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    • 53. 发明授权
    • Mobile communication method and relay node
    • 移动通信方式和中继节点
    • US08885543B2
    • 2014-11-11
    • US13500081
    • 2010-10-05
    • Hideaki TakahashiWuri Andarmawanti HapsariAnil UmeshMikio IwamuraMinami Ishii
    • Hideaki TakahashiWuri Andarmawanti HapsariAnil UmeshMikio IwamuraMinami Ishii
    • H04B7/155
    • H04B7/155
    • Interference to a reception circuit of a relay node itself is reduced, which occurs when transmission-and-reception process in a Un radio bearer and transmission-and-reception process in a Uu radio bearer are simultaneously performed. A mobile communication method according to the present invention includes a step of determining, by a relay node RN, whether it is necessary to perform the scheduling of a second timing such that the second timing does not overlap a first timing in a time direction, based on a first operating frequency f1 used in a radio zone between the relay node RN and a mobile station UE and a second operating frequency f2 used in a radio zone between a radio base station DeNB and the relay node RN, and a step of notifying, by the relay node RN, the radio base station DeNB of the determination result.
    • 对于中继节点本身的接收电路的干扰减少,这是当在Un无线承载中进行发送接收处理和Uu无线电承载中的发送和接收处理时发生的。 根据本发明的移动通信方法包括以下步骤:由中继节点RN确定是否需要执行第二定时的调度,使得第二定时不与时间方向上的第一定时重叠 在中继节点RN和移动台UE之间的无线区域中使用的第一工作频率f1和在无线基站DeNB与中继节点RN之间的无线区域中使用的第二工作频率f2,以及通知步骤, 通过中继节点RN,确定结果的无线基站DeNB。
    • 55. 发明授权
    • Mobile communication system
    • 移动通信系统
    • US08797956B2
    • 2014-08-05
    • US13266488
    • 2010-04-19
    • Wuri Andarmawanti HapsariAnil UmeshHideaki TakahashiMikio IwamuraMinami Ishii
    • Wuri Andarmawanti HapsariAnil UmeshHideaki TakahashiMikio IwamuraMinami Ishii
    • H04W4/00
    • H04W76/25H04B7/2606H04L63/164H04W12/00H04W80/08H04W84/045H04W84/047
    • A radio base station includes a mobile communication system that sends and receives control signals between a mobile station and a mobile switching center via a first radio bearer, a second radio bearer, and a wired bearer. The relay node includes a first radio bearer function, a second radio bearer function, an IP layer function, an SCTP layer function, and an application layer function. The radio base station includes a second radio bearer function, a wired bearer function, and an IP layer function. The mobile switching center includes a wired bearer function, IP layer function, SCTP layer function, and an application layer function. Keep-alive processing is performed between the SCTP layer function of the relay node and the SCTP layer function of the mobile switching center. Security processing is performed between the IP layer function of the relay node and the IP layer function of the mobile switching center.
    • 无线基站包括通过第一无线承载,第二无线承载和有线承载在移动台与移动交换中心之间发送接收控制信号的移动通信系统。 中继节点包括第一无线承载功能,第二无线承载功能,IP层功能,SCTP层功能和应用层功能。 无线基站包括第二无线承载功能,有线承载功能和IP层功能。 移动交换中心包括有线承载功能,IP层功能,SCTP层功能和应用层功能。 在中继节点的SCTP层功能与移动交换中心的SCTP层功能之间进行保持处理。 在中继节点的IP层功能与移动交换中心的IP层功能之间进行安全处理。
    • 56. 发明申请
    • METHOD OF BARRING ACCESS TO NETWORK, MOBILE DEVICE FOR THE METHOD, AND PROCESSOR USED IN MOBILE DEVICE
    • 网络接入方法,方法的移动设备和移动设备中使用的处理器
    • US20130331099A1
    • 2013-12-12
    • US14000339
    • 2011-12-20
    • Mikio IwamuraMinami IshiiMutsumi Ishimoto
    • Mikio IwamuraMinami IshiiMutsumi Ishimoto
    • H04W48/16
    • H04W48/16H04W4/90H04W48/02H04W76/50
    • When a network is in a state of requiring any sort of access barring, determining whether a special type access class is included as an access class to which an own device belongs, determining appropriateness of an access by referring to, from barring information, a first barring information for designating whether a mobile device belonging to each access class is subject to access barring when having determined that the special type access class is included, and determining the appropriateness of an access by referring to, from the barring information, second barring information indicating a value serving as a reference for determining the appropriateness of an access according to a relationship between a numerical value generated by each mobile device and the reference indicated by the second barring information when having determined that the special type access class is included.
    • 当网络处于要求任何类型的访问限制的状态时,确定是否包括特殊类型访问类作为自己设备所属的访问类别,通过参考禁止信息来确定访问的适当性,第一 禁止用于指定属于每个访问类别的移动设备在确定是否包含特殊类型访问类别时是否受到访问限制的信息,并且通过参考禁止信息来确定访问的适当性,所述第二禁止信息指示 当确定包括特殊类型访问类别时,根据由每个移动设备产生的数值与由第二禁止信息指示的参考之间的关系确定访问的适当性的值的值。
    • 57. 发明授权
    • Paging signal transmission method, mobile station and radio base station
    • 寻呼信号传输方式,移动台和无线基站
    • US08606304B2
    • 2013-12-10
    • US12678230
    • 2008-09-11
    • Mikio IwamuraMinami Ishii
    • Mikio IwamuraMinami Ishii
    • H04Q7/20
    • H04W76/28H04W68/00
    • A paging signal transmission method according to the present invention includes: notifying, from a radio base station (eNB) to a mobile station (UE), a discontinuous reception interval and a total number of the groups, the discontinuous reception interval representing an interval at which discontinuous reception of the paging signal (PCH) is performed; determining, at the mobile station (UE), a timing for receiving the paging signal on the basis of the notified discontinuous reception interval and the notified total number of the groups; receiving, at the mobile station (UE), the paging signal transmitted from the radio base station (eNB), at the determined timing; and performing, at the mobile station (UE), incoming call processing, when the received paging signal is a paging signal addressed to the mobile station (UE).
    • 根据本发明的寻呼信号发送方法包括:从无线基站(eNB)向移动台(UE)通知不连续接收间隔和组的总数,不连续接收间隔表示间隔 执行寻呼信号(PCH)的不连续接收; 在所述移动站(UE)处,基于所通知的不连续接收间隔和通知的组的总数确定接收寻呼信号的定时; 在所述移动台(UE)处,以所确定的定时接收从所述无线基站(eNB)发送的寻呼信号; 以及当所接收到的寻呼信号是寻址到所述移动台(UE)的寻呼信号时,在所述移动站(UE)处执行呼入处理。