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    • 63. 发明公开
    • COMMUNICATION INTERFACE DEVICE
    • KOMMUNIKATIONSSCHNITTSTELLENVORRICHTUNG
    • EP2670079A4
    • 2017-05-17
    • EP11857406
    • 2011-01-27
    • MITSUBISHI ELECTRIC CORP
    • ENDO SATOSHIKOIZUMI YOSHIAKIHIGUMA TOSHIYASUMUKAI TAKUYA
    • H04L7/04H04L12/64H04L25/02H04L25/05H04L25/49
    • H04L25/0262H04L12/6418H04L25/05H04L25/491
    • A sampler (12) samples a receive signal received via a dedicated communication line (L2). A data transfer rate adjuster (13) measures a data transfer rate based on a number of start bit samples contained in the receive signal. A bit determiner (14) makes a bit determination regarding the receive signal at the data transfer rate measured by the data transfer rate adjuster (13), to thereby acquire serial data contained in the receive signal. A transmitter (11) sends, via the dedicated communication line (L2), a transmit signal containing serial data sent by an MPU. An MPU communicator (10) outputs to the transmitter the serial data sent by the MPU, and outputs to the MPU the serial data acquired by the bit determiner (14). The data transfer rate adjuster (13) adjusts, when the transmitter (11) sends the transmit signal multiple times at different data transfer rates, the data transfer rate based on the receive status of respective response signals thereto.
    • 采样器(12)对经由专用通信线路(L2)接收的接收信号进行采样。 数据传输速率调整器(13)根据包含在接收信号中的开始比特样本的数量来测量数据传输速率。 比特确定器(14)以由数据传送速率调整器(13)测量的数据传送速率对接收信号进行比特确定,从而获取包含在接收信号中的串行数据。 发送器(11)通过专用通信线路(L2)发送包含由MPU发送的串行数据的发送信号。 MPU通信器(10)向发送器输出由MPU发送的串行数据,并且将由位确定器(14)获取的串行数据输出到MPU。 当发送器(11)以不同的数据传送速率多次发送发送信号时,数据传送速率调节器(13)调节基于各个响应信号的接收状态的数据传送速率。
    • 65. 发明公开
    • SYNCHRONIZING TIMING MISMATCH BY DATA DELETION
    • 同步日期
    • EP2274884A1
    • 2011-01-19
    • EP08769458.4
    • 2008-05-12
    • QUALCOMM Incorporated
    • GARUDADRI, HarinathMAJUMDAR, SomdebKASHEF, RouzbehGANAPATHY, Chinnappa, K.
    • H04L25/05H04L7/00G10L19/00
    • H04L7/0016G10L19/005H04L7/0029H04L7/005H04L25/05
    • The rate at which data is provided by one device and the rate at which that data is processed by another device may differ. For example, a transmitting device may transmit data according to a transmit clock while a receiving device that receives the transmitted data may process the data according to a receive clock. If there is a timing mismatch between the transmit and receive clocks, the receiving device may receive data faster or slower than it processes the data. In such a case, there may be errors relating to the processing of the received data. To address timing mismatches such as this, the receiving device may delete data from or insert data into the received data. In conjunction with these operations, the receiving device may modify the received data at or near the insertion point or the deletion point in a manner that mitigates any adverse effect the insertion or deletion may have on a resulting output signal.
    • 一个设备提供数据的速率和另一个设备处理数据的速率可能不同。 例如,发送装置可以根据发送时钟发送数据,而接收发送的数据的接收装置可以根据接收时钟处理数据。 如果在发送和接收时钟之间存在定时不匹配,接收设备可能比处理数据更快或更慢地接收数据。 在这种情况下,可能存在与接收到的数据的处理有关的错误。 为了解决诸如此的定时不匹配,接收设备可以从接收到的数据中删除数据或将数据插入到数据中。 结合这些操作,接收设备可以以减轻插入或删除对结果输出信号可能产生的任何不利影响的方式在插入点或删除点处或附近修改接收到的数据。
    • 70. 发明公开
    • Transmission rate matching apparatus and method thereof for next generation mobile communication system
    • 系统和方法调节传输速率为下一代的移动来乌尼亚桌面系统
    • EP1130838A3
    • 2006-08-30
    • EP01301855.1
    • 2001-02-28
    • LG ELECTRONICS INC.
    • You, Cheol WooSeol, Jee WoongKang, Young Hwan
    • H04L1/00H04L25/05
    • H04L1/0071H04L1/0041H04L1/0067H04L25/05
    • There are disclosed a transmission rate matching apparatus and a method thereof for a next generation mobile communication system. In the conventional technology, when data bit is transmitted from a terminal to a base station, it is transmitted by radio frames, each column of a block interleaver includes biased data bit. Accordingly, in order to solve above-mentioned problem, the transmission rate matching apparatus for the next generation mobile communication system in accordance with the present invention comprises an encoder for performing error-correction-encoding of an input bit column, and generating a code word bit from the error-correction-encoded input bit column, a block interleaver for being inputted the code word bit, storing it as row unit, and outputting it as column unit, a switching unit for performing a switching algorithm for converting an output sequence of the code word bit crossly and outputting them to the block interleaver in order to distribute the biased data bits included in the each column of the block interleaver uniformly when the number of the code word bit of the encoder and the number of the column of the block interleaver are not coprime, a radio frame segment processing unit for generating a radio frame after being inputted the column unit data outputted from the block interleaver, and a transmission rate matching unit for matching the data bits included in the radio frame to a transmission format suitable for a transmission between a terminal and a base station, and transmitting it.