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    • 2. 发明授权
    • Bandwidth-allocating device and method
    • 带宽分配装置及方法
    • US08259751B2
    • 2012-09-04
    • US12037538
    • 2008-02-26
    • Ying ShiHiroki IkedaHideya Yoshiuchi
    • Ying ShiHiroki IkedaHideya Yoshiuchi
    • H04J3/16
    • H04Q11/0067H04Q11/0071H04Q2011/0064H04Q2011/0084H04Q2011/0088H04W8/26H04W28/18H04W72/04
    • In the bandwidth-allocating method of the present invention for PON (: Passive Optical Network), a bandwidth is allocated from an optical line terminal to each optical network unit. The optical line terminal stores a bandwidth contract table for indicating a correspondence relationship between communication flow IDs and service quality parameters, each communication flow ID identifying each communication flow between the optical line terminal and each optical network unit. The bandwidth-allocating method includes a step of transmitting a service-quality request message including the communication flow IDs and the service quality parameters from each optical network unit to the optical line terminal, and a step of the optical line terminal's updating the bandwidth contract table based on the service quality parameters, and performing the bandwidth allocation to a communication flow specified by the corresponding communication flow ID based on the bandwidth contract table.
    • 在本发明的PON(无源光网络)的带宽分配方法中,从光线路终端向各光网络单元分配带宽。 光线路终端存储用于指示通信流ID和服务质量参数之间的对应关系的带宽合同表,每个通信流ID标识光线路终端和每个光网络单元之间的每个通信流。 带宽分配方法包括从每个光网络单元向光线路终端发送包括通信流ID和服务质量参数的服务质量请求消息的步骤,以及光线路终端更新带宽合同表的步骤 基于服务质量参数,并且基于带宽合同表对由相应的通信流ID指定的通信流执行带宽分配。
    • 3. 发明申请
    • OPTICAL LINE TERMINAL AND OPTICAL LINE TRANSMISSION AND RECEPTION SYSTEM
    • 光线终端和光线传输和接收系统
    • US20100129072A1
    • 2010-05-27
    • US12620876
    • 2009-11-18
    • Hideya YOSHIUCHIHiroki IkedaYing Shi
    • Hideya YOSHIUCHIHiroki IkedaYing Shi
    • H04B10/08
    • H04J3/1694H04B10/6911
    • An optical line terminal includes an optical network interface having an optical receiver unit to convert an optical signal received from an optical network unit into an electrical signal and output a direct current bias monitoring signal and an error code detector to detect an error code in the electrical signal to output an error code indication signal, a storage to store therein a direct current bias table indicating a direct current bias corresponding to a direct current bias control parameter of the optical network units and a dynamic band allocation information table indicating communication time slot information allotted to each optical network unit and a control unit to receive the direct current bias monitoring signal and the error code indication signal and supply the direct current bias control signal to the optical receiver unit to thereby form one feedback circuit together with the optical network interface.
    • 光线路终端包括光网络接口,其具有光接收单元,用于将从光网络单元接收的光信号转换为电信号并输出​​直流偏置监视信号,并且错误代码检测器检测电气中的错误代码 信号以输出错误代码指示信号,存储器存储指示对应于光网络单元的直流偏置控制参数的直流偏置的直流偏置表和指示分配的通信时隙信息的动态频带分配信息表 到每个光网络单元和控制单元,以接收直流偏置监视信号和错误代码指示信号,并将直流偏置控制信号提供给光接收器单元,从而与光网络接口一起形成一个反馈电路。
    • 4. 发明授权
    • Optical line terminal and optical line transmission and reception system
    • 光线路终端和光线路传输和接收系统
    • US08374501B2
    • 2013-02-12
    • US12620876
    • 2009-11-18
    • Hideya YoshiuchiHiroki IkedaYing Shi
    • Hideya YoshiuchiHiroki IkedaYing Shi
    • H04B10/08H04B10/06H04J14/00
    • H04J3/1694H04B10/6911
    • An optical line terminal includes an optical network interface having an optical receiver unit to convert an optical signal received from an optical network unit into an electrical signal and output a direct current bias monitoring signal and an error code detector to detect an error code in the electrical signal to output an error code indication signal, a storage to store therein a direct current bias table indicating a direct current bias corresponding to a direct current bias control parameter of the optical network units and a dynamic band allocation information table indicating communication time slot information allotted to each optical network unit and a control unit to receive the direct current bias monitoring signal and the error code indication signal and supply the direct current bias control signal to the optical receiver unit to thereby form one feedback circuit together with the optical network interface.
    • 光线路终端包括光网络接口,其具有光接收单元,用于将从光网络单元接收的光信号转换为电信号并输出​​直流偏置监视信号,并且错误代码检测器检测电气中的错误代码 信号以输出错误代码指示信号,存储器存储指示对应于光网络单元的直流偏置控制参数的直流偏置的直流偏置表和指示分配的通信时隙信息的动态频带分配信息表 到每个光网络单元和控制单元,以接收直流偏置监视信号和错误代码指示信号,并将直流偏置控制信号提供给光接收器单元,从而与光网络接口一起形成一个反馈电路。
    • 6. 发明申请
    • BANDWIDTH-ALLOCATING DEVICE AND METHOD
    • 带宽分配设备和方法
    • US20080205443A1
    • 2008-08-28
    • US12037538
    • 2008-02-26
    • Ying SHIHiroki IkedaHideya Yoshiuchi
    • Ying SHIHiroki IkedaHideya Yoshiuchi
    • H04J3/16
    • H04Q11/0067H04Q11/0071H04Q2011/0064H04Q2011/0084H04Q2011/0088H04W8/26H04W28/18H04W72/04
    • In the bandwidth-allocating method of the present invention for PON (: Passive Optical Network), a bandwidth is allocated from an optical line terminal to each optical network unit. The optical line terminal stores a bandwidth contract table for indicating a correspondence relationship between communication flow IDs and service quality parameters, each communication flow ID identifying each communication flow between the optical line terminal and each optical network unit. The bandwidth-allocating method includes a step of transmitting a service-quality request message including the communication flow IDs and the service quality parameters from each optical network unit to the optical line terminal, and a step of the optical line terminal's updating the bandwidth contract table based on the service quality parameters, and performing the bandwidth allocation to a communication flow specified by the corresponding communication flow ID based on the bandwidth contract table.
    • 在本发明的PON(无源光网络)的带宽分配方法中,从光线路终端向各光网络单元分配带宽。 光线路终端存储用于指示通信流ID和服务质量参数之间的对应关系的带宽合同表,每个通信流ID标识光线路终端和每个光网络单元之间的每个通信流。 带宽分配方法包括从每个光网络单元向光线路终端发送包括通信流ID和服务质量参数的服务质量请求消息的步骤,以及光线路终端更新带宽合同表的步骤 基于服务质量参数,并且基于带宽合同表对由相应的通信流ID指定的通信流执行带宽分配。
    • 7. 发明授权
    • Transimpedance amplifier and PON system
    • 互阻放大器和PON系统
    • US08653433B2
    • 2014-02-18
    • US13145047
    • 2010-01-13
    • Daisuke MashimoHiroki IkedaYoshinobu Morita
    • Daisuke MashimoHiroki IkedaYoshinobu Morita
    • H03G3/20
    • H03F3/087H03F1/083H03G3/3084H04B10/272H04B10/6931
    • In a gain-switching-type transimpedance amplifier, in order to provide a technique capable of preventing unnecessary gain switching caused when noise is received, and preventing decrease in sensitivity caused when noise with a large input level is received, and then, a burst signal with a small input level is received, a transimpedance amplifier 5 includes: a pre-amplifier 200 to which the burst signal is inputted; an average detection start determination unit 300 for comparing an output of a pre-amplifier 200 with a first threshold voltage; an average detection circuit 400 for detecting and outputting an average value of the output of the pre-amplifier 200 during a certain period of time from a time point when the output of the pre-amplifier 200 exceeds the first threshold voltage; and a gain switching control unit 500 for determining whether to switch a gain of the pre-amplifier 200 based on an output of the average detection circuit 400.
    • 在增益切换式跨阻放大器中,为了提供能够防止在接收到噪声时引起的不必要的增益切换的技术,并且防止在接收到具有大输入电平的噪声时引起的灵敏度降低,然后,突发信号 在接收到小的输入电平的情况下,跨阻抗放大器5包括:输入突发信号的前置放大器200; 平均检测开始判定单元300,用于将前置放大器200的输出与第一阈值电压进行比较; 平均检测电路400,用于在从前置放大器200的输出超过第一阈值电压的时间点起,在一定时间段内检测并输出前置放大器200的输出的平均值; 以及用于基于平均检测电路400的输出来确定是否切换前置放大器200的增益的增益切换控制单元500。
    • 9. 发明授权
    • Optical access system and optical line terminal
    • 光接入系统和光线路终端
    • US08380065B2
    • 2013-02-19
    • US12582083
    • 2009-10-20
    • Michitaka OkunoKoji WakayamaKenichi SakamotoHiroki Ikeda
    • Michitaka OkunoKoji WakayamaKenichi SakamotoHiroki Ikeda
    • H04J14/00
    • H04Q11/0067H04J2203/0058H04L43/0864H04Q2011/0079H04Q2011/0088
    • Provided is an optical access system comprising: an optical line terminal connected to another network; a plurality of optical network units, each connected to a user terminal; and at least one of an optical switching unit and an optical splitter, which is installed between the optical line terminal and the plurality of optical network units. The optical line terminal allocates a length of time to a discovery phase for detecting the plurality of optical network units, and a length of time to data transmission phases for transferring data from the plurality of optical network units; and changes a ratio of the length of time of the discovery phase to the length of time of the data transmission phases so that the length of time of the discovery phase is shortened in the case where a number of the optical network units that are registered in the optical line terminal increase.
    • 提供一种光接入系统,包括:连接到另一网络的光线路终端; 多个光网络单元,各自连接到用户终端; 以及安装在光线路终端与多个光网络单元之间的光交换单元和分光器中的至少一个。 光线路终端将用于检测多个光网络单元的发现阶段的时间长度分配给从多个光网络单元传送数据的数据传输阶段的时间长度; 并且将发现阶段的时间长度与数据传输阶段的时间长度的比率进行改变,使得在注册的光网络单元的数量的情况下,发现阶段的时间长度被缩短 光线路终端增加。