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    • 63. 发明申请
    • WIRELESS POWER RECEIVER
    • 无线接收机
    • US20130015813A1
    • 2013-01-17
    • US13548660
    • 2012-07-13
    • Joon-Il KIMSung-Bum ParkSe-Ho ParkYoung-Min LeeWoo-Ram Lee
    • Joon-Il KIMSung-Bum ParkSe-Ho ParkYoung-Min LeeWoo-Ram Lee
    • H02J7/00
    • H02J50/12H02J7/00H02J7/0021H02J7/025H02J7/045H02J50/10H02J2007/0096
    • A wireless power receiver is provided for wirelessly receiving driving power from a wireless power transmitter. The wireless power receiver includes a power reception unit for wirelessly receiving the driving power from the wireless power transmitter. The wireless power receiver also includes a rectifier for rectifying the driving power output from the power reception unit into an Alternating Current (AC) power type. The wireless power receiver additionally includes a load unit for storing the rectified driving power output from the rectifier. The wireless power receiver further includes a controller for detecting an amount of the rectified driving power stored in the load unit to control output from the rectifier to the load unit. The wireless power receiver also includes an impedance adjuster for adjusting an impedance in the power reception unit according to the amount of the rectified driving power stored in the load unit.
    • 提供无线电力接收器用于从无线电力发射器无线地接收驱动电力。 无线电力接收机包括用于从无线电力发射机无线地接收驱动电力的电力接收单元。 无线电力接收器还包括整流器,用于将从受电单元输出的驱动功率整流为交流电(AC)功率型。 无线电力接收器还包括用于存储从整流器输出的整流驱动电力的负载单元。 无线电力接收器还包括用于检测存储在负载单元中的整流驱动功率的量以控制从整流器到负载单元的输出的控制器。 无线电力接收器还包括阻抗调节器,用于根据存储在负载单元中的整流驱动功率的量来调节受电单元中的阻抗。
    • 65. 发明申请
    • APPARATUS AND METHOD FOR TRANSMITTING AND RECEIVING DATA USING VISIBLE LIGHT COMMUNICATION
    • 使用可见光通信发送和接收数据的装置和方法
    • US20110002695A1
    • 2011-01-06
    • US12918950
    • 2009-02-20
    • Jeong-Seok ChoiYun-Je OhDae-Kwang JungHong-Seok ShinKyung-Woo LeeDong-Jae ShinSung-Bum Park
    • Jeong-Seok ChoiYun-Je OhDae-Kwang JungHong-Seok ShinKyung-Woo LeeDong-Jae ShinSung-Bum Park
    • H04B10/00
    • H04B10/116H04B10/1149
    • Provided is an apparatus and method for transmitting and receiving data in a visible light communication system, the apparatus including a visible light communication (VLC) transceiver for converting a visible light signal received from a counterpart into an electrical signal and outputting the electrical signal, by using a light receiving device during a reception operation, and converting an electrical signal containing information into a visible light signal and transmitting the visible light signal to the counterpart, by using a light emitting device during a transmission operation, a VLC controller comprising a visible frame engine (VFE) for generating a visible frame and outputting the visible frame to the VLC transceiver, in which the VFE generates the visible frame for transmission to a counterpart during non-transmission of respective frames for communication at a sender and a receiver in order to provide visibility to a communication link, and a host controller for controlling the VLC controller and transmitting and receiving data to and from the VLC controller.
    • 提供了一种用于在可见光通信系统中发送和接收数据的装置和方法,该装置包括可见光通信(VLC)收发器,用于将从对方接收的可见光信号转换为电信号并输出​​电信号,通过 在接收操作期间使用光接收装置,并且在传输操作期间通过使用发光装置将包含信息的电信号转换成可见光信号并将可见光信号发送到对方,VLC控制器包括可见帧 发动机(VFE),用于产生可见帧并将可见帧输出到VLC收发器,其中VFE在不发送用于在发送器和接收器处通信的各个帧期间产生用于传输到对方的可见帧,以便 提供对通信链路的可见性,以及用于控制的主机控制器 g VLC控制器,并向VLC控制器发送和接收数据。
    • 68. 发明授权
    • Self-healing passive optical network
    • 自愈无源光网络
    • US07359637B2
    • 2008-04-15
    • US10901274
    • 2004-07-28
    • Hyun-Soo KimIn-Kwon KangSung-Bum ParkJae-Hoon Lee
    • Hyun-Soo KimIn-Kwon KangSung-Bum ParkJae-Hoon Lee
    • H04J14/00
    • H04J14/0295H04J14/0226H04J14/0227H04J14/0246H04J14/025H04J14/0282H04J14/0293
    • A self-healing passive optical network is disclosed. The network includes a central office and a remote node connected to the central office through a main optical fiber. The remote node transmits one portion of power of the upstream optical signal, which has been input from each of the optical network units, to the central office, and returning a remaining portion of the power of the upstream optical signal to the optical network unit. The network also includes a plurality of optical network units connected to the remote node through a plurality of distribution optical fibers. Each of the optical network units transmits an upstream optical signal to the remote node through the directly connected distribution optical fiber, and detects abnormality occurrences from a state of the upstream optical signal returning from the remote node.
    • 公开了一种自愈无源光网络。 该网络包括通过主光纤连接到中心局的中心局和远程节点。 远程节点将已经从每个光网络单元输入的上游光信号的一部分功率发送到中心局,并将上游光信号的剩余部分的功率返回到光网络单元。 网络还包括通过多个分配光纤连接到远程节点的多个光网络单元。 每个光网络单元通过直接连接的分配光纤将上行光信号发送到远程节点,并且从从远程节点返回的上行光信号的状态来检测异常发生。
    • 69. 发明申请
    • Bi-directional optical add-drop multiplexer
    • 双向光分插复用器
    • US20060024059A1
    • 2006-02-02
    • US11005206
    • 2004-12-06
    • Sung-Bum ParkKee-Sung Nam,
    • Sung-Bum ParkKee-Sung Nam,
    • H04J14/02
    • H04J14/0213H04J14/0206H04J14/0208H04J14/0216H04J14/0219
    • A bi-directional optical add-drop multiplexer is disclosed. The multiplexer includes at least two couples of optical elements including a wavelength division multiplexer and an optical circulator. Each of the wavelength division multiplexer demultiplexes one of a first WDM optical signal and a second WDM optical signal transmitted in opposite directions through one optical transmission line between nodes of a bi-directional WDM optical communication network, drops an optical signal having a predetermined wavelength from the demultiplexed signals, and adds an optical signal having a predetermined wavelength to the other of the first WDM optical signal and the second WDM optical signal. The optical circulator separates routes for the signals dropped and added by a corresponding wavelength division multiplexer. The bi-directional optical add-drop multiplexer can prevent or reduce degradation of optical signal transmission quality due to crosstalk between an added optical signal and a dropped optical signal.
    • 公开了双向光分插复用器。 多路复用器包括至少两对光学元件,包括波分复用器和光循环器。 每个波分多路复用器通过双向WDM光通信网络的节点之间的一个光传输线,将相对方向上发送的第一WDM光信号和第二WDM光信号中的一个解复用,将具有预定波长的光信号从 解复用的信号,并且将具有预定波长的光信号添加到第一WDM光信号和第二WDM光信号中的另一个。 光环行器分离由相应的波分多路复用器丢弃和添加的信号的路由。 双向光分插复用器可以防止或减少由于添加的光信号与丢弃的光信号之间的串扰导致的光信号传输质量的劣化。