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    • 1. 发明授权
    • Wireless communication method, base station mobile station, and wireless communication system
    • 无线通信方式,基站移动台,无线通信系统
    • US08560019B2
    • 2013-10-15
    • US12950278
    • 2010-11-19
    • Takaharu Kobayashi
    • Takaharu Kobayashi
    • H04M1/00H04B7/00
    • H04W16/28H04B7/0408
    • A wireless communication method includes, at each base station, respectively forming first and second communication regions at the edges of a cell of the each base station by changing the direction of a directional antenna in synchronization with other surrounding base stations at a given cycle period, where each first communication region is configured so that a first level is reached in the antenna gain between the sectors contained in the cell of the each base station and the sectors included in the cells of the other base stations, and where each second communication region is configured so that a second level lower than the first level is reached in the antenna gain, and, at each mobile station, combining signals from a given number of base stations during a time period in which the sum of incoming signal levels from the given number of base stations satisfies given conditions.
    • 无线通信方法包括:在每个基站,通过在给定的周期周期内与其他周边基站同步地改变定向天线的方向,分别在每个基站的小区的边缘形成第一和第二通信区域, 其中每个第一通信区域被配置为使得在包含在每个基站的小区中的扇区和包括在其他基站的小区中的扇区之间的天线增益中达到第一等级,并且其中每个第二通信区域是 被配置为使得在天线增益中达到低于第一电平的第二电平,并且在每个移动台处,在来自给定数量的输入信号电平之和的时间段期间组合来自给定数量的基站的信号 的基站满足给定条件。
    • 5. 发明申请
    • WIRELESS COMMUNICATION METHOD, BASE STATION MOBILE STATION, AND WIRELESS COMMUNICATION SYSTEM
    • 无线通信方法,基站移动站和无线通信系统
    • US20110124346A1
    • 2011-05-26
    • US12950278
    • 2010-11-19
    • Takaharu Kobayashi
    • Takaharu Kobayashi
    • H04B15/00
    • H04W16/28H04B7/0408
    • A wireless communication method includes, at each base station, respectively forming first and second communication regions at the edges of a cell of the each base station by changing the direction of a directional antenna in synchronization with other surrounding base stations at a given cycle period, where each first communication region is configured so that a first level is reached in the antenna gain between the sectors contained in the cell of the each base station and the sectors included in the cells of the other base stations, and where each second communication region is configured so that a second level lower than the first level is reached in the antenna gain, and, at each mobile station, combining signals from a given number of base stations during a time period in which the sum of incoming signal levels from the given number of base stations satisfies given conditions.
    • 无线通信方法包括:在每个基站,通过在给定的周期周期内与其他周边基站同步地改变定向天线的方向,分别在每个基站的小区的边缘形成第一和第二通信区域, 其中每个第一通信区域被配置为使得在包含在每个基站的小区中的扇区和包括在其他基站的小区中的扇区之间的天线增益中达到第一等级,并且其中每个第二通信区域是 被配置为使得在天线增益中达到低于第一电平的第二电平,并且在每个移动台处,在来自给定数量的输入信号电平之和的时间段期间组合来自给定数量的基站的信号 的基站满足给定条件。
    • 8. 发明申请
    • WIRELESS COMMUNICATION SYSTEM, REMOTE ACCESS DEVICE, AND BASE STATION DEVICE
    • 无线通信系统,远程访问设备和基站设备
    • US20110171944A1
    • 2011-07-14
    • US12985663
    • 2011-01-06
    • Takaharu KOBAYASHITsuyoshi SHIMOMURA
    • Takaharu KOBAYASHITsuyoshi SHIMOMURA
    • H04W88/18H04W28/16
    • H04W88/085H04W16/28H04W72/0433H04W92/12
    • A wireless communication system includes a base station including a determining section that determines control information indicating signal processing for each of wireless resources used for wireless communication with terminal equipment units, and remote access sections each including a first signal processing section that performs first signal processing on a first downlink signal received from the base station so as to generate a second downlink signal to be transmitted to the units via the wireless communication, and a second signal processing section that performs second signal processing on a second uplink signal received from the units via the wireless communication so as to generate a first uplink signal to be transmitted to the base station, and at least one of the first signal processing and the second signal processing being performed for each of the wireless resources based on the control information.
    • 无线通信系统包括:基站,包括:确定部,确定用于指示用于与终端设备单元的无线通信的无线资源中的每一个的信号处理的控制信息;以及远程接入部,每个远程接入部包括:第一信号处理部, 从所述基站接收到的第一下行链路信号,以产生经由所述无线通信发送到所述单元的第二下行链路信号;以及第二信号处理部,对经由所述单元经由所述单元从所述单元接收到的第二上行链路信号进行第二信号处理 无线通信,以产生要发送到基站的第一上行链路信号,并且基于控制信息对每个无线资源执行第一信号处理和第二信号处理中的至少一个。
    • 10. 发明申请
    • Binoculars having diopter adjustment
    • 双筒望远镜具有屈光度调节
    • US20080304148A1
    • 2008-12-11
    • US12155508
    • 2008-06-05
    • Takaharu KobayashiTakemi Seo
    • Takaharu KobayashiTakemi Seo
    • G02B23/00
    • G02B23/18
    • Binoculars include first and second lens barrels. A bridge interconnects the lens barrels. First and second optical systems are accommodated in respectively the lens barrels. First and second focus lenses are included in respectively the first and second optical systems, for focus adjustment by moving in an optical axis direction. An operation barrel is secured to the bridge, and externally rotatable and movable in the optical axis direction between a focus adjusting position and a diopter adjusting position. A focus adjuster with gear teeth and screw threads moves the first and second focus lenses simultaneously in the optical axis direction when the operation barrel is rotated in the focus adjusting position. A diopter adjuster, including gear teeth, an intermediate rod and screw threads, moves the second focus lens in the optical axis direction when the operation barrel is rotated in the diopter adjusting position.
    • 双筒望远镜包括第一和第二透镜筒。 桥连接透镜桶。 第一和第二光学系统分别容纳在透镜筒中。 第一和第二对焦透镜分别包括在第一和第二光学系统中,用于通过沿光轴方向移动进行焦点调节。 操作筒被固定到桥上,并且可以在焦点调节位置和屈光度调节位置之间在光轴方向上外部旋转和移动。 具有齿轮齿和螺纹的聚焦调节器在操作镜筒在对焦调节位置旋转时使第一和第二对焦透镜在光轴方向上同时移动。 当操作筒在屈光度调节位置旋转时,包括齿轮齿,中间杆和螺纹的屈光度调节器在光轴方向上移动第二聚焦透镜。