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    • 1. 发明授权
    • Radio communication system, base station apparatus, and radio communication method
    • 无线电通信系统,基站装置和无线电通信方法
    • US08891417B2
    • 2014-11-18
    • US13365647
    • 2012-02-03
    • Kenzaburo FujishimaTsuyoshi TamakiYunjian JiaHitoshi Ishida
    • Kenzaburo FujishimaTsuyoshi TamakiYunjian JiaHitoshi Ishida
    • H04B1/44H04W72/08H04H20/67
    • H04W72/085
    • To secure a constant level or more of radio communication quality for each user equipment performing radio communication with a base station apparatus, and to increase the number of user equipment which the base station apparatus can accommodate under a condition of assuring the radio communication quality. In a radio communication system where there exist a base station apparatus having multiple antennas and user equipment for performing radio communication with a first antenna group including one or more of the antennas, the first antenna group is made configurable for each user equipment individually, and addition/deletion of the antenna to/from the first antenna group is performed based on the communication quality of each user equipment so that the number of antennas within the first antenna group may be minimized within a range satisfying a required value of the communication quality between the base station apparatus ad the user equipment.
    • 为了确保与基站装置进行无线通信的每个用户设备的无线电通信质量的一定等级或更多,并且在确保无线电通信质量的条件下增加基站装置可容纳的用户设备的数量。 在存在具有多个天线的基站装置和用于与包括一个或多个天线的第一天线组进行无线电通信的用户设备的无线电通信系统中,可以分别为每个用户设备配置第一天线组,并且添加 基于每个用户设备的通信质量来执行/去除第一天线组中的天线,使得在满足第一天线组内的通信质量的所需值的范围内,可以使第一天线组内的天线数量最小化 基站装置给用户设备。
    • 2. 发明申请
    • RADIO COMMUNICATION SYSTEM, BASE STATION APPARATUS, AND RADIO COMMUNICATION METHOD
    • 无线电通信系统,基站装置和无线电通信方法
    • US20120243513A1
    • 2012-09-27
    • US13365647
    • 2012-02-03
    • Kenzaburo FujishimaTsuyoshi TamakiYunjian JiaHitoshi Ishida
    • Kenzaburo FujishimaTsuyoshi TamakiYunjian JiaHitoshi Ishida
    • H04W72/04H04J3/00
    • H04W72/085
    • To secure a constant level or more of radio communication quality for each user equipment performing radio communication with a base station apparatus, and to increase the number of user equipment which the base station apparatus can accommodate under a condition of assuring the radio communication quality. In a radio communication system where there exist a base station apparatus having multiple antennas and user equipment for performing radio communication with a first antenna group including one or more of the antennas, the first antenna group is made configurable for each user equipment individually, and addition/deletion of the antenna to/from the first antenna group is performed based on the communication quality of each user equipment so that the number of antennas within the first antenna group may be minimized within a range satisfying a required value of the communication quality between the base station apparatus ad the user equipment.
    • 为了确保与基站装置进行无线通信的每个用户设备的无线电通信质量的一定等级或更多,并且在确保无线电通信质量的条件下增加基站装置可容纳的用户设备的数量。 在存在具有多个天线的基站装置和用于与包括一个或多个天线的第一天线组进行无线电通信的用户设备的无线电通信系统中,可以分别为每个用户设备配置第一天线组,并且添加 基于每个用户设备的通信质量来执行/去除第一天线组中的天线,使得在满足第一天线组内的通信质量的所需值的范围内,可以使第一天线组内的天线数量最小化 基站装置给用户设备。
    • 5. 发明授权
    • Wireless communication system and base station
    • 无线通信系统和基站
    • US08897161B2
    • 2014-11-25
    • US13545386
    • 2012-07-10
    • Kenzaburo FujishimaTsuyoshi TamakiRintaro KatayamaHitoshi Ishida
    • Kenzaburo FujishimaTsuyoshi TamakiRintaro KatayamaHitoshi Ishida
    • H04L12/58H04W36/20H04W36/08
    • H04W36/20H04W36/08
    • To reduce an uplink interference in a network with a first base station of a large output and a second base station of a small output. Detecting the interference, the second base station urges the first base station to hand over a terminal causing it to the second base station. Multiple base stations and one or more terminals exist in this system, each terminal connects with one base station, and a serving base station is changed according to a communication state of each terminal. If the different second base station other than the first base station to which the terminal connects detects a large interference, the second base station will multicast transmit information for urging handover to the base stations except itself. The base station having received the information specifies a terminal giving the interference to the second base station, and makes it to be handed over thereto.
    • 减少具有大输出的第一基站和小输出的第二基站的网络中的上行链路干扰。 检测到干扰,第二基站敦促第一基站将终端移交给第二基站。 在该系统中存在多个基站和一个或多个终端,每个终端与一个基站连接,并且根据每个终端的通信状态改变服务基站。 如果除了终端所连接的第一基站之外的不同的第二基站检测到大的干扰,则第二基站将组播用于促使切换到除了自身之外的基站的传输信息。 已经接收到该信息的基站指定向第二基站发送干扰的终端,并且将其移交给其。
    • 10. 发明授权
    • Automatic molten metal supplying device and method for supplying the
molten metal
    • 自动熔融金属供给装置及供给熔融金属的方法
    • US5250103A
    • 1993-10-05
    • US842926
    • 1992-02-27
    • Noriyoshi YamauchiHitoshi Ishida
    • Noriyoshi YamauchiHitoshi Ishida
    • B22D39/02
    • B22D39/026
    • An automatic molten metal supplying device and supplying method capable of promoting discharge of molten metal retained in a ladle during pouring into an injection sleeve of a die-casting machine, and capable of preventing a residual molten metal from being suspended from the intake/discharge port. A ladle is selectively communicatable with an atmosphere by the opening/closing unit. The opening/closing unit is connected to a molten metal pressurizing mechanism 20 and a residual molten metal removing mechanism 30 through pipes. At the time of pouring, small volume or low pressure fluid is introduced into the ladle by means of the molten metal pressurizing mechanism through the opening/closing unit. After completion of the pouring, large volume or high pressure fluid is introduced into the ladle by the residual molten metal removing mechanism. Since low volume or low pressure fluid is applied into the ladle during pouring, the molten metal can be smoothly discharged from the ladle. After the pouring, since large volume or high pressure fluid is applied into the ladle, residual molten metal in the ladle can be discharged therefrom, and no molten metal suspension from the intake-discharge port occurs. Thus, casting period can be reduced, and clean working condition can be provided.