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    • 2. 发明授权
    • Radio communication apparatus, radio communication method and program storage medium
    • 无线电通信装置,无线电通信方法和程序存储介质
    • US08130868B2
    • 2012-03-06
    • US12338858
    • 2008-12-18
    • Tsuguhide AokiHiroki MoriYasuhiko Tanabe
    • Tsuguhide AokiHiroki MoriYasuhiko Tanabe
    • H04L27/04
    • H04B7/0615H04L5/0007H04L5/0044H04L25/03343H04L2025/03414H04L2025/03426
    • A radio communication apparatus includes: generation units generating first to mth signals; a storage storing allocation information defining that beams of different quality levels are allocated to first to mth communication apparatuses for each of first to nth subcarriers so that frequencies of respective quality levels are substantially uniform over all the subcarriers among the apparatuses; determining units determining transmission weights by which the signals are multiplied so that the beams according to the allocation information are formed for the apparatuses for each of the subcarriers; generation units performing multiplication processing by using the signals and the weights for each of the subcarriers to generate first to hth weighted signals for each of the subcarriers; transform units performing inverse Fourier transform on the weighted signals for each of the subcarriers to generate first to hth transformed signals; and transmission processing units transmitting the transformed signals via first to hth antennas.
    • 无线电通信装置包括:产生第一至第m信号的发生单元; 存储分配信息,其将不同质量级别的波束分配给第一至第m通信装置,用于第一至第N个子载波中的每一个,使得各个质量等级的频率在所述装置中的所有子载波上基本均匀; 确定单元确定信号被乘以的传输权重,使得针对每个子载波的装置形成根据分配信息的波束; 生成单元通过使用每个子载波的信号和权重来执行乘法处理,以生成每个子载波的第一至第h加权信号; 变换单元对每个子载波对加权信号执行逆傅里叶变换,以产生第一至第H个经变换的信号; 以及发送处理单元,经由第一至第H天线发送变换后的信号。
    • 3. 发明申请
    • RADIO COMMUNICATION APPARATUS, RADIO COMMUNICATION METHOD AND PROGRAM STORAGE MEDIUM
    • 无线电通信设备,无线电通信方法和程序存储介质
    • US20090168915A1
    • 2009-07-02
    • US12338858
    • 2008-12-18
    • Tsuguhide AokiHiroki MoriYasuhiko Tanabe
    • Tsuguhide AokiHiroki MoriYasuhiko Tanabe
    • H04B7/02
    • H04B7/0615H04L5/0007H04L5/0044H04L25/03343H04L2025/03414H04L2025/03426
    • A radio communication apparatus includes: generation units generating first to mth signals; a storage storing allocation information defining that beams of different quality levels are allocated to first to mth communication apparatuses for each of first to nth subcarriers so that frequencies of respective quality levels are substantially uniform over all the subcarriers among the apparatuses; determining units determining transmission weights by which the signals are multiplied so that the beams according to the allocation information are formed for the apparatuses for each of the subcarriers; generation units performing multiplication processing by using the signals and the weights for each of the subcarriers to generate first to hth weighted signals for each of the subcarriers; transform units performing inverse Fourier transform on the weighted signals for each of the subcarriers to generate first to hth transformed signals; and transmission processing units transmitting the transformed signals via first to hth antennas.
    • 无线电通信装置包括:产生第一至第m信号的发生单元; 存储分配信息,其将不同质量级别的波束分配给第一至第m通信装置,用于第一至第N个子载波中的每一个,使得各个质量等级的频率在所述装置中的所有子载波上基本均匀; 确定单元确定信号被乘以的传输权重,使得针对每个子载波的装置形成根据分配信息的波束; 生成单元通过使用每个子载波的信号和权重来执行乘法处理,以生成每个子载波的第一至第h加权信号; 变换单元对每个子载波对加权信号执行逆傅里叶变换,以产生第一至第H个经变换的信号; 以及发送处理单元,经由第一至第H天线发送变换后的信号。
    • 4. 发明授权
    • Wireless communication apparatus and method
    • 无线通信装置及方法
    • US08731488B2
    • 2014-05-20
    • US13101589
    • 2011-05-05
    • Hiroki MoriYasuhiko TanabeTsuguhide Aoki
    • Hiroki MoriYasuhiko TanabeTsuguhide Aoki
    • H03C7/02
    • H04L25/0224H04B7/0615H04J11/0023H04L25/03019H04L25/03343H04L27/2613H04L27/2614H04L2025/03426H04L2025/03783H04L2025/03808
    • According to one embodiment, a wireless communication apparatus includes a perturbation vector addition unit, a weight multiplication unit and a normalization coefficient multiplication unit. The perturbation vector addition unit is configured to add a perturbation vector only to a first data signal of a first transmission signal containing a first pilot signal and the first data signal, and obtain a second transmission signal containing a second pilot signal and a second data signal. The weight multiplication unit is configured to multiply each of the second pilot signal and the second data signal by a weight for removing interference on a reception side, and obtain a third transmission signal containing a third pilot signal and a third data signal. The normalization coefficient multiplication unit is configured to multiply each of the third pilot signal and the third data signal by a common normalization coefficient for normalizing a total transmission power.
    • 根据一个实施例,无线通信装置包括扰动向量加法单元,加权乘法单元和归一化系数乘法单元。 扰动向量加法单元被配置为仅对包含第一导频信号和第一数据信号的第一传输信号的第一数据信号添加扰动矢量,并且获得包含第二导频信号和第二数据信号的第二传输信号 。 加权乘法单元被配置为将第二导频信号和第二数据信号中的每一个乘以用于消除接收侧的干扰的权重,并且获得包含第三导频信号和第三数据信号的第三发送信号。 归一化系数乘法单元被配置为将第三导频信号和第三数据信号中的每一个乘以用于归一化总发送功率的公共归一化系数。
    • 5. 发明申请
    • WIRELESS COMMUNICATION APPARATUS AND METHOD
    • 无线通信装置和方法
    • US20110244816A1
    • 2011-10-06
    • US13101589
    • 2011-05-05
    • Hiroki MoriYasuhiko TanabeTsuguhide Aoki
    • Hiroki MoriYasuhiko TanabeTsuguhide Aoki
    • H04B1/02
    • H04L25/0224H04B7/0615H04J11/0023H04L25/03019H04L25/03343H04L27/2613H04L27/2614H04L2025/03426H04L2025/03783H04L2025/03808
    • According to one embodiment, a wireless communication apparatus includes a perturbation vector addition unit, a weight multiplication unit and a normalization coefficient multiplication unit. The perturbation vector addition unit is configured to add a perturbation vector only to a first data signal of a first transmission signal containing a first pilot signal and the first data signal, and obtain a second transmission signal containing a second pilot signal and a second data signal. The weight multiplication unit is configured to multiply each of the second pilot signal and the second data signal by a weight for removing interference on a reception side, and obtain a third transmission signal containing a third pilot signal and a third data signal. The normalization coefficient multiplication unit is configured to multiply each of the third pilot signal and the third data signal by a common normalization coefficient for normalizing a total transmission power.
    • 根据一个实施例,无线通信装置包括扰动向量加法单元,加权乘法单元和归一化系数乘法单元。 扰动向量加法单元被配置为仅对包含第一导频信号和第一数据信号的第一传输信号的第一数据信号添加扰动矢量,并且获得包含第二导频信号和第二数据信号的第二传输信号 。 加权乘法单元被配置为将第二导频信号和第二数据信号中的每一个乘以用于消除接收侧的干扰的权重,并且获得包含第三导频信号和第三数据信号的第三发送信号。 归一化系数乘法单元被配置为将第三导频信号和第三数据信号中的每一个乘以用于归一化总发送功率的公共归一化系数。
    • 6. 发明申请
    • COMMUNICATION DEVICE
    • 通信设备
    • US20120155345A1
    • 2012-06-21
    • US13335507
    • 2011-12-22
    • Hiroki MORITsuguhide AokiYuji TohzakaYasuhiko Tanabe
    • Hiroki MORITsuguhide AokiYuji TohzakaYasuhiko Tanabe
    • H04B7/04
    • H04L1/0023H04L1/0003H04L1/0656H04L27/2067H04L27/362
    • In one embodiment, there is provided a communication device configured to add a first perturbation signal corresponding to an integer multiple of a first basic signal, to a first information signal having first information, which is to be transmitted to a plurality of destination terminals, and transmit a wireless signal having the first information to the plurality of destination terminals by a spatial multiplexing method. The device includes: a determination unit configured to set a magnitude of the first basic signal to N times of one side of a basic lattice, wherein the basic lattice is determined according to a modulation method of the first information signal, and N is real number of one or more; an adder configured to add the first perturbation signal to the first information signal to output a second information signal; and a multiplier configured to multiply the second information signal by a weight.
    • 在一个实施例中,提供了一种通信设备,被配置为将对应于第一基本信号的整数倍的第一扰动信号添加到具有要发送到多个目的地终端的第一信息的第一信息信号,以及 通过空间复用方法向多个目的地终端发送具有第一信息的无线信号。 该装置包括:确定单元,被配置为将第一基本信号的大小设置为基本格子的一侧的N倍,其中基本格子根据第一信息信号的调制方法确定,N是实数 一个或多个; 加法器,配置为将第一扰动信号添加到第一信息信号以输出第二信息信号; 以及被配置为将所述第二信息信号乘以权重的乘法器。