CENTRALIZATION OF DECODING
    1.
    发明公开

    公开(公告)号:EP3369196A1

    公开(公告)日:2018-09-05

    申请号:EP15787188.0

    申请日:2015-10-28

    IPC分类号: H04L1/00 H04L1/18

    摘要: It is provided a method, comprising predicting if a received coded data block can be successfully decoded by a predetermined decoder adapted to apply a predetermined decoding on the coded data block, wherein the predetermined decoder is comprised in a central device; requesting a retransmission of the coded data block to an apparatus performing the method if it is predicted that the coded data block cannot be decoded by the decoder; forwarding the coded data block and a result of the prediction to the central device without applying the predetermined decoding to the coded data block.

    COMMUNICATION DEVICE AND METHOD FOR SIGNAL DETERMINATION IN RADIO COMMUNICATION
    4.
    发明公开
    COMMUNICATION DEVICE AND METHOD FOR SIGNAL DETERMINATION IN RADIO COMMUNICATION 审中-公开
    通信设备和无线电通信信号确定方法

    公开(公告)号:EP3188398A1

    公开(公告)日:2017-07-05

    申请号:EP16198755.7

    申请日:2016-11-14

    申请人: Intel Corporation

    IPC分类号: H04L1/20 H04L27/00 H04L1/00

    摘要: A mobile communication device is provided that includes a receiver configured to receive a signal. The communication device further includes a calculation circuit configured to determine a cumulant value of an order higher than two of the received signal, to determine a function value of the determined cumulant value and to compare the determined function value with a predefined value. The communication device further includes a decoder configured to decode the received signal. The communication device further includes a target signal detector configured to activate the decoder based on the comparison of the function value with the predefined value.

    摘要翻译: 提供了一种移动通信设备,其包括被配置为接收信号的接收器。 该通信设备还包括计算电路,该计算电路被配置为确定高于接收信号的两个阶的阶数的累积量值,以确定所确定的累积量值的函数值并将所确定的函数值与预定义值进行比较。 通信设备还包括被配置为解码接收到的信号的解码器。 通信设备还包括目标信号检测器,被配置为基于功能值与预定义值的比较来激活解码器。

    DETECTOR GENERATING A DISPLACEMENT SIGNAL BY INJECTION LOCKING AND INJECTION PULLING
    5.
    发明公开
    DETECTOR GENERATING A DISPLACEMENT SIGNAL BY INJECTION LOCKING AND INJECTION PULLING 审中-公开
    探测器用于产生信号偏移通过注射和注射PULL LOCK

    公开(公告)号:EP3089358A3

    公开(公告)日:2017-03-08

    申请号:EP16164238.4

    申请日:2016-04-07

    发明人: Chen, Tse-Peng

    摘要: A detector (200) includes an oscillation source (210), a frequency multiplier (220), a transceiver (230) and a demodulator (240). The oscillation source (210) generates a first injection signal (Vi1) with a first frequency (f1). The frequency multiplier (220) receives the first injection signal (Vi1), outputs an output signal (Vo) and receives a second injection signal (Vi2) with a second frequency (f2). The frequency multiplier (220) uses injection locking to lock a frequency of the output signal (Vo) at a multiple of the first frequency (f1), and uses injection pulling to pull the frequency of the output signal (Vo) to the second frequency (f2). The transceiver (230) transmits the output signal (Vo) and receives a received signal (Vrx) with a third frequency (f3) for updating the second injection signal (Vi2). The demodulator (240) performs a demodulation operation according to the output signal (Vo) so as to generate a displacement signal (Vd).

    摘要翻译: 检测器(200)包括在振荡源(210),一个倍频器(220),收发机(230)和解调器(240)。 振荡源(210)基因速率的第一注入信号(Vi1的)以第一频率(F1)。 倍频器(220)接收第一注入信号(Vi1的),输出信号的输出(VO),并接收具有第二频率(F2)的第二注入信号(Vi2的)。 倍频器(220)使用注入锁定在所述第一频率(F1)的倍数来锁定的输出信号(VO)的频率,并使用注入牵引到所述输出信号(VO)的频率拉到第二频率 (F2)。 该收发器(230)发送的输出信号(VO),并接收与一个第三频率(F3),用于更新第二喷射信号(Vi2的)的接收信号(VRX)。 解调器(240)执行解调操作gemäß到输出信号(VO),从而生成的位移信号(VD)。

    DETECTOR GENERATING A DISPLACEMENT SIGNAL BY INJECTION LOCKING AND INJECTION PULLING
    6.
    发明公开
    DETECTOR GENERATING A DISPLACEMENT SIGNAL BY INJECTION LOCKING AND INJECTION PULLING 审中-公开
    探测器用于产生信号偏移通过注射和注射PULL LOCK

    公开(公告)号:EP3089358A2

    公开(公告)日:2016-11-02

    申请号:EP16164238.4

    申请日:2016-04-07

    发明人: Chen, Tse-Peng

    IPC分类号: H03B19/14 G01S7/35

    摘要: A detector (200) includes an oscillation source (210), a frequency multiplier (220), a transceiver (230) and a demodulator (240). The oscillation source (210) generates a first injection signal (Vi1) with a first frequency (f1). The frequency multiplier (220) receives the first injection signal (Vi1), outputs an output signal (Vo) and receives a second injection signal (Vi2) with a second frequency (f2). The frequency multiplier (220) uses injection locking to lock a frequency of the output signal (Vo) at a multiple of the first frequency (f1), and uses injection pulling to pull the frequency of the output signal (Vo) to the second frequency (f2). The transceiver (230) transmits the output signal (Vo) and receives a received signal (Vrx) with a third frequency (f3) for updating the second injection signal (Vi2). The demodulator (240) performs a demodulation operation according to the output signal (Vo) so as to generate a displacement signal (Vd).