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    • 72. 发明申请
    • METHOD OF MAINTAINING COHERENCY OF A PRECODING CHANNEL IN A COMMUNICATION NETWORK AND ASSOCIATED APPARATUS
    • 在通信网络和相关设备中维护预编码信道的相似性的方法
    • US20120140851A1
    • 2012-06-07
    • US13390586
    • 2009-08-17
    • Xiaobo ZhangMingli You
    • Xiaobo ZhangMingli You
    • H04L27/00
    • H04B7/0456H04B7/0626H04B17/24H04L25/0222
    • In prior art, selection of precoding granularity is affected by two inter-restricting factors, i.e., precoding accuracy and channel estimation at a mobile terminal. To solve this problem, the present invention provides a method of maintaining coherency of a precoding channel in a communication network and an associated apparatus. During precoding, this method takes into account both channel coherency and system capacity. A base station adjusts phase and/or amplitude of a precoding matrix corresponding to each precoded unit to maintain coherency of associated information of the overall precoding channel. The associated information of the precoding channel includes, for example, CSI or eigenvalue matrix of the precoding channel. Afterwards, a mobile terminal performs channel estimation based on reference signals of multiple precoded units, thereby eliminating the limitation in prior art that a mobile terminal can perform channel estimation only within one or more resource block limited by a precoding granularity.
    • 在现有技术中,预编码粒度的选择受到两个限制因素的影响,即移动终端的预编码精度和信道估计。 为了解决这个问题,本发明提供一种保持通信网络和相关设备中的预编码信道一致性的方法。 在预编码期间,该方法考虑了信道一致性和系统容量。 基站调整与每个预编码单元相对应的预编码矩阵的相位和/或幅度,以维持整个预编码信道的相关信息的一致性。 预编码信道的相关信息包括例如预编码信道的CSI或特征值矩阵。 之后,移动终端基于多个预编码单元的参考信号进行信道估计,从​​而消除了现有技术中移动终端只能在由预编码粒度限制的一个或多个资源块内执行信道估计的限制。
    • 73. 发明授权
    • Pilot-based two-dimensional channel estimation
    • 基于导频的二维信道估计
    • US08145272B2
    • 2012-03-27
    • US12182238
    • 2008-07-30
    • Genyuan WangHang Jin
    • Genyuan WangHang Jin
    • H04M1/00
    • H04L25/0232H04L5/0007H04L5/005H04L25/0222H04L25/0226H04L25/0236
    • Techniques are provided herein to estimate channel information based a received burst that is comprises of consecutive transmissions. Each transmission comprises a plurality of data subcarriers and a plurality of pilot subcarriers on a radio frequency (RF) channel, wherein locations of the pilot subcarriers in the consecutive transmissions are different. Channel information at the pilot subcarriers is computed for each transmission in the burst. A time variation parameter and a frequency variation parameter of the channel for the burst are computed using the channel information at the pilot subcarriers for the transmissions in the burst. Channel information for at least one data subcarrier of a transmission in the burst is computed by interpolation and/or extrapolation of the channel information at the pilot subcarriers using the time variation parameter and the frequency variation parameter. The channel information for the remaining data subcarriers is computed by interpolation and/or extrapolation using the estimated channel information at the pilot subcarriers and the at least one data subcarrier.
    • 本文提供技术来基于包括连续传输的接收突发来估计信道信息。 每个传输包括在射频(RF)信道上的多个数据副载波和多个导频子载波,其中连续传输中的导频子载波的位置不同。 针对突发中的每个传输计算导频子载波处的信道信息。 使用在突发中的传输的导频子载波处的信道信息来计算突发的信道的时间变化参数和频率变化参数。 通过使用时间变化参数和频率变化参数在导频子载波处对信道信息进行内插和/或外推来计算突发中的传输的至少一个数据子载波的信道信息。 通过使用在导频子载波和至少一个数据子载波处的估计信道信息的内插和/或外推来计算剩余数据子载波的信道信息。
    • 75. 发明授权
    • Adaptive modulation control apparatus and wireless communication apparatus
    • 自适应调制控制装置和无线通信装置
    • US08077782B2
    • 2011-12-13
    • US11794888
    • 2006-01-05
    • Takashi OnoderaToshizo NogamiHidekazu Tsuboi
    • Takashi OnoderaToshizo NogamiHidekazu Tsuboi
    • H04K1/10H04L27/28
    • H04L25/022H04L5/0007H04L5/0064H04L25/0222H04L27/0008
    • [Object] To prevent communication performance capabilities from deteriorating even in the cases that the estimation error of the propagation path is significant, and that the variation speed of the propagation path characteristics is fast.[Overcoming Means] An adaptive modulation control apparatus which adaptively selects a modulation parameter from among a plurality of modulation parameters corresponding to an estimation result of a propagation path state and which has a frequency axis gradient calculating section (11) which receives propagation path estimation information indicative of an estimation result of a propagation path state, and calculates a gradient of a function of frequency corresponding to each frequency when the propagation path estimation information is set to be the function of frequency, a correcting section (12) that makes a correction to increase or decrease an upper limit or a lower limit of a numerical range of the propagation path state in one-to-one correspondence with each of the modulation parameters corresponding to the calculated gradient of the function of frequency, and a modulation parameter selecting section (13) that selects a modulation parameter corresponding to the corrected numerical range of the propagation path state including the propagation path estimation information.
    • 即使在传播路径的估计误差大的情况下,传播路径特性的变动速度快的情况下,也能防止通信性能下降。 [克服装置]一种自适应调制控制装置,其自适应地从对应于传播路径状态的估计结果的多个调制参数中选择调制参数,并且具有频率轴梯度计算部分(11),其接收传播路径估计信息 指示传播路径状态的估计结果,并且当传播路径估计信息被设置为频率的函数时,计算对应于每个频率的频率的函数的梯度;校正部分(12),其对 与传播路径状态的数值范围的上限或下限一一对应地对应于与计算的频率函数的梯度相对应的调制参数,调制参数选择部( 13),其选择对应于校正数字的调制参数 包括传播路径估计信息的传播路径状态的范围。
    • 78. 发明申请
    • RECEIVING DEVICE
    • 接收设备
    • US20110235688A1
    • 2011-09-29
    • US13046290
    • 2011-03-11
    • Masataka UMEDA
    • Masataka UMEDA
    • H04L27/28
    • H04L25/0216H04L5/0007H04L5/0048H04L25/022H04L25/0222H04L25/0232H04L27/265H04L27/2662
    • A receiving device includes: a receiver that receives frequency multiplex signal; a first Fourier transformation unit that transforms the received frequency multiplex signal to frequency domain signal; a first time-domain waveform generator that generates a first time-domain waveform by performing inverse Fourier transformation of a plurality of pilot signals which are inserted into the frequency multiplex signal; a second time-domain waveform generator that generates a second time-domain waveform having an aliasing period on the basis of the received frequency multiplex signal; a second Fourier transformation unit that synthesizes the first time-domain waveform to the second time-domain waveform and transforms the synthesized time-domain waveform to frequency-domain information; and a propagation-path compensation unit that compensates a propagation-path of the frequency multiplex signal which is output from the first Fourier transformation unit in accordance with information transformed by the second Fourier transformation unit.
    • 接收装置包括:接收频率复用信号的接收机; 第一傅立叶变换单元,将接收到的频率复用信号变换为频域信号; 第一时域波形发生器,其通过对插入到所述频率复用信号中的多个导频信号进行逆傅里叶变换来生成第一时域波形; 第二时域波形发生器,其基于接收到的频率复用信号生成具有混叠周期的第二时域波形; 第二傅立叶变换单元,将第一时域波形合成到第二时域波形,并将合成的时域波形变换为频域信息; 以及传播路径补偿单元,其根据由第二傅立叶变换单元变换的信息来补偿从第一傅里叶变换单元输出的频率复用信号的传播路径。