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    • 1. 发明授权
    • Bit-rate-independent optical receiver
    • 比特率独立光接收机
    • US06931210B2
    • 2005-08-16
    • US09946211
    • 2001-09-05
    • Sang-Ho KimSeong-Taek HwangJun-Ho KohYun-Je Oh
    • Sang-Ho KimSeong-Taek HwangJun-Ho KohYun-Je Oh
    • H04B10/40H04B10/07H04B10/50H04B10/60H04B10/66H04L7/02H04B10/00H04B10/08H04B10/12H04B10/16H04B10/20
    • H04B10/6932
    • Disclosed is a bit-rate-independent optical receiver including: a bit rate sensing unit for optoelectrically converting an input optical signal, while outputting a bit rate sensing signal; a variation sensing unit for outputting a bit rate variation sensing signal; a temperature sensing unit for sensing an internal temperature and outputting a temperature sensing signal; a signal reproducing unit for reproducing data and clocks, and in response to a clock correction signal, reproducing the data and clocks based on the clock correction signal; and, a control unit for calculating the bit rate based on the voltage level of the bit rate sensing signal in response to receiving the variation sensing signal, and compensating the calculated bit rate for errors resulting from a variation in temperature, and outputting a clock correction signal indicative of the temperature-compensated bit rate to the signal reproducing unit.
    • 公开了一种比特率独立的光接收机,包括:比特率感测单元,用于在输出比特率感测信号的同时对输入的光信号进行光电转换; 用于输出比特率变化感测信号的变化感测单元; 温度感测单元,用于感测内部温度并输出温度感测信号; 信号再现单元,用于再现数据和时钟,并响应于时钟校正信号,基于时钟校正信号再现数据和时钟; 以及控制单元,用于响应于接收到变化感测信号而基于比特率感测信号的电压电平计算比特率,并且补偿由于温度变化导致的错误的计算比特率,并输出时钟校正 指示信号再现单元的温度补偿比特率的信号。
    • 3. 发明授权
    • Self-healing apparatus and method of optical receiver
    • US07039327B2
    • 2006-05-02
    • US09945895
    • 2001-09-04
    • Sang-Ho KimYun-Je OhSeong-Taek HwangJun-Ho Koh
    • Sang-Ho KimYun-Je OhSeong-Taek HwangJun-Ho Koh
    • H04B10/00H04B10/06H03K11/00H04L25/60H04L25/64
    • H04B10/6932H04Q11/0003H04Q2011/0043H04Q2011/0049
    • Disclosed is a self-healing apparatus and method of an optical receiver that is capable of avoiding error due to temperature variation in the optical receiver when determining the bit rate. The apparatus includes an optoelectric converting unit for converting an input optical signal into an electrical signal; an amplifying unit for amplifying the electrical signal outputted from the optoelectric converting unit; a bit rate discriminating unit for exclusively OR'ing the electrical signal with a delay signal that is delayed from the amplified receiving signal by a predetermined time, thereby outputting a recognition signal; a clock/data reproducing unit for receiving the electrical signal, and for reproducing clocks and data based on a reference clock; a bit rate signal generating unit for generating the reference clock in response to a bit rate change signal; a temperature sensing unit for outputting a temperature sensing signal that is indicative of the internal temperature of the optical receiver; and, a control unit for determining the bit rate of the receiving signal based on a value selected from temperature-dependent voltage level variation values that are previously stored, on the basis of the voltage level of the recognition signal outputted from the bit rate discriminating unit and the internal temperature of the optical receiver corresponding to the temperature sensing signal, and for outputting the bit rate change signal based on the determined bit rate.
    • 4. 发明申请
    • Wavelength-division multiplexing-passive optical network
    • 波分复用 - 无源光网络
    • US20060153567A1
    • 2006-07-13
    • US11195436
    • 2005-08-02
    • Sang-Ho KimChang-Sup ShimYun-Je OhSeong-Taek Hwang
    • Sang-Ho KimChang-Sup ShimYun-Je OhSeong-Taek Hwang
    • H04J14/00
    • H04J14/0297H04J14/02H04J14/0226H04J14/0227H04J14/0232H04J14/0246H04J14/025H04J14/0282H04J14/0294
    • Disclosed is a wavelength-division multiplexing-passive optical network having a central office including a plurality of first working and protection transmit/receive modules, working and protection optical transmitters, and a plurality of first optical switches, the first working and protection transmit/receive modules generating downstream optical signals and detecting upstream optical signals having corresponding wavelengths, the working and protection optical transmitters generating broadcasting optical signals, the first optical switches performing a switching operation when faults occur, a plurality of subscriber units for receiving broadcasting optical signals and downstream optical signals having corresponding wavelengths and generating upstream optical signals, the subscriber units including second optical switches, a remote node including working and protection optical splitters for dividing intensity of the broadcasting optical signals, the remote node being positioned between the subscriber units and the central office, working and protection main optical fibers for linking the central office with the remote node; and a plurality of working and protection branch optical fibers for linking the remote node with the subscriber units, respectively.
    • 公开了一种波分复用无源光网络,其具有包括多个第一工作和保护发射/接收模块的中心局,工作和保护光发射机以及多个第一光开关,第一工作和保护发射/接收 产生下行光信号的模块和检测具有相应波长的上行光信号,工作和保护光发射机产生广播光信号,第一光开关在发生故障时执行切换操作;多个用户单元,用于接收广播光信号和下行光信号 具有相应波长并产生上行光信号的信号,用户单元包括第二光开关,包括工作和保护光分路器的远程节点,用于分割广播光信号的强度,远端节点位于 用户单元和中心局,工作和保护主光纤,用于将中心局与远程节点连接起来; 以及分别用于将远程节点与用户单元连接的多个工作和保护分支光纤。
    • 6. 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。
    • 9. 发明授权
    • RoF system providing HD wireless communication service and signal control method for the same
    • RoF系统提供高清无线通信服务和信号控制方法相同
    • US08417116B2
    • 2013-04-09
    • US12074999
    • 2008-03-06
    • Sang-Ho KimSeong-Taek HwangYun-Je OhByung-Jik Kim
    • Sang-Ho KimSeong-Taek HwangYun-Je OhByung-Jik Kim
    • H04B10/00H04B10/24
    • H04B10/25758
    • Disclosed is an RoF system providing an HD wireless communication service. The RoF system includes the base station for transmitting and receiving each of the TDD/FDD individual signals and TDD/FDD combined signals, channel-combining downstream signals for a TDD scheme with downstream signals for an FDD scheme, and generating TDD/FDD mode control signals; a base station donor for receiving downstream RF signals from the base station, converting the resultant signals into downstream optical signals, outputting the converted signals, and delivering upstream optical signals, which are input to the remote station from the wireless terminals, to the base station; and the remote station for switching a corresponding duplexing mode operation according to wireless service channel states of the wireless terminals, converting the downstream optical signals transmitted from the base station donor into service RF signals, amplifying the converted service RF signals, and providing the amplified service RF signals to the wireless terminals through antennas.
    • 公开了提供HD无线通信服务的RoF系统。 RoF系统包括用于发送和接收每个TDD / FDD单独信号和TDD / FDD组合信号的基站,用于TDD方案的下行信号与用于FDD方案的下行信号的信道合并,以及生成TDD / FDD模式控制 信号; 用于从基站接收下行RF信号的基站施加器,将所得到的信号转换成下行光信号,输出转换的信号,以及将从远端站输入的上行光信号从无线终端传送到基站 ; 以及远程站,用于根据无线终端的无线服务信道状态切换相应的双工模式操作,将从基站捐赠者发送的下行光信号转换成服务RF信号,放大转换后的服务RF信号,并提供放大服务 RF信号通过天线到无线终端。
    • 10. 发明申请
    • TIME DIVISION DUPLEXING REMOTE STATION HAVING LOW-NOISE AMPLIFIER SHARED FOR UPLINK AND DOWNLINK OPERATIONS AND WIRED RELAY METHOD USING THE SAME
    • 具有用于上下和下行操作的低噪声放大器的时分双工远程站和使用其的有线继电器方法
    • US20080260388A1
    • 2008-10-23
    • 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
    • H04B10/00H04J3/00
    • 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 controlls 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。