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    • 51. 发明申请
    • WIRELESS TRANSCEIVER AND RELAY STATION INCLUDING THE WIRELESS TRANSCEIVER
    • 无线收发器和中继站,包括无线收发器
    • WO2009154352A2
    • 2009-12-23
    • PCT/KR2009/002494
    • 2009-05-12
    • LG ELECTRONICS INC.KIM, Byoung Hoon
    • KIM, Byoung Hoon
    • H04B7/14H04B7/02H04B7/155
    • H04B7/15557H04B7/0413H04B7/15542
    • A wireless transceiver and a relay station (RS) including the wireless transceiver, where the wireless transceiver includes multiple antennas; and multiple radio frequency (RF) chain pairs that are connected one-to-one to the antennas and each of which being able to be set to operate on both a downlink frequency and an uplink frequency or to operate only on one of the downlink frequency and the uplink frequency. Each of the RF chain pairs may be able to switch a transmission (Tx) frequency and a reception (Rx) frequency between the downlink frequency and the uplink frequency. For example, each of the RF chain pairs may include a first Tx/Rx band switch that is connected between a local oscillator pair and a mixer pair; and a second Tx/Rx band switch that is connected between an amplifier pair and a duplexer.
    • 一种无线收发器和包括无线收发器的中继站(RS),其中无线收发器包括多个天线; 以及与天线一对一连接的多个射频(RF)链对,每个能够被设置为在下行链路频率和上行链路频率上操作,或仅在下行链路频率之一 和上行频率。 每个RF链对可以能够在下行链路频率和上行链路频率之间切换传输(Tx)频率和接收(Rx)频率。 例如,每个RF链对可以包括连接在本地振荡器对和混频器对之间的第一Tx / Rx频带开关; 以及连接在放大器对和双工器之间的第二Tx / Rx频带开关。
    • 52. 发明申请
    • APPARATUS AND METHOD FOR TRANSMITTING DATA USING TURBO CODE
    • 使用涡轮代码发送数据的装置和方法
    • WO2009145514A2
    • 2009-12-03
    • PCT/KR2009/002604
    • 2009-05-19
    • LG ELECTRONICS INC.KWON, Woo SukLEE, Suk Woo
    • KWON, Woo SukLEE, Suk Woo
    • H03M13/37
    • H03M13/09H04L1/0041H04L1/0071
    • The present invention provides an apparatus for transmitting data using turbo code. The apparatus includes an auxiliary bit adding unit configured to add padding bits to information bits, a convolutional turbo code (CTC) encoder configured to encode the padding bit-added information bits using turbo codes to generate coded data, a padding removing unit configured to remove the padding bits from the coded data, and a transmission processing unit configured to transmit the padding bit-removed coded data. The auxiliary bit adding unit adjusts the length of the padding bits according to a maximum size of an input that can be processed by the CRC encoder, and adds the length-adjusted padding bits to the information bits. Limited radio resources can be effectively used and the efficiency of data transmission can be improved.
    • 本发明提供一种使用turbo码发送数据的装置。 该装置包括配置为向信息比特添加填充比特的辅助比特添加单元,被配置为使用turbo码对填充比特相加信息比特进行编码以生成编码数据的卷积turbo码(CTC)编码器,配置为去除 来自编码数据的填充比特;以及发送处理单元,被配置为发送填补比特去除的编码数据。 辅助比特添加单元根据CRC编码器可以处理的输入的最大大小来调整填充比特的长度,并将长度调整的填充比特相加到信息比特。 可以有效利用有限的无线资源,提高数据传输的效率。
    • 55. 发明申请
    • DIRECT LINK SETUP METHOD IN TUNNELED DIRECT LINK SETUP WIRELESS NETWORK AND STATION SUPPORTING THE METHOD
    • 隧道直连链路建立无线网络直接链路建立方法及支持方法
    • WO2009134066A1
    • 2009-11-05
    • PCT/KR2009/002240
    • 2009-04-29
    • LG ELECTRONICS INC.SEOK, Yong Ho
    • SEOK, Yong Ho
    • H04B7/26H04W76/02
    • H04W76/023H04W28/16H04W76/14
    • Provided are a Tunneled Direct Link Setup (TDLS) establishment method for a TDLS initiator and a station supporting the establishment method. In the establishment method, a requesting Non-AP QSTA transmits a TDLS setup request frame via an access point(AP) to an intended peer Non-AP QSTA. And, the requesting Non-AP QSTA receives a TDLS setup response frame via the AP from the intended peer station in response to the TDLS setup request frame. And, the requesting Non-AP QSTA transmits a TDLS setup confirm frame via the AP to the intended peer station in response to the TDLS setup response frame. And, the requesting Non-AP QSTA receives a TDLS setup acknowledgement frame via the AP from the intended peer station in response to the TDLS setup confirm frame.
    • 提供了一种用于TDLS发起者和支持建立方法的站的隧道直接链路建立(TDLS)建立方法。 在建立方法中,请求的非AP QSTA经由接入点(AP)将TDLS建立请求帧发送到预定的对等体非AP QSTA。 并且,请求的非AP QSTA响应于TDLS建立请求帧,经由AP从目标对等站接收TDLS建立响应帧。 并且,请求的非AP QSTA响应于TDLS建立响应帧,经由AP向目标对等站发送TDLS建立确认帧。 而且,请求的非AP QSTA响应于TDLS建立确认帧,经由来自目标对等站的AP接收TDLS建立确认帧。
    • 60. 发明申请
    • DUAL MODE SATELLITE SIGNAL RECEIVER AND METHOD THEREOF
    • 双模式卫星信号接收器及其方法
    • WO2009107949A2
    • 2009-09-03
    • PCT/KR2009/000835
    • 2009-02-23
    • CORE LOGIC INC.JO, Jun-GiPARK, Seong EonYOO, Changsik
    • JO, Jun-GiPARK, Seong EonYOO, Changsik
    • G01S5/14
    • H03G3/3052G01S19/33G01S19/37H03G7/001
    • A dual mode satellite signal receiver capable of supporting at least two global navigation satellite systems and a satellite signal receiving method are provided. The dual mode satellite signal receiver comprises a frequency synthesizer for generating a local oscillator signal based on a reference frequency; a mixer for mixing the local oscillator signal with a satellite signal and outputting the mixed signal as a signal of an intermediate frequency band; a first filter for filtering the signal output from the mixer to reject an image signal and output only an actual signal; a second filter for filtering the actual signal to output only a predetermined bandwidth according to a positioning mode; and an amplifier for amplifying the second filter output signal to a predetermined level and outputting the amplified signal.
    • 提供了一种能够支持至少两个全球导航卫星系统的双模式卫星信号接收器和一种卫星信号接收方法。 双模式卫星信号接收器包括频率合成器,用于基于参考频率产生本地振荡器信号; 混频器,用于将本地振荡器信号与卫星信号混频并输出混合信号作为中频带的信号; 第一滤波器,用于对从混频器输出的信号进行滤波以抑制图像信号并仅输出实际信号; 第二滤波器,用于根据定位模式对实际信号进行滤波以仅输出预定带宽; 以及放大器,用于将第二滤波器输出信号放大到预定的电平并输出放大的信号。