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    • 1. 发明授权
    • Wireless communication apparatus and wireless communication method
    • 无线通信装置和无线通信方法
    • US08527008B2
    • 2013-09-03
    • US12679286
    • 2008-09-25
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • H04M1/00H04L1/02H04W4/00
    • H04B17/373H04B7/0617H04B17/21H04B17/309
    • A wireless communication apparatus 100 according to the present invention is provided with reception channel coefficient calculation units 120-1 to 120-n for calculating reception channel coefficients of respective antennas, transmission channel coefficient calculation units 130-1 to 130-n for calculating transmission channel coefficients of respective antennas by extrapolation based on variations of the reception channel coefficients, absolute value calculation units 140-1 to 140-n for calculating absolute values of the transmission channel coefficients, a threshold calculation unit 150 for calculating a threshold based on the reception channel coefficients, comparison units 160-1 to 160-n for comparing the absolute values and the threshold, and transmission channel coefficient correction units 170-11 to 170-1n, when the absolute values are greater than the threshold, for correcting the transmission channel coefficients so as to match the absolute values to the threshold.
    • 根据本发明的无线通信装置100设置有用于计算各天线的接收信道系数的接收信道系数计算单元120-1至120-n,用于计算传输信道的传输信道系数计算单元130-1至130-n 基于接收信道系数的变化通过外推的各个天线的系数,用于计算传输信道系数的绝对值的绝对值计算单元140-1至140-n,用于基于接收信道计算阈值的阈值计算单元150 系数,用于比较绝对值和阈值的比较单元160-1至160-n以及当绝对值大于阈值时的传输信道系数校正单元170-11至170-1n,用于校正传输信道系数 以便将绝对值与阈值相匹配。
    • 2. 发明申请
    • WIRELESS COMMUNICATION APPARATUS AND WIRELESS COMMUNICATION METHOD
    • 无线通信设备和无线通信方法
    • US20100279623A1
    • 2010-11-04
    • US12679286
    • 2008-09-25
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • H04B17/00
    • H04B17/373H04B7/0617H04B17/21H04B17/309
    • A wireless communication apparatus 100 according to the present invention is provided with reception channel coefficient calculation units 120-1 to 120-n for calculating reception channel coefficients of respective antennas, transmission channel coefficient calculation units 130-1 to 130-n for calculating transmission channel coefficients of respective antennas by extrapolation based on variations of the reception channel coefficients, absolute value calculation units 140-1 to 140-n for calculating absolute values of the transmission channel coefficients, a threshold calculation unit 150 for calculating a threshold based on the reception channel coefficients, comparison units 160-1 to 160-n for comparing the absolute values and the threshold, and transmission channel coefficient correction units 170-11 to 170-1n, when the absolute values are greater than the threshold, for correcting the transmission channel coefficients so as to match the absolute values to the threshold.
    • 根据本发明的无线通信装置100设置有用于计算各天线的接收信道系数的接收信道系数计算单元120-1至120-n,用于计算传输信道的传输信道系数计算单元130-1至130-n 基于接收信道系数的变化通过外推的各个天线的系数,用于计算传输信道系数的绝对值的绝对值计算单元140-1至140-n,用于基于接收信道计算阈值的阈值计算单元150 系数,用于比较绝对值和阈值的比较单元160-1至160-n以及当绝对值大于阈值时的传输信道系数校正单元170-11至170-1n,用于校正传输信道系数 以便将绝对值与阈值相匹配。
    • 3. 发明申请
    • WIRELESS COMMUNICATION APPARATUS AND WIRELESS COMMUNICATION METHOD
    • 无线通信设备和无线通信方法
    • US20110009064A1
    • 2011-01-13
    • US12810500
    • 2008-12-05
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • Chiharu YamazakiShigeru KimuraFangwei Tong
    • H04B15/00H04B7/00
    • H04B7/0413H04L25/0222
    • A wireless communication apparatus 100 according to the present invention is provided with a reception channel coefficient variation calculation unit 130-1, . . . for calculating a variation of a reception channel coefficient calculated by a reception channel coefficient calculation unit 120-1, . . . , a transmission channel coefficient calculation unit 140-1, . . . for calculating a transmission channel coefficient at transmission by extrapolation based on the variation of the reception channel coefficient, a correction coefficient memory unit 150-1 for storing a correction coefficient based on the variation of the reception channel coefficient at reception for correcting the transmission channel coefficient at transmission, and a correction unit 170-11, . . . for correcting the transmission channel coefficient at transmission calculated by the transmission channel coefficient calculation unit 140-1, . . . based on the correction coefficient stored in the correction coefficient memory unit 150-1.
    • 根据本发明的无线通信设备100具有接收信道系数变化计算单元130-1,...。 。 。 用于计算由接收信道系数计算单元120-1计算的接收信道系数的变化。 。 。 ,传输信道系数计算单元140-1,...。 。 。 用于基于接收信道系数的变化来计算通过外推发送的传输信道系数;校正系数存储单元150-1,用于基于接收时的接收信道系数的变化来存储校正系数,以校正传输信道系数 在发送时,以及校正单元170-11。 。 。 用于校正由传输信道系数计算单元140-1计算的传输中的传输信道系数。 。 。 基于存储在校正系数存储单元150-1中的校正系数。
    • 7. 发明授权
    • Radio communication device and radio communication method
    • 无线电通信设备和无线电通信方法
    • US08219039B2
    • 2012-07-10
    • US12442085
    • 2007-09-20
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • H04B1/00H04B7/00
    • H04B7/0689H04B7/0615
    • A radio communication device according to the present invention adaptively controls directivity of a transmission radio signal by using a plurality of element antennas on the basis of a received radio signal received from a communication target counterpart radio communication device. The radio communication device includes a transmission controller configured to process the transmission radio signal according to a first control method for adaptively controlling the directivity, a propagation path state detector configured to detect fluctuation state of a propagation path to a counterpart radio communication device, and a judgment unit configured to judge whether or not to change the directivity on the basis of the fluctuation state of the propagation path. If it is judged that the directivity is to be changed, the transmission controller switches to a second control method that is different from the first control method, and processes the transmission radio signal according to the second control method.
    • 根据本发明的无线电通信装置基于从通信目标对方无线电通信装置接收的接收的无线电信号,通过使用多个元素天线来自适应地控制发送无线电信号的方向性。 无线电通信装置包括:传输控制器,被配置为根据用于自适应地控制方向性的第一控制方法处理传输无线电信号;传播路径状态检测器,被配置为检测到对方无线电通信设备的传播路径的波动状态,以及 判断单元,被配置为基于传播路径的波动状态判断是否改变方向性。 如果判断方向性被改变,则传输控制器切换到与第一控制方法不同的第二控制方法,并根据第二控制方法处理传输无线电信号。
    • 8. 发明申请
    • Radio Communication Device and Radio Communication Method
    • 无线电通信设备和无线电通信方法
    • US20100159844A1
    • 2010-06-24
    • US12442283
    • 2007-09-20
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • H04B7/005
    • H01Q3/2605H04B7/01H04B7/0608H04B7/0814
    • A radio communication device according to the present invention is a radio communication device which adaptively controls directivity of transmission radio signals by use of a plurality of element antennas on the basis of received radio signals received from a counterpart radio communication device that is a communication target radio communication device, the transmission radio signals being to be transmitted to the counterpart radio communication device, the radio communication device comprising: a propagation path state detector configured to detect a fluctuation state of a propagation path to the counterpart radio communication device on the basis of the received radio signal; and a transmission controller configured to control a phase of the transmission radio signal on the basis of the fluctuation state of the propagation path detected by the propagation path state detector.
    • 根据本发明的无线电通信装置是一种无线电通信装置,其基于从作为通信目标无线电的对方无线电通信装置接收的接收的无线电信号自适应地控制使用多个元素天线的发送无线电信号的方向性 通信装置,发送无线电信号将被发送到对方无线电通信装置,该无线电通信装置包括:传播路径状态检测器,被配置为基于该通信装置检测到对方无线电通信装置的传播路径的波动状态 接收无线电信号; 以及传输控制器,被配置为基于由传播路径状态检测器检测的传播路径的波动状态来控制传输无线电信号的相位。
    • 9. 发明申请
    • Base Station Device and Channel Allocation Method
    • 基站设备和信道分配方法
    • US20090305713A1
    • 2009-12-10
    • US12294218
    • 2007-03-15
    • Chiharu YamazakiShigeru Kimura
    • Chiharu YamazakiShigeru Kimura
    • H04W72/00
    • H04W72/082H04W24/00H04W88/08
    • Upon receipt of a new channel allocation request from a mobile communication terminal, a suitable channel is allocated. A base station device performs communication with communication terminals by implementing an adaptive process using a plurality of antennas, and includes an interference recognizing unit that recognizes a level of interference on empty channels for use in the communication, a channel selector that selects an empty channel to be allocated based on a result recognized by the interference recognizing unit, and a channel allocator that, when there is a new channel allocation request from a communication terminal, allocates the empty channel selected by the channel selector to that communication terminal.
    • 在从移动通信终端接收到新的信道分配请求时,分配合适的信道。 基站装置通过实施使用多个天线的自适应处理来进行与通信终端的通信,并且包括干扰识别单元,其识别在通信中使用的空信道上的干扰等级,选择空信道的信道选择器 基于由干扰识别单元识别的结果来分配;以及信道分配器,当从通信终端存在新的信道分配请求时,向该通信终端分配由信道选择器选择的空信道。
    • 10. 发明授权
    • Radio communication device and radio communication method
    • 无线电通信设备和无线电通信方法
    • US08208859B2
    • 2012-06-26
    • US12442283
    • 2007-09-20
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • Chiharu YamazakiShigeru KimuraTakeshi TodaKenta Okino
    • H04B1/00H04B15/00
    • H01Q3/2605H04B7/01H04B7/0608H04B7/0814
    • A radio communication device according to the present invention is a radio communication device which adaptively controls directivity of transmission radio signals by use of a plurality of element antennas on the basis of received radio signals received from a counterpart radio communication device that is a communication target radio communication device, the transmission radio signals being to be transmitted to the counterpart radio communication device, the radio communication device comprising: a propagation path state detector configured to detect a fluctuation state of a propagation path to the counterpart radio communication device on the basis of the received radio signal; and a transmission controller configured to control a phase of the transmission radio signal on the basis of the fluctuation state of the propagation path detected by the propagation path state detector.
    • 根据本发明的无线电通信装置是一种无线电通信装置,其基于从作为通信目标无线电的对方无线电通信装置接收的接收的无线电信号自适应地控制使用多个元素天线的发送无线电信号的方向性 通信装置,发送无线电信号将被发送到对方无线电通信装置,该无线电通信装置包括:传播路径状态检测器,被配置为基于该通信装置检测到对方无线电通信装置的传播路径的波动状态 接收无线电信号; 以及传输控制器,被配置为基于由传播路径状态检测器检测的传播路径的波动状态来控制传输无线电信号的相位。