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    • 7. 发明申请
    • RECEPTION DEVICE AND RECEPTION METHOD
    • 接收设备和接收方法
    • US20100197262A1
    • 2010-08-05
    • US12376387
    • 2008-01-09
    • Shuya HosokawaKenji MiyanagaNaganori ShirakataKoji ImamuraKoichiro Tanaka
    • Shuya HosokawaKenji MiyanagaNaganori ShirakataKoji ImamuraKoichiro Tanaka
    • H04B1/10H04B1/06
    • H04B7/0865H04B17/345
    • The noise amount information storage unit 161 stores noise amount information which indicates relationships between gain value of the variable gain amplification units 121 and 125 and the amount of noise included in BB signals output from the down converters 131 and 135. The AGC unit 140 controls the gain value of the variable gain amplification units 121 and 125 so that the power of BB signals output from the down converters 131 and 135 becomes constant. The noise amount estimation unit 162 estimates noise amount of noise corresponding to the controlled gain value of the variable gain amplification units 121 and 125 by referring to the noise amount information stored in the noise amount information storage unit 161. The weight generation unit 170 generates weight matrix based on results of estimations performed by the channel characteristic estimation unit 150 and the noise estimation unit 162.
    • 噪声量信息存储单元161存储指示可变增益放大单元121和125的增益值与从下变频器131和135输出的BB信号中包括的噪声量之间的关系的噪声量信息。AGC单元140控制 可变增益放大单元121和125的增益值,使得从下变频器131和135输出的BB信号的功率变得恒定。 噪声量估计单元162通过参考存储在噪声量信息存储单元161中的噪声量信息来估计与可变增益放大单元121和125的受控增益值相对应的噪声噪声量。权重生成单元170产生权重 基于由信道特性估计单元150和噪声估计单元162执行的估计结果的矩阵。
    • 8. 发明授权
    • Reception device and reception method
    • 接收设备和接收方式
    • US08233865B2
    • 2012-07-31
    • US12376387
    • 2008-01-09
    • Shuya HosokawaKenji MiyanagaNaganori ShirakataKoji ImamuraKoichiro Tanaka
    • Shuya HosokawaKenji MiyanagaNaganori ShirakataKoji ImamuraKoichiro Tanaka
    • H04B1/00
    • H04B7/0865H04B17/345
    • The noise amount information storage unit 161 stores noise amount information which indicates relationships between gain value of the variable gain amplification units 121 and 125 and the amount of noise included in BB signals output from the down converters 131 and 135. The AGC unit 140 controls the gain value of the variable gain amplification units 121 and 125 so that the power of BB signals output from the down converters 131 and 135 becomes constant. The noise amount estimation unit 162 estimates noise amount of noise corresponding to the controlled gain value of the variable gain amplification units 121 and 125 by referring to the noise amount information stored in the noise amount information storage unit 161. The weight generation unit 170 generates weight matrix based on results of estimations performed by the channel characteristic estimation unit 150 and the noise estimation unit 162.
    • 噪声量信息存储单元161存储指示可变增益放大单元121和125的增益值与从下变频器131和135输出的BB信号中包括的噪声量之间的关系的噪声量信息。AGC单元140控制 可变增益放大单元121和125的增益值,使得从下变频器131和135输出的BB信号的功率变得恒定。 噪声量估计单元162通过参考存储在噪声量信息存储单元161中的噪声量信息来估计与可变增益放大单元121和125的受控增益值相对应的噪声噪声量。权重生成单元170产生权重 基于由信道特性估计单元150和噪声估计单元162执行的估计结果的矩阵。
    • 10. 发明申请
    • SIGNAL JUDGMENT APPARATUS AND SIGNAL JUDGMENT METHOD
    • 信号判断装置和信号判断方法
    • US20100008346A1
    • 2010-01-14
    • US12376157
    • 2008-02-01
    • Naganori ShirakataShuya HosokawaKenji MiyanagaKoji Imamura
    • Naganori ShirakataShuya HosokawaKenji MiyanagaKoji Imamura
    • H04J1/00H04L27/28
    • H04L25/0228H04L25/06H04L27/2647
    • An FFT unit (170) separates a received symbol by Fourier conversion into a plurality of subcarriers, and a phase difference detection unit (193) detects a phase difference between 4 pilot carriers and data carriers adjacent to the pilot carriers (adjacent carriers) The decision unit (194) decides whether the phase differences between the pilot carriers and the adjacent carriers detected by the phase difference detection unit (193) fulfill a phase difference condition. Then, the decision unit (194) decides that the received symbol is an HTSIG if the number of phase differences that fulfill the phase difference condition is greater than or equal to a predetermined number, and decides that the received symbol is either a SIG or a DATA if the number of phase differences that fulfill the phase difference condition is less than the predetermined number.
    • FFT单元(170)通过傅里叶变换将接收到的符号分离成多个子载波,相位差检测单元(193)检测4个导频载波和与导频载波(相邻载波)相邻的数据载波之间的相位差。 单元(194)判定由相位差检测单元(193)检测的导频载波与相邻载波之间的相位差是否达到相位差条件。 然后,如果满足相位差条件的相位差的数量大于或等于预定数量,则判定单元(194)判定所接收的符号是HTSIG,并且确定接收的符号是SIG或 DATA,如果实现相位差条件的相位差数量小于预定数量。