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    • 2. 发明授权
    • Generating precoders for use in optimising transmission capacity between an eNodeBb and UE in a DL MU-MIMO communications system
    • 生成用于优化DL MU-MIMO通信系统中eNodeBb和UE之间的传输容量的预编码器
    • US09246564B2
    • 2016-01-26
    • US14404122
    • 2013-04-12
    • NEC Corporation
    • Yasushi MarutaDuong Pham
    • H04B7/04H04B7/06
    • H04B7/0456H04B7/0452H04B7/0473H04B7/0626H04B7/0632H04B7/0634H04B7/0639H04L5/006H04L25/03904H04L25/03968
    • This method of generating precoders is used in optimising transmission capacity between an eNodeB and UEs in a DL MU-MIMO communication system. The method includes the steps of computing correlation values between pairs of precoding matrices (PMs) of the reported precoding matrix indicators (PMIs) (step 40), selecting a PM pair having a minimum correlation value (step 42). If the minimum correlation value is less than a lower threshold Tmin, the method uses a PM corresponding to the received PMI (step 44). If the minimum correlation value is greater than Tmin and less than an upper threshold Tmax, the method includes the steps of computing correlation values of the reported PMI and Channel Matrices (CMs) from a fixed codebook of representative CMs (step 48), selecting a CM pair having a maximum correlation value (step 52), and computing precoders from the selected CM pair (step 54).
    • 这种生成预编码器的方法用于优化DL MU-MIMO通信系统中的eNodeB和UE之间的传输容量。 该方法包括以下步骤:计算报告的预编码矩阵指示符(PMI)的预编码矩阵(PM)对之间的相关值(步骤40),选择具有最小相关值的PM对(步骤42)。 如果最小相关值小于下限阈值Tmin,则该方法使用与接收到的PMI相对应的PM(步骤44)。 如果最小相关值大于Tmin且小于上阈值Tmax,则该方法包括以下步骤:从代表CM的固定码本计算所报告的PMI和信道矩阵(CM)的相关值(步骤48),选择 CM对具有最大相关值(步骤52),以及从所选择的CM对计算预编码器(步骤54)。
    • 3. 发明授权
    • Joint transmission using interference alignment
    • 联合传输使用干扰对准
    • US09214995B2
    • 2015-12-15
    • US14236229
    • 2011-08-01
    • Amin Mobasher
    • Alireza BayestehAmin MobasherShiguang Guo
    • H04B7/04H04B7/06H04L25/02H04L25/03H04W36/20H04L5/00
    • H04B7/0482H04B7/0413H04B7/0456H04B7/0486H04B7/0617H04B7/0619H04B7/0626H04L5/0023H04L25/0204H04L25/0224H04L25/0391H04L25/03968H04W36/20
    • Systems and methods can implemented to joint transmission for interference management in wireless communications. A first transmitter having M antennas can acquire a channel state information (CSI) matrix for each of a plurality of multiple-input-multiple output (MIMO) channels between a first transmitter and a plurality of receivers. The first transmitter can determine transmission ranks, wherein each of the transmission ranks corresponds to a number of one or more data streams to be transmitted from both the first transmitter and a second transmitter to a receiver of the plurality of receivers. A maximum transmission rank may be identified from the determined transmission ranks. Transmit data can be generated that include the one or more data streams to each of the corresponding plurality of receivers. A precoding matrix can be generated for the generated transmit data based, at least in part, on the acquired CSI matrix. The first transmitter can then encode the transmit data using the corresponding generated precoding matrix.
    • 系统和方法可以实现用于联合传输用于无线通信中的干扰管理。 具有M个天线的第一发射机可以获取第一发射机和多个接收机之间的多个多输入多输出(MIMO)信道中的每一个的信道状态信息(CSI)矩阵。 第一发射机可以确定传输级别,其中每个传输级别对应于要从第一发射机和第二发射机两者发送到多个接收机的接收机的一个或多个数据流的数量。 可以从确定的传输等级识别最大传输等级。 可以生成包括到相应的多个接收器中的每一个的一个或多个数据流的发送数据。 至少部分地基于所获取的CSI矩阵,可以为所生成的发送数据生成预编码矩阵。 然后,第一发射机可以使用相应的生成的预编码矩阵对发射数据进行编码。
    • 4. 发明授权
    • Equalization method and equalizer
    • 均衡方法和均衡器
    • US09112743B1
    • 2015-08-18
    • US14620177
    • 2015-02-11
    • Panasonic Corporation
    • Yoshinori ShirakawaNaganori ShirakataKoichiro TanakaHiroyuki Motozuka
    • H04L25/03H04L25/02H04B1/12H04L27/26
    • H04L27/265H04B1/123H04L25/0204H04L25/022H04L25/0224H04L25/03159H04L25/03968
    • An equalization method includes carrying out frequency domain conversion of M received signals into a 2M received vector having 2M elements, carrying out channel estimation and noise/interference estimation based on the 2M vector, calculating a 2M channel vector and a (2M)×(2M) noise/interference matrix, selecting a 2M−1 or less channel vector from the calculated 2M channel vector, selecting a (2M−1)×(2M−1) or less noise/interference matrix from the calculated (2M)×(2M) noise/interference matrix, calculating a 2M−1 or less equalization coefficient vector as equalization coefficients based on the selected 2M−1 channel vector and the selected (2M−1)×(2M−1) noise/interference matrix, selecting a 2M−1 or less received vector from the 2M received vector, and equalizing the selected 2M−1 received vector by using the calculated. equalization coefficients.
    • 一种均衡方法包括:将M个接收信号的频域转换为具有2M个元素的2M接收向量,基于2M向量执行信道估计和噪声/干扰估计,计算2M信道向量和(2M)×(2M )从所计算的2M信道向量中选择2M-1或更少的信道向量,从所计算的(2M)×(2M)的噪声/干扰矩阵中选择(2M-1)×(2M-1) )噪声/干扰矩阵,基于所选择的2M-1信道向量和所选择的(2M-1)×(2M-1)个噪声/干扰矩阵,计算2M-1或更小的均衡系数向量作为均衡系数,选择2M -1或更小的接收向量,并且通过使用所计算的来均衡所选择的2M-1个接收向量。 均衡系数。
    • 8. 发明授权
    • Detecting in-phase and quadrature-phase amplitudes of MIMO communications
    • 检测MIMO通信的同相和正交相位幅度
    • US08059761B2
    • 2011-11-15
    • US12170474
    • 2008-07-10
    • Kiarash AmiriChristopher H. DickRaghavendar Mysore RaoJoseph R. Cavallaro
    • Kiarash AmiriChristopher H. DickRaghavendar Mysore RaoJoseph R. Cavallaro
    • H04L27/06
    • H04L25/03229H04L25/0246H04L25/03968
    • Circuits detect communications from multiple transmitting antennas to multiple receiving antennas. A respective first block for each non-initial transmitting antenna determines partial distances for pairings of a first candidate and a quadrature-phase amplitude. A respective second block for the initial transmitting antenna determines partial distances for combinations of phase amplitudes. A respective second block for each non-initial transmitting antenna determines partial distances for pairings of a second candidate and an in-phase amplitude. A respective first selector for each non-initial transmitting antenna selects the first candidates from the pairings for the respective second block having smaller partial distances. A respective second selector for each non-initial transmitting antenna selects the second candidates from the pairings for the respective first block having smaller partial distances. An identifier circuit selects a final candidate with a smaller partial distance from the pairings of the respective second block for the last transmitting antenna.
    • 电路检测从多个发射天线到多个接收天线的通信。 每个非初始发射天线的相应的第一块确定用于第一候选和正交相位振幅的配对的部分距离。 用于初始发射天线的相应的第二块确定相位振幅的组合的部分距离。 每个非初始发射天线的相应的第二块确定第二候选的配对和同相幅度的部分距离。 每个非初始发射天线的相应的第一选择器从具有较小部分距离的相应第二块的配对中选择第一候选。 每个非初始发射天线的相应的第二选择器从具有较小部分距离的相应第一块的配对中选择第二候选。 标识符电路从最后发射天线的相应第二块的配对中选择具有较小部分距离的最终候选。