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    • 71. 发明授权
    • Information receiving apparatus and information transmitting apparatus
    • 信息接收装置和信息发送装置
    • US08467332B2
    • 2013-06-18
    • US12734711
    • 2009-09-16
    • Tomoya Yamaura
    • Tomoya Yamaura
    • H04B7/212
    • H04N21/43637H04L63/0869H04N21/4122H04N21/4325H04N21/43615H04N21/43622H04W72/0446H04W88/08
    • A transmitting apparatus sequentially transmits a wireless packet PK1 for data streaming transmission with a non-transmission period therebetween to a receiving apparatus. A predetermined proportion of non-transmission periods are assigned to a period for transmitting a wireless packet PK2 for control information transmission from the information receiving apparatus to the information transmitting apparatus. The wireless packets PK1, PK2 contain time-position information indicating a second non-transmission period that is not assigned to the transmission from the receiving apparatus to the transmitting apparatus. The receiving apparatus and another transmitting apparatus different from the transmitting apparatus transmitting the wireless packet PK1 can identify the time position of the second non-transmission period by the time-position information contained in the wireless packets PK1, PK2, and can communicate to each other during the second non-transmission period.
    • 发送装置将数据流传输用的无线分组PK1顺序发送到接收装置。 将预定比例的非传送时段分配给从信息接收装置向信息发送装置发送用于控制信息发送的无线分组PK2的周期。 无线分组PK1,PK2包含表示没有分配给从接收装置向发送装置的发送的第二非发送周期的时刻位置信息。 接收装置和与发送无线分组PK1的发送装置不同的发送装置可以通过包含在无线分组PK1,PK2中的时间位置信息来识别第二非发送时段的时间位置,并且可以彼此通信 在第二个非传输期间。
    • 72. 发明授权
    • Wireless communication device, wireless communication method, and computer program
    • 无线通信设备,无线通信方法和计算机程序
    • US08320851B2
    • 2012-11-27
    • US12492679
    • 2009-06-26
    • Hiroaki TakanoSeiichi IzumiShinichi KurodaTomoya Yamaura
    • Hiroaki TakanoSeiichi IzumiShinichi KurodaTomoya Yamaura
    • H01Q11/12H04B1/04H04B1/38H04M1/00H04L5/16
    • H01Q3/267H01Q3/2605H04B17/14H04B17/21
    • A wireless commutation device includes: an antenna unit including antennas transmitting and receiving wireless signals; an analog processing unit including transmitting analog circuits and receiving analog circuits processing analog transmitting and received signals; a digital processing unit processing digital transmitting and received signals; an inter-antenna propagation loss determination unit determining propagation losses between the antennas; a loopback transfer function gain acquisition unit acquiring, through loopback of a calibration signal between the antennas, gains of loopback transfer functions between antenna branches; a loopback transfer function gain correction unit correcting the gains by using the propagation losses; a correction coefficient determination unit determining the respective gain ratios among the receiving analog circuits and the transmitting analog circuits by using the corrected gains, and determining correction coefficients by using the gain ratios; and a gain calibration processing unit performing gain calibration on the digital transmitting and received signals by using the correction coefficients.
    • 无线换向装置包括:天线单元,包括发射和接收无线信号的天线; 模拟处理单元,包括发送模拟电路和接收处理模拟发送和接收信号的模拟电路; 处理数字发送和接收信号的数字处理单元; 天线间传播损耗确定单元,确定天线之间的传播损耗; 环回传递函数增益获取单元通过天线之间的校准信号的环回获取天线分支之间的环回传递函数的增益; 环回传递函数增益校正单元,通过使用传播损耗来校正增益; 校正系数确定单元,通过使用所述校正后的增益来确定所述接收模拟电路和所述发送模拟电路之间的各增益比,以及通过使用所述增益比确定校正系数; 以及增益校准处理单元,通过使用校正系数对数字发送和接收信号执行增益校准。
    • 73. 发明申请
    • DISPLAY CONTROL DEVICE, DISPLAY CONTROL METHOD, PROGRAM, AND DISPLAY CONTROL SYSTEM
    • 显示控制装置,显示控制方法,程序和显示控制系统
    • US20120256965A1
    • 2012-10-11
    • US13435154
    • 2012-03-30
    • Hideki IwamiTomoya YamauraOsamu Yoshimura
    • Hideki IwamiTomoya YamauraOsamu Yoshimura
    • G09G5/00
    • H04N21/21805H04N21/2365H04N21/4347H04N21/6587
    • There is provided a display control device, including a communication section for communicating with an external device, a position specification section for specifying positions of an imaging device, which captures an image, and a display device, which displays the image, a process determination section for determining whether to cause the captured image to be reversed in a horizontal direction on the basis of the positions of the display device and the imaging device and a processing section for selectively reversing the captured image in the horizontal direction, wherein the processing section causes the display device to display the image reversed in the horizontal direction by reversing the captured image in the horizontal direction, if the image is determined to be reversed in the horizontal direction, and causes the display device to display the captured image, if the image is determined not to be reversed in the horizontal direction.
    • 提供了一种显示控制装置,包括用于与外部装置通信的通信部分,用于指定拍摄图像的成像装置的位置的位置指定部分和显示图像的显示装置,处理确定部分 用于基于显示装置和成像装置的位置以及用于在水平方向上选择性地反转拍摄图像​​的处理部分来确定是否使拍摄图像在水平方向上反转,其中处理部分使得 显示装置,如果图像被确定为在水平方向上反转,则通过在水平方向上反转捕获的图像来显示在水平方向上反转的图像,并且如果图像被确定则使显示装置显示拍摄图像 不能在水平方向反转。
    • 78. 发明申请
    • INFORMATION RECEIVING APPARATUS AND INFORMATION TRANSMITTING APPARATUS
    • 信息接收设备和信息传输设备
    • US20100254368A1
    • 2010-10-07
    • US12734711
    • 2009-09-16
    • Tomoya Yamaura
    • Tomoya Yamaura
    • H04J3/00
    • H04N21/43637H04L63/0869H04N21/4122H04N21/4325H04N21/43615H04N21/43622H04W72/0446H04W88/08
    • [Problem] To allow an information receiving apparatus receiving a wireless packet for data streaming transmission from an information transmitting apparatus to communicate with another information transmitting apparatus.[Means for Resolution] A transmitting apparatus sequentially transmits a wireless packet PK1 for data streaming transmission with a non-transmission period therebetween to a receiving apparatus. A predetermined proportion of non-transmission periods are assigned to a period for transmitting a wireless packet PK2 for control information transmission from the information receiving apparatus to the information transmitting apparatus. The wireless packets PK1, PK2 contain time-position information indicating a second non-transmission period that is not assigned to the transmission from the receiving apparatus to the transmitting apparatus. The receiving apparatus and another transmitting apparatus different from the transmitting apparatus transmitting the wireless packet PK1 can identify the time position of the second non-transmission period by the time-position information contained in the wireless packets PK1, PK2, and can communicate to each other during the second non-transmission period.
    • [问题]允许从信息发送装置接收用于数据流传输的无线分组的信息接收装置与另一信息发送装置进行通信。 [解决方法]发送装置将数据流传输用的无线分组PK1顺序发送到接收装置。 将预定比例的非传送时段分配给从信息接收装置向信息发送装置发送用于控制信息发送的无线分组PK2的周期。 无线分组PK1,PK2包含表示没有分配给从接收装置向发送装置的发送的第二非发送周期的时刻位置信息。 接收装置和与发送无线分组PK1的发送装置不同的发送装置可以通过包含在无线分组PK1,PK2中的时间位置信息来识别第二非发送时段的时间位置,并且可以彼此通信 在第二个非传输期间。
    • 79. 发明申请
    • APPARATUS AND METHOD FOR WIRELESS COMMUNICATION, AND COMPUTER PROGRAM
    • 无线通信的装置和方法以及计算机程序
    • US20100020857A1
    • 2010-01-28
    • US12482798
    • 2009-06-11
    • Hiroaki TAKANOTomoya Yamaura
    • Hiroaki TAKANOTomoya Yamaura
    • H04B1/40
    • H04B17/21
    • A wireless communication apparatus includes a plurality of antenna branches for transmitting and receiving a wireless communication signal, a calibration coefficient calculator for calculating a calibration coefficient for each frequency band, the calibration coefficient correcting an imbalance in phase and amplitude existing between the antenna branches, a coefficient storage memory for storing the calibration coefficient of each frequency band, a calibration coefficient reader for reading the calibration coefficient of a frequency band of one of a transmission signal and a reception signal as a target to be calibrated, a calibration coefficient interpolator for interpolating a calibration coefficient of the frequency band if the coefficient storage memory stores no corresponding calibration coefficient of the frequency band, and a calibration coefficient multiplier for multiplying one of the transmission signal and the reception signal by one of the read calibration coefficient and the interpolated calibration coefficient.
    • 无线通信装置包括用于发送和接收无线通信信号的多个天线分支,用于计算每个频带的校准系数的校准系数计算器,校正天线分支之间存在的相位和振幅的不平衡的校准系数,a 系数存储存储器,用于存储每个频带的校准系数;校准系数读取器,用于读取作为要校准的目标的发送信号和接收信号之一的频带的校准系数;校准系数内插器,用于内插 如果系数存储存储器没有存储频带的对应校准系数,则校正系数的频带;以及校准系数乘法器,用于将发送信号和接收信号之一乘以读取的校准系数和t 他插值校准系数。