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    • 51. 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。
    • 52. 发明授权
    • Time division duplexing remote station having low-noise amplifier shared for uplink and downlink operations and wired relay method using the same
    • 具有用于上行和下行操作共享的低噪声放大器的时分复用远程站和使用其的有线中继方法
    • US08059963B2
    • 2011-11-15
    • US12105499
    • 2008-04-18
    • Sang-Ho KimYun-Je OhSeong-Taek HwangHan-Lim LeeKi-Uk Song
    • Sang-Ho KimYun-Je OhSeong-Taek HwangHan-Lim LeeKi-Uk Song
    • H04B10/00
    • H04B10/25753H04W4/18H04W88/04
    • A wired relay method for using a remote station and an apparatus thereof for a Radio over Fiber (RoF) wired relay system supporting a Time Division Duplexing (TDD) wireless communication service, which shares an Low-Noise Amplifier (LNA) for both uplink and downlink operations. The remote station includes a block for dividing each of a downlink optical signal carrying service data and an optical signal carrying transmission/reception control information of the RoF wired relay system, which are input from a base station, a gain controller for separating an uplink Radio Frequency (RF) signal input from an antenna or a portion of a downlink RF signal output from a High-Power Amplifier (HPA) and for monitoring the strength of the input and output RF signals in order to control a gain of the LNA. A converter mutually converts an optical signal and an RF signal, an amplifier amplifies the converted RF signal, and an RF signal flow controller automatically controls uplink and downlink transmission paths of the amplified RF signal according to a transmission/reception status of the RoF wired relay system.
    • 一种用于使用远程站的有线中继方法及其装置,用于支持时分双工(TDD)无线通信业务的无线电光纤(RoF)有线中继系统,该无线通信业务共享用于上行链路和/或上行链路的低噪声放大器(LNA) 下行操作。 远程站包括:用于分配来自基站输入的携带服务数据的下行链路光信号和携带RoF有线中继系统的发送/接收控制信息的光信号的块,用于分离上行链路无线电的增益控制器 从天线输入的频率(RF)信号或从大功率放大器(HPA)输出的下行链路RF信号的一部分输入,并用于监视输入和输出RF信号的强度,以便控制LNA的增益。 A转换器相互转换光信号和RF信号,放大器放大转换的RF信号,RF信号流控制器根据RoF有线继电器的发送/接收状态自动控制放大的RF信号的上行链路和下行链路传输路径 系统。
    • 55. 发明授权
    • Wavelength division multiplexing light source apparatus using semiconductor optical amplifier
    • 使用半导体光放大器的波分复用光源装置
    • US07269352B2
    • 2007-09-11
    • US10688568
    • 2003-10-17
    • Dae-Kwang JungYun-Je OhSeong-Taek Hwang
    • Dae-Kwang JungYun-Je OhSeong-Taek Hwang
    • H04J14/02
    • H04J14/02
    • A WDM (Wavelength Division Multiplexing) light source apparatus using a SOA (Semiconductor Optical Amplifier) is disclosed. The WDM light source apparatus includes N SOAs, a 1×N multiplexer/demultiplexer, and a reflective mirror. The N SOAs have one end coated with a substance of a first reflection factor and the other end coated with a substance of a second reflection factor, directly modulate their input signals into optical signals according to a high-speed data signal to be transmitted, and amplify the modulated signal. The 1×N multiplexer/demultiplexer has one end composed of N terminals and the other end composed of one terminal. The N terminals are coupled with the N SOAs. The reflective mirror having a high reflection factor is connected to one terminal of the 1×N multiplexer/demultiplexer to reflect a signal received from the 1×N multiplexer/demultiplexer.
    • 公开了使用SOA(半导体光放大器)的WDM(波分复用)​​光源装置。 WDM光源装置包括N个SOA,1×N个多路复用器/解复用器和反射镜。 N个SOAs的一端涂有第一反射因子的物质,另一端涂覆有第二反射因子的物质,根据要传输的高速数据信号将其输入信号直接调制成光信号;以及 放大调制信号。 1xN多路复用器/解复用器的一端由N个终端组成,另一端由一个终端组成。 N个终端与N个SOA相连。 具有高反射因数的反射镜连接到1xN多路复用器/解复用器的一个端子,以反映从1xN多路复用器/解复用器接收的信号。
    • 56. 发明申请
    • Multi-wavelength bidirectional optical transceiver having monitors
    • 具有监视器的多波长双向光收发器
    • US20070206953A1
    • 2007-09-06
    • US11701779
    • 2007-02-02
    • Gyu-Woong LeeChang-Sup ShimYun-Je OhSeong-Taek Hwang
    • Gyu-Woong LeeChang-Sup ShimYun-Je OhSeong-Taek Hwang
    • H04B10/00
    • G02B6/4246G02B6/29362G02B6/4249
    • A multi-wavelength bidirectional optical transceiver includes a plurality of optical transmitters for generating and outputting forward optical signals, a plurality of optical receivers for performing optoelectric conversion on reverse optical signals, a band splitter for outputting the forward optical signals that are input from the plurality of optical transmitters to outside the multi-wavelength bidirectional optical transceiver and for outputting reverse optical signals that are input from outside the multi-wavelength bidirectional optical transceiver to the plurality of optical receivers, a power splitter on an optical path between the plurality of optical transmitters and the band splitter for power-splitting the forward optical signals that are input from the plurality of optical transmitters and for outputting portions of the forward optical signals to the band splitter, and a plurality of monitors for performing optoelectric conversion on the remaining portions of the forward optical signals that are input from the band splitter.
    • 多波长双向光收发器包括用于产生和输出正向光信号的多个光发射机,用于在反光信号上执行光电转换的多个光接收机,用于输出从多个光信号输入的正向光信号的分束器 的光发射机到多波长双向光收发器之外并且用于输出从多波长双向光收发器外部输入到多个光接收器的反向光信号;在多个光发射机之间的光路上的功率分配器 以及分束器,用于对从多个光发射机输入的正向光信号进行功率分配,并将前向光信号的一部分输出到分束器;以及多个监视器,用于对其中的剩余部分进行光电转换 向前 从分束器输入的光信号。