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    • 3. 发明申请
    • Methods and Arrangements in a Wireless Communication Network for Handling at Least One Primary Tracking Area
    • 用于处理至少一个主要跟踪区域的无线通信网络中的方法和布置
    • US20110261715A1
    • 2011-10-27
    • US13140262
    • 2009-05-08
    • Arne NoreforsTomas NylanderJohan RuneJari Vikberg
    • Arne NoreforsTomas NylanderJohan RuneJari Vikberg
    • H04W24/10
    • H04W60/00H04W60/04H04W68/08
    • A method and arrangement in a data collection network node (130, 140) for gathering information to be used for identification of at least one primary tracking area associated with a user equipment and a method and arrangement in a core network node (101) for selecting at least one tracking area identity identifying at least one tracking area to be used as at least one primary tracking area for a UE are provided. A tracking area identity is retrieved. Information about usage of a tracking area identified by the retrieved tracking area identity is registered. A measure for the user equipment being located in the tracking area is determined. Said at least one tracking area identity identifying at least one tracking area to be used as a primary tracking area is determined, if the measure exceeds a threshold. A method and an arrangement in a second network node (130) for paging a user equipment are provided. When paging the user equipment (140), the second network node first pages the user equipment (140) in the primary tracking area and, if the first page fails, then pages the user equipment (140) in other tracking areas.
    • 一种用于收集用于识别与用户设备相关联的至少一个主要跟踪区域的信息的数据收集网络节点(130,140)中的方法和装置,以及用于选择的核心网络节点(101)中的方法和装置 提供至少一个跟踪区域身份,其标识要用作UE的至少一个主要跟踪区域的至少一个跟踪区域。 检索跟踪区域标识。 记录关于由检索到的跟踪区域标识识别的跟踪区域的使用的信息。 确定位于跟踪区域中的用户设备的度量。 如果测量超过阈值,则确定标识要用作主跟踪区域的至少一个跟踪区域的至少一个跟踪区域标识。 提供了用于寻呼用户设备的第二网络节点(130)中的方法和装置。 当寻呼用户设备(140)时,第二网络节点首先对主要跟踪区域中的用户设备(140)进行寻呼,并且如果第一页面失败,则在其他跟踪区域中对用户设备(140)进行寻呼。
    • 4. 发明授权
    • Methods and arrangements in a wireless communication network for handling at least one primary tracking area
    • 用于处理至少一个主要跟踪区域的无线通信网络中的方法和布置
    • US08670342B2
    • 2014-03-11
    • US13140262
    • 2009-05-08
    • Arne NoreforsTomas NylanderJohan RuneJari Vikberg
    • Arne NoreforsTomas NylanderJohan RuneJari Vikberg
    • H04B7/14H04J3/08H04L12/16
    • H04W60/00H04W60/04H04W68/08
    • A method and arrangement in a data collection network node (130, 140) for gathering information to be used for identification of at least one primary tracking area associated with a user equipment and a method and arrangement in a core network node (101) for selecting at least one tracking area identity identifying at least one tracking area to be used as at least one primary tracking area for a UE are provided. A tracking area identity is retrieved. Information about usage of a tracking area identified by the retrieved tracking area identity is registered. A measure for the user equipment being located in the tracking area is determined. Said at least one tracking area identity identifying at least one tracking area to be used as a primary tracking area is determined, if the measure exceeds a threshold. A method and an arrangement in a second network node (130) for paging a user equipment are provided. When paging the user equipment (140), the second network node first pages the user equipment (140) in the primary tracking area and, if the first page fails, then pages the user equipment (140) in other tracking areas.
    • 一种用于收集用于识别与用户设备相关联的至少一个主要跟踪区域的信息的数据收集网络节点(130,140)中的方法和装置,以及用于选择的核心网络节点(101)中的方法和装置 提供至少一个跟踪区域身份,其标识要用作UE的至少一个主要跟踪区域的至少一个跟踪区域。 检索跟踪区域标识。 记录关于由检索到的跟踪区域标识识别的跟踪区域的使用的信息。 确定位于跟踪区域中的用户设备的度量。 如果测量超过阈值,则确定标识要用作主跟踪区域的至少一个跟踪区域的至少一个跟踪区域标识。 提供了用于寻呼用户设备的第二网络节点(130)中的方法和装置。 当寻呼用户设备(140)时,第二网络节点首先对主要跟踪区域中的用户设备(140)进行寻呼,并且如果第一页面失败,则在其他跟踪区域中对用户设备(140)进行寻呼。
    • 6. 发明申请
    • Handling of Local Breakout Traffic in a Home Base Station
    • 处理家庭基站中的本地突围流量
    • US20110176531A1
    • 2011-07-21
    • US13121059
    • 2009-07-09
    • Johan RuneJari VikbergTomas NylanderArne Norefors
    • Johan RuneJari VikbergTomas NylanderArne Norefors
    • H04W4/00
    • H04W76/22H04W40/24H04W84/045H04W88/10
    • The present invention relates to methods and devices that allow for efficient transportation of traffic in conjunction with a home base station (1). Traffic arriving in the home base station from a mobile terminal (2) connected to the home base station can be transported by means of local breakout transportation, which implies that the traffic is forwarded to a local node (4) over a local network (20) or to the Internet (21) without passing a core network (15) of a mobile telecommunications system. A local breakout bearer (22) is established, which is a radio bearer that extends between the mobile terminal and the home base station. The mobile terminal forwards uplink traffic that is to be subject to local breakout transportation to the home base station on the local breakout bearer. Thus it is not required for traffic that is destined for local nodes or the Internet to pass the core network, which allows for efficient traffic forwarding.
    • 本发明涉及允许与家庭基站(1)一起有效地传输业务的方法和装置。 从家庭基站连接的移动终端(2)到达家庭基站的业务可以通过本地突围传输进行传输,这意味着业务通过本地网络(20)转发到本地节点(4) )或互联网(21),而不通过移动电信系统的核心网络(15)。 建立本地突围载体(22),其是在移动终端和家庭基站之间延伸的无线承载。 移动终端在本地突围承载上将本地突围传送的上行流量转发给家庭基站。 因此,不需要用于本地节点或Internet的流量通过核心网络,这允许有效的流量转发。
    • 8. 发明申请
    • Method and Arrangements in a Mobile Telecommunications System
    • 移动电信系统中的方法和安排
    • US20120106488A1
    • 2012-05-03
    • US13377097
    • 2009-06-18
    • Tomas NylanderJohan RuneJari Vikberg
    • Tomas NylanderJohan RuneJari Vikberg
    • H04W72/04
    • H04L61/1511H04L29/12066H04W8/26H04W24/02H04W88/08
    • The present invention relates to methods and arrangements for introducing an automatic one-time configuration ;of the DNS server(s) when a base station gateway, such as an HeNB GW, is deployed, such that the FQDN-to-HeNB GW IP address translation data is proactively configured. This is performed to identify the base station gateway address to which subsequently deployed base stations will be connected. That is, the FQDN-to-HeNB GW IP address translation data for the HeNB IDs of all the HeNBs that may potentially connect to the HeNB GW is proactively configured in the DNS server(s), thereby avoiding frequent and constantly ongoing DNS configuration during normal network operation. This configuration of the DNS allows the eNB to obtain the destination address for an X2 connection without knowing about an eventual HeNB GW, nor the addressing details, such as size/length (or fixed number of bits) of the HeNB GW ID.
    • 本发明涉及引入自动一次性配置的方法和装置;当部署诸如HeNB GW的基站网关时,DNS服务器使得FQDN到HeNB GW IP地址 主动配置翻译数据。 这被执行以识别随后部署的基站将被连接到的基站网关地址。 也就是说,可以在DNS服务器中主动配置可能连接到HeNB GW的所有HeNB的HeNB ID的FQDN到HeNB GW IP地址转换数据,从而避免在DNS服务器期间频繁且持续进行的DNS配置 正常网络运行。 DNS的这种配置允许eNB获取X2连接的目的地址,而不知道最终的HeNB GW,以及HeNB GW ID的寻址细节(诸如大小/长度(或固定的比特数))。
    • 10. 发明申请
    • METHOD AND ARRANGEMENT FOR LOAD BALANCING IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统负载均衡的方法与布置
    • US20110269499A1
    • 2011-11-03
    • US13143805
    • 2009-06-30
    • Jari VikbergTomas NylanderJohan Rune
    • Jari VikbergTomas NylanderJohan Rune
    • H04W28/08
    • H04W28/08H04W76/20
    • The present invention relates to methods and arrangements in a wireless communication system that enable a load balancing procedure in a network with HeNB GWs. The problem of the ineffective conventional load balancing procedure when used in a network with HeNB GWs, is addressed by a solution where the HeNB includes (510) an explicit indication of the reason for radio link establishment (load balancing establishment cause) in the S1AP INITIAL UE MESSAGE message (511) used to establish the S1 signaling connection associated with a user equipment to an MME, so that the HeNB GW (550) can perform an accurate MME selection based on the knowledge that the establishment is due to load balancing, i.e. an MME selection that realizes the required inter-MME load balancing.
    • 本发明涉及无线通信系统中的方法和装置,其能够实现具有HeNB GW的网络中的负载平衡过程。 在与HeNB GW的网络中使用无效的常规负载平衡过程的问题由HeNB包括(510)在S1AP INITIAL中的无线电链路建立原因(负载平衡建立原因)的明确指示的解决方案来解决 UE MESSAGE消息(511)用于建立与用户设备相关联的S1信令连接到MME,使得HeNB GW(550)可以基于建立由于负载均衡的知识来执行精确的MME选择,即 实现所需的MME间负载平衡的MME选择。