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    • 2. 发明授权
    • Method and apparatus for time synchronization using GPS information in communication system
    • 在通信系统中使用GPS信息进行时间同步的方法和装置
    • US08116405B2
    • 2012-02-14
    • US12104662
    • 2008-04-17
    • Jae-Hun ChoByung-Duck ChoYun-Je OhSeong-Taek Hwang
    • Jae-Hun ChoByung-Duck ChoYun-Je OhSeong-Taek Hwang
    • H03K9/00H04L27/00
    • H04J3/0697G04R20/06H04J3/0644H04J3/0664H04J3/0667
    • A method and apparatus for time synchronization (TS) method using GPS information in a communication system synchronizing the time of slave nodes, which do not have a GPS receiver, by using GPS information of a node having a GPS receiver. The method includes the steps of extracting 1PPS, TOD, 1PPS_en, and clocks using GPS signals by a grand master node having a GPS receiver, stabilizing the signals, generating a sync message for TS, and transmitting the sync message to a slave node; receiving the sync message by the slave node and conducting a TS operation using OFCC synchronization technology extracting 1PPS, TOD, and 1PPS_en signals using the modified TOD information by the block and delivering to a stabilization block of the slave node for stabilization; and redelivering to the TS block to update TOD information and generate a sync message for TS of a second slave node.
    • 通过使用具有GPS接收机的节点的GPS信息,在通信系统中使用GPS信息来同步没有GPS接收机的从节点的时间的时间同步(TS)方法和方法。 该方法包括以下步骤:通过具有GPS接收机的大主节点提取1PPS,TOD,1PPS_en和使​​用GPS信号的时钟,稳定信号,产生用于TS的同步消息,并将同步消息发送到从节点; 由所述从节点接收同步消息,并且使用OFCC同步技术进行TS操作,所述同步技术使用所述块的修改的TOD信息提取1PPS,TOD和1PPS_en信号,并将其传送到所述从节点的稳定块以进行稳定; 并且重新发送到TS块以更新TOD信息并且生成用于第二从节点的TS的同步消息。
    • 7. 发明申请
    • Bridged portable internet system and method for processing signal thereof
    • 桥接便携式互联网系统及其信号处理方法
    • US20080002625A1
    • 2008-01-03
    • US11644575
    • 2006-12-22
    • Jae-Hun ChoSeong-Taek HwangJong-Ho YoonYun-Je OhHoon KimHan-Kyun Jung
    • Jae-Hun ChoSeong-Taek HwangJong-Ho YoonYun-Je OhHoon KimHan-Kyun Jung
    • H04Q7/00
    • H04W8/26H04W4/00H04W8/005H04W40/246H04W40/36H04W80/04H04W88/08
    • Disclosed is a bridged portable internet system, which includes: a plurality of edge bridges entirely connected as a mesh structure to form a core network, and configured as a layer 2 switch; a plurality of Radio Access Stations (RASs) connected to one of the plurality of edge bridges to provide portable internet services to Mobile Nodes (MNs) within the range of services; and a Neighbor Discovery Server (NDS) for supporting neighbor discovery of components in the network and storing and managing configuration information of the components, wherein each of the plurality of edge bridges maintains an optimal path through a predetermined routing protocol, identifies the destination of a Media Access Control (MAC) frame transmitted by an MN connected to an edge bridge itself through a corresponding RAS by referring to the configuration information from the NDS so as to transmit a corresponding MAC frame to the MAC address of an edge bridge to which a corresponding CN is connected by performing MAC in MAC encapsulation if receiving a MAC in MAC encapsulated frame with its own MAC address as a destination, and performs MAC in MAC encapsulation with the frame to delete an outer MAC address and to transmit an original MAC frame to a corresponding MN.
    • 公开了一种桥接便携式互联网系统,其包括:多个边缘网桥,其完全连接为网状结构以形成核心网络,并且被配置为层2交换机; 连接到所述多个边缘网桥之一的多个无线电接入站(RAS),以向所述服务范围内的移动节点(MN)提供便携式因特网服务; 和邻居发现服务器(NDS),用于支持网络中组件的邻居发现,并存储和管理组件的配置信息,其中多个边缘网桥中的每一个维护通过预定路由协议的最佳路径,识别一个 通过参考来自NDS的配置信息,通过相应的RAS连接到边缘网桥本身的MN发送的媒体访问控制(MAC)帧,以便将相应的MAC帧发送到对应的边缘网桥的MAC地址, 如果以MAC自身的MAC地址为目的地的MAC封装帧中接收到MAC,则MAC通过MAC封装进行MAC连接,并且利用该MAC进行MAC封装,以删除外部MAC地址并将原始MAC帧发送到 相应的MN。
    • 9. 发明授权
    • Duobinary optical transmission device using at least one semiconductor optical amplifier
    • 使用至少一个半导体光放大器的二元光传输装置
    • US07474858B2
    • 2009-01-06
    • US10849070
    • 2004-05-19
    • Han-Lim LeeGyu-Woong LeeYun-Je OhSeong-Taek Hwang
    • Han-Lim LeeGyu-Woong LeeYun-Je OhSeong-Taek Hwang
    • H04B10/00
    • H04B10/505H04B10/5055H04B10/508
    • A duobinary optical transmission device provides duobinary optical transmission with improved quality by a technique that does not require an electrical low pass filter LPF.A duobinary optical transmission device includes at least one semiconductor optical amplifier (SOA). A light source outputs a carrier wave as an optical signal. A precoder encodes an input of a non-return-to-zero (NRZ) electrical signal. An interferometer type semiconductor optical amplification unit modulates the carrier wave according to a change of an applied bias current coupled to the encoded signal. An optical band pass filter (OBPF) receives the phase-modulated optical signal from the semiconductor optical amplification unit, filters the received phase-modulated optical signal according to a designated band, and outputs an optical duobinary signal.
    • 双二进制光传输装置通过不需要电气低通滤波器LPF的技术提供具有改进质量的双向光传输。双二进制光传输装置包括至少一个半导体光放大器(SOA)。 光源输出载波作为光信号。 预编码器对不归零(NRZ)电信号的输入进行编码。 干涉仪型半导体光放大单元根据耦合到编码信号的施加的偏置电流的变化来调制载波。 光带通滤波器(OBPF)从半导体光放大单元接收相位调制光信号,根据指定频带对接收的相位调制光信号进行滤波,并输出光双二进制信号。