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    • 1. 发明授权
    • Wireless base station apparatus and communication control method
    • 无线基站装置和通信控制方法
    • US09313710B2
    • 2016-04-12
    • US14007443
    • 2012-04-24
    • Masahiko NanriHarunobu Sato
    • Masahiko NanriHarunobu Sato
    • H04W4/00H04W36/20H04W52/02H04W52/36H04W52/24H04W52/50H04W76/04H04W36/16
    • H04W36/20H04W36/165H04W52/0206H04W52/244H04W52/367H04W52/50H04W76/27Y02D70/1262
    • Provided are a wireless base station apparatus and communication control method whereby a peripheral terminal device immediately hands over to a base station apparatus when said base station apparatus is activated. In response to timer values and the number of terminal units within a coverage area, a controller (504) of an MeNB (500) selects a dormant mode, activation mode or stationary mode for the base station itself and notifies an uplink received signal determiner (505) and transmission power determiner (506) of the selected mode information. In activation mode, the uplink received signal determiner (505) sets the timing for initial connection signals more frequently than dormant mode. In activation mode, the transmission power determiner (506) determines the increase in downlink transmission power over time and notifies the downlink transmission signal processor (507) of the transmission power.
    • 提供一种无线基站装置和通信控制方法,其中当所述基站装置被激活时,外围终端装置立即切换到基站装置。 响应于定时器值和覆盖区域内的终端单元的数量,MeNB(500)的控制器(504)选择用于基站本身的休眠模式,激活模式或固定模式,并通知上行链路接收信号确定器( 505)和所选择的模式信息的发送功率确定器(506)。 在激活模式中,上行链路接收信号确定器(505)比起休眠模式更频繁地设置初始连接信号的定时。 在激活模式中,发送功率确定器(506)确定随时间的下行链路传输功率的增加,并向下行链路传输信号处理器(507)通知传输功率。
    • 2. 发明申请
    • WIRELESS BASE STATION APPARATUS AND COMMUNICATION CONTROL METHOD
    • 无线基站装置和通信控制方法
    • US20140016615A1
    • 2014-01-16
    • US14007443
    • 2012-04-24
    • Masahiko NanriHarunobu Sato
    • Masahiko NanriHarunobu Sato
    • H04W36/20
    • H04W36/20H04W36/165H04W52/0206H04W52/244H04W52/367H04W52/50H04W76/27Y02D70/1262
    • Provided are a wireless base station apparatus and communication control method whereby a peripheral terminal device immediately hands over to a base station apparatus when said base station apparatus is activated. In response to timer values and the number of terminal units within a coverage area, a controller (504) of an MeNB (500) selects a dormant mode, activation mode or stationary mode for the base station itself and notifies an uplink received signal determiner (505) and transmission power determiner (506) of the selected mode information. In activation mode, the uplink received signal determiner (505) sets the timing for initial connection signals more frequently than dormant mode. In activation mode, the transmission power determiner (506) determines the increase in downlink transmission power over time and notifies the downlink transmission signal processor (507) of the transmission power.
    • 提供一种无线基站装置和通信控制方法,其中当所述基站装置被激活时,外围终端装置立即切换到基站装置。 响应于定时器值和覆盖区域内的终端单元的数量,MeNB(500)的控制器(504)选择用于基站本身的休眠模式,激活模式或固定模式,并通知上行链路接收信号确定器( 505)和所选择的模式信息的发送功率确定器(506)。 在激活模式中,上行链路接收信号确定器(505)比起休眠模式更频繁地设置初始连接信号的定时。 在激活模式中,发送功率确定器(506)确定随时间的下行链路传输功率的增加,并向下行链路传输信号处理器(507)通知传输功率。
    • 4. 发明申请
    • TERMINAL DEVICE AND BASE STATION DEVICE
    • 终端设备和基站设备
    • US20120004002A1
    • 2012-01-05
    • US12672978
    • 2008-08-08
    • Masahiko NanriTsutomu OnukiTakayuki Kawamura
    • Masahiko NanriTsutomu OnukiTakayuki Kawamura
    • H04W74/08H04W72/04
    • H04W74/0891H04L1/0001H04L1/08H04L5/0007H04L27/2602H04L27/2607H04L27/2613
    • A terminal device free of interference between an RACH and a PUSCH or the like even when a base station device with a large coverage is installed. In the device, a configuration number extraction unit (103) extracts a configuration number from a BCH received by a BCH reception unit (102). A control unit (104) determines the corresponding RACH format (the necessity of repetition, the CP length TCP, the second preamble length TPRE2, and the GT length TGT) according to the configuration number, notifies a repetition unit (109) of the result of the judgment of necessity of repetition, notifies the repetition unit (109) of the second preamble length TPRE2, notifies a CP addition unit (110) of the CP length TCP, and notifies a GT addition unit (112) of the GT length TGT. When the repetition unit (109) receives the notification of performing the repetition, it performs the repetition according to the second preamble length received from a TPRE2 determination section (154). The CP addition unit (110) produces a CP according to the CP length received from a TCP determination section (155).
    • 即使安装了具有较大覆盖范围的基站装置,也不受RACH和PUSCH等之间的干扰的终端装置的影响。 在该设备中,配置号提取单元(103)从由BCH接收单元(102)接收的BCH中提取配置号。 控制单元(104)根据配置号确定相应的RACH格式(重复的必要性,CP长度TCP,第二前导码长度TPRE2和GT长度TGT),向结果的重复单元(109)通知结果 通知重复单元(109)第二前同步码长度TPRE2,向CP加法单元(110)通知CP长度TCP,并向GT加法单元(112)通知GT长度TGT 。 当重复单元(109)接收到执行重复的通知时,根据从TPRE2确定部分(154)接收的第二前导码长度执行重复。 CP附加单元(110)根据从TCP确定部分(155)接收的CP长度产生CP。
    • 5. 发明授权
    • Device for controlling the carriage return of a lead screw driven
printing head
    • 用于控制丝杠驱动打印头的回转装置
    • US4613245A
    • 1986-09-23
    • US638751
    • 1984-08-08
    • Yoshiaki IkedaYoshio TamuraMasahiko NanriYasuki Onizuka
    • Yoshiaki IkedaYoshio TamuraMasahiko NanriYasuki Onizuka
    • B41J19/20B41J19/30B41J19/68
    • B41J19/20B41J19/68
    • Disclosed is a travelling control of printing head in which when a printing head is to be returned to its home position, the printing head is returned in a selected one of two modes, the first mode being such that a lead screw is reversely rotated upon completion of a desired printing operation to cause the printing head to return to its home position through a first guide groove provided for the forward travelling of the printing head and the second mode being such that the lead screw is rotated forward even after the completion of the desired printing operation and the guide groove is changed from the first one to a second one which is provided only for the return travelling of the printing head and which has a pitch larger than that of the first one so that the printing head can be quickly returned to its home position at a speed higher than that in the forward travelling. Thus, the return mode can be selected such that the time required for the printing head to return to its home position in the selected mode is shorter than in the other mode.
    • 公开了一种打印头的行进控制,其中当打印头返回到其原始位置时,打印头以两种模式中的一种选择返回,第一模式使得导螺杆在完成时反向旋转 期望的打印操作,以使得打印头通过设置用于打印头的向前行进的第一引导槽返回到其原始位置,并且第二模式使得即使在完成所需的打印头之后,丝杠也向前旋转 打印操作和引导槽从第一个改变到第二个,仅为打印头的返回行进而设置,并且具有比第一个更大的间距的间距,使得打印头可以快速地返回到 其位置的速度高于前进的速度。 因此,可以选择返回模式,使得打印头在所选模式下返回其原始位置所需的时间比其他模式中的短。
    • 6. 发明申请
    • MONITORING DEVICE, AND INSTALLATION POSITION MANAGEMENT METHOD FOR SMALL-SIZED BASE STATION
    • 监控装置和小型基站的安装位置管理方法
    • US20130242872A1
    • 2013-09-19
    • US13885347
    • 2011-12-09
    • Yasuo KoideJifeng LiMasahiko Nanri
    • Yasuo KoideJifeng LiMasahiko Nanri
    • H04W24/02
    • H04W24/02H04W16/18H04W24/04H04W84/045
    • A monitoring device (200) manages the installation position of a moveable small-sized base station (100), A message analysis unit (202) acquires, from the small-sized base station (100) being managed, peripheral cell information which shows small-sized base stations present in the periphery of the small-sized base station (100) being managed. A database management unit (204) divides map information into a plurality of areas, and stores database information which has established whether or not each of the small-sized base stations (100) can he installed in each area service continuation determination unit (205) permits the installation of the small-sized base station (100) being managed, if the installation position for the small-sized base station (100) being managed, as determined from the acquired peripheral cell information, is an area wherein the installation of the small-sized base station (100) being managed is permitted, as established in the database information.
    • 监视设备(200)管理可移动的小型基站(100)的安装位置,消息分析单元(202)从被管理的小型基站(100)获取显示小的基站信息 存在于正在管理的小型基站(100)的外围的尺寸基站。 数据库管理单元(204)将地图信息划分为多个区域,并且存储已经确定了每个小型基站(100)是否可以安装在每个区域服务继续确定单元(205)中的数据库信息, 如果从所获取的周边小区信息确定的用于管理小型基站(100)的安装位置是安装所述小型基站(100)的区域,则允许安装小型基站(100) 允许正在管理的小型基站(100),如在数据库信息中所建立的。
    • 8. 发明申请
    • BASE STATION DEVICE AND TRANSMITTING METHOD
    • 基站装置和传输方法
    • US20130279419A1
    • 2013-10-24
    • US13977454
    • 2012-02-03
    • Jifeng LiMasahiko NanriYasuo Koide
    • Jifeng LiMasahiko NanriYasuo Koide
    • H04W24/02
    • H04W24/02H04W24/10H04W72/1289H04W84/045H04W88/08H04W92/20
    • The present invention provides a base station device capable of improving the throughput of a whole network by minimizing interference between respective base stations. In a communication system including a plurality of base stations, which transmit a signal by using any of a plurality of different ABS patterns which are sub frame ABS patterns represented by the combination of a transmission sub frame for transmitting a signal and a non-transmission sub frame for suspending the transmission of the signal, a determining unit (104), on the basis of the presence or absence of the interference between an HeNB (100) and other base stations except for the HeNB (100), determines the ABS pattern used by the HeNB (100) from among the plurality of ABS patterns, and a transmitting unit (105) transmits a signal to a terminal connected to the HeNB (100); in accordance with the determined ABS pattern.
    • 本发明提供一种能够通过最小化各基站之间的干扰来提高整个网络的吞吐量的基站装置。 在包括多个基站的通信系统中,其通过使用由用于发送信号的发送子帧和非发送子组合的组合所表示的子帧ABS模式的多个不同ABS模式中的任何一个发送信号 确定单元(104)基于HeNB(100)和HeNB(100)之外的其他基站之间的干扰的存在或不存在,确定使用的ABS模式 通过所述多个ABS模式中的所述HeNB(100),发送单元(105)向与所述HeNB(100)连接的终端发送信号。 根据确定的ABS模式。
    • 9. 发明申请
    • SMALL-SIZED BASE STATION, MONITORING DEVICE, AND INSTALLATION LOCATION MANAGEMENT METHOD FOR SMALL-SIZED BASE STATION
    • 小型基站,监控设备和小型基站的安装位置管理方法
    • US20130231090A1
    • 2013-09-05
    • US13885344
    • 2011-12-22
    • Yasuo KoideMasahiko NanriJifeng Li
    • Yasuo KoideMasahiko NanriJifeng Li
    • H04W12/06
    • H04W12/06H04W24/02H04W84/045
    • A small-sized base station for which the installation location can be restricted to an appropriate range and can be appropriately managed. A small-sized base station (100) is moveable. A utilities subscriber ID acquisition unit (102) acquires, from the outside, the subscriber ID of utilities in the installation location of the small-sized base station (100). A message generation unit (103) generates a request message containing the subscriber ID, inputted from the utilities subscriber ID acquisition unit (102), and identification information identifying the small-sized base station (100), then sends the generated request message to a monitoring device (200), and requests permission for the installation of the small-sized base station (100) in the installation location. A service management function unit (106) initiates service if the monitoring unit (200) has permitted installation, in response to the sent request message.
    • 一个小型基站,可以将安装位置限制在适当的范围内,并可以进行适当的管理。 小型基站(100)可移动。 实用程序用户ID获取单元(102)从外部获取小型基站(100)的安装位置中的实用程序的用户ID。 消息生成部(103)生成包含从用户用户ID获取部(102)输入的用户ID的请求消息和识别小型基站(100)的识别信息,然后将生成的请求消息发送到 监视设备(200),并且请求在安装位置安装小型基站(100)的许可。 如果监视单元(200)响应于所发送的请求消息而允许安装,服务管理功能单元(106)发起服务。
    • 10. 发明授权
    • Terminal device and base station device
    • 终端设备和基站设备
    • US08280421B2
    • 2012-10-02
    • US12672978
    • 2008-08-08
    • Masahiko NanriTsutomu OnukiTakayuki Kawamura
    • Masahiko NanriTsutomu OnukiTakayuki Kawamura
    • H04W74/08
    • H04W74/0891H04L1/0001H04L1/08H04L5/0007H04L27/2602H04L27/2607H04L27/2613
    • A terminal device free of interference between an RACH and a PUSCH or the like even when a base station device with a large coverage is installed. In the device, a configuration number extraction unit (103) extracts a configuration number from a BCH received by a BCH reception unit (102). A control unit (104) determines the corresponding RACH format (the necessity of repetition, the CP length TCP, the second preamble length TPRE2, and the GT length TGT) according to the configuration number, notifies a repetition unit (109) of the result of the judgment of necessity of repetition, notifies the repetition unit (109) of the second preamble length TPRE2, notifies a CP addition unit (110) of the CP length TCP, and notifies a GT addition unit (112) of the GT length TGT. When the repetition unit (109) receives the notification of performing the repetition, it performs the repetition according to the second preamble length received from a TPRE2 determination section (154). The CP addition unit (110) produces a CP according to the CP length received from a TCP determination section (155).
    • 即使安装了具有较大覆盖范围的基站装置,也不受RACH和PUSCH等之间的干扰的终端装置的影响。 在该设备中,配置号提取单元(103)从由BCH接收单元(102)接收的BCH中提取配置号。 控制单元(104)根据配置号确定相应的RACH格式(重复的必要性,CP长度TCP,第二前导码长度TPRE2和GT长度TGT),向结果的重复单元(109)通知结果 通知重复单元(109)第二前同步码长度TPRE2,向CP加法单元(110)通知CP长度TCP,并向GT加法单元(112)通知GT长度TGT 。 当重复单元(109)接收到执行重复的通知时,根据从TPRE2确定部分(154)接收的第二前导码长度执行重复。 CP附加单元(110)根据从TCP确定部分(155)接收的CP长度产生CP。