWORK SYSTEM AND ITS OPERATION METHOD
    • 光无源网络系统及其操作方法
    • US20100272436A1
    • 2010-10-28
    • US12767750
    • 2010-04-26
    • Masahiko MizutaniYusuke YajimaAkihiko Tsuchiya
    • Masahiko MizutaniYusuke YajimaAkihiko Tsuchiya
    • H04B17/02
    • H04Q11/0067H04B10/272H04J3/0682H04J3/1694H04J14/0247H04J14/0252H04Q2011/0079H04Q2011/009
    • In the configuration of an optical communication system interconnecting a parent station and a plurality of child stations via an optical fiber network equipped with an optical splitter, RE is provided having a measuring unit for measuring a transmission distance or time to a child station, a determining unit for determining a timing when a child station transmits a signal, in accordance with a transmission bandwidth request from the child station, and a signal processing unit for processing a signal received from a child station and transmitting the processed signal to the parent station. When a burst signal is received from each child station at the determined timing, a portion of the header of the burst signal is deleted, and a dummy signal is inserted into the deleted area and a gap area between received burst signals to convert the burst signals into a series of signals to be sent to the parent station.
    • 在通过配备有分光器的光纤网络将母站和多个子站互连的光通信系统的配置中,提供具有用于测量到子站的传输距离或时间的测量单元的确定 单元,用于根据来自子站的传输带宽请求确定子站发送信号的定时;以及信号处理单元,用于处理从子站接收的信号,并将处理的信号发送到母站。 当在所确定的定时从每个子站接收到突发信号时,突发信号的头部的一部分被删除,并且将虚拟信号插入到被删除的区域中,以及接收的突发信号之间的间隙区域以转换突发信号 成为一系列要发送给母站的信号。
    • 9. 发明授权
    • Passive optical network system and fault determination method
    • 无源光网络系统和故障确定方法
    • US08254780B2
    • 2012-08-28
    • US12379634
    • 2009-02-26
    • Masahiko MizutaniYusuke YajimaYoshihiro Ashi
    • Masahiko MizutaniYusuke YajimaYoshihiro Ashi
    • H04B10/00
    • H04B10/03H04B10/07955H04B10/272H04L25/0298H04Q11/0067H04Q2011/0081H04Q2011/0083
    • In a passive optical network system, a parent station includes a reception circuit that receives an optical signal from each of child stations using a threshold used to identify if the optical signal is 0 or 1; a bandwidth setting unit that determines a time at which each child station sends an optical signal; a storage unit that stores thresholds and intensities of optical signals received from the child stations; and a control unit that sets a threshold, stored corresponding to a sending time, in the reception circuit to control a reception of an optical signal. The control unit has a function that compares an intensity of a signal received from each child station at an optical signal reception time with information stored in the storage unit to detect and determine a fault in the child station or in the optical fiber connected to the child station.
    • 在无源光网络系统中,母站包括接收电路,其使用用于识别光信号是0或1的阈值从每个子站接收光信号; 带宽设定单元,确定每个子站发送光信号的时间; 存储单元,其存储从所述子站接收的光信号的阈值和强度; 以及控制单元,其在接收电路中设置对应于发送时间存储的阈值,以控制光信号的接收。 控制单元具有将在光信号接收时刻从每个子站接收的信号的强度与存储在存储单元中的信息进行比较的功能,以检测和确定子站中或连接到该小孩的光纤中的故障 站。
    • 10. 发明授权
    • Communication system, subscriber accommodating apparatus and communication method
    • 通信系统,用户收纳设备和通信方法
    • US08554075B2
    • 2013-10-08
    • US13144253
    • 2009-01-13
    • Masahiko MizutaniYusuke YajimaNobuyuki YamamotoYoshihiro Ashi
    • Masahiko MizutaniYusuke YajimaNobuyuki YamamotoYoshihiro Ashi
    • H04J14/00H04J14/02
    • H04J14/0227H04L43/0817H04L43/0852H04L45/22H04L45/28H04Q11/0067H04Q2011/0081
    • Switching process at the occurrence of a path trouble is performed more quickly to reduce the number of packet discards during a traffic transition from a currently used system path to a standby system path within a section to be protected. An OLT (210-W) refers to the DBA information of a PON section and, if receiving no CCM frame at a timing at which the same should be received, then determines that some trouble has occurred on the path (S801) and transmits, to an OAM-compliant NE (200-Z), an application-for-switching frame (1501) to notify the OAM-compliant NE (200-Z) of the abnormal condition. The OAM-compliant NE (200-Z) monitors the occurrence of the trouble within the PON section nearly in real time, starts a switching process (S802) and generates and transmits a standby-system delivery request (321) (S302, S803). An OAM-compliant NE (200-A) switches the communication path to the standby-system passing through an OLT (210-P).
    • 在发生路径故障时的切换过程被执行得更快以减少从当前使用的系统路径到要保护的区段内的备用系统路径的业务转换期间的丢弃丢弃数量。 OLT(210-W)是指PON部分的DBA信息,并且如果在接收相同的定时不接收到CCM帧,则确定在路径上发生了一些故障(S801) 到符合OAM的NE(200-Z),用于切换交换帧(1501)的OAM兼容NE(200-Z)通知异常状态。 符合OAM标准的NE(200-Z)几乎实时监控PON部分内的故障发生,开始切换处理(S802),生成并发送备用系统传送请求(321)(S302,S803) 。 符合OAM标准的网元(200-A)将通信路径切换到通过OLT(210-P)的备用系统。