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    • 81. 发明授权
    • Dynamic power control of user equipment
    • 用户设备的动态功率控制
    • US08694044B2
    • 2014-04-08
    • US12934225
    • 2008-08-22
    • Kimmo HiltunenTomas NylanderHåkan OlofssonJari Vikberg
    • Kimmo HiltunenTomas NylanderHåkan OlofssonJari Vikberg
    • H04B7/00
    • H04W52/283H04J11/0086H04W84/045
    • A first communication device and a method in a node serving a first cell of a first frequency for controlling transmission power of a user equipment in the first cell, comprising receiving data relating to a second cell of the first frequency from the user equipment and determining to power regulate the user equipment. Determining to power regulate the user equipment is based on determining that the second cell is a cell to which a soft handover cannot be performed and determining that the user equipment is within a range of a cell border of the first cell. That being the case, the method further comprises transmitting a control message to the user equipment to control the transmission power of the user equipment.
    • 第一通信设备和服务于第一频率的第一小区的节点中的方法,用于控制第一小区中的用户设备的发射功率,包括从用户设备接收与第一频率的第二小区相关的数据,并确定为 电源调节用户设备。 确定功率调节用户设备是基于确定第二小区是不能执行软切换的小区,并确定用户设备在第一小区的小区边界的范围内。 在这种情况下,该方法还包括向用户设备发送控制消息以控制用户设备的发送功率。
    • 82. 发明授权
    • Network-based area positioning for capacity and coverage improvement
    • 基于网络的区域定位能力和覆盖面改进
    • US08682310B2
    • 2014-03-25
    • US12970293
    • 2010-12-16
    • Jari VikbergTomas Nylander
    • Jari VikbergTomas Nylander
    • H04M11/00H04W40/00H04W24/00
    • H04W16/18H04W24/02H04W24/08Y02D70/1242Y02D70/1262Y02D70/146Y02D70/164
    • Localized areas within a cell of a cellular wireless communication network, wherein users experience high traffic loads or poor coverage, are automatically detected and positioned by a network-based monitoring and positioning method. The localized areas are detected by performing measurements (e.g., TAdv, AOA, and neighbor node measurements) on User Equipment (UE) indicating or recording a network capacity or coverage deficiency. The detected, localized area of deficient performance is then positioned (e.g., in latitude and longitude), such as by positioning one or more UE within the area. The deficient network capacity or coverage, the localized area in which it is concentrated, and the position of the localized area are then reported, with a recommendation to deploy a low-power serving node within the localized area (e.g., at or near the area reported position) to alleviate the capacity or coverage deficiency, while minimizing interference with communication services to other users within the cell.
    • 通过基于网络的监视和定位方法自动检测和定位蜂窝无线通信网络的小区内的本地区域,其中用户体验高业务负载或差的覆盖。 通过在用户设备(UE)上执行指示或记录网络容量或覆盖不足的测量(例如,TAdv,AOA和相邻节点测量)来检测本地化区域。 然后,将检测到的缺陷性能的局部区域定位(例如,在纬度和经度上),例如通过在区域内定位一个或多个UE。 然后报告不足的网络容量或覆盖范围,集中的局部区域和局部区域的位置,建议在局部区域内部署低功率服务节点(例如,在区域或附近区域 报告的位置)以减轻能力或覆盖不足,同时最小化对小区内的其他用户的通信服务的干扰。
    • 86. 发明授权
    • Configuring relations between cells in different radio access networks
    • 配置不同无线接入网络中小区之间的关系
    • US08412230B2
    • 2013-04-02
    • US13145232
    • 2010-01-22
    • Tomas NylanderMagnus HallenstälJari Vikberg
    • Tomas NylanderMagnus HallenstälJari Vikberg
    • H04W4/00
    • H04W92/02H04W24/02H04W48/18H04W60/04
    • In a Circuit Switched Services over Long Term Evolution via Generic Access Network, CSoLTEvGAN architecture (600), relations between E-UTRAN cells (9201) and Generic Access Network, GAN cells (9101) are configured manually in a generic access node controller, GANC (910). This may become a tremendous burden for the operator. The current invention overcomes this by automatically build the needed relations. This is accomplished by determining at the GANC (910), cell identification information for an E-UTRAN cell (9201) and cell identification information for a GERAN or UTRAN cell (1101) overlaying the E-UTRAN cell (9201). The GAN cell (9101) is determined based on the cell identification information for the GERAN or UTRAN cell (1101). An entry within a translation table (1000) is created so that the cell identification information for the E-UTRAN cell (9201) is mapped to the cell identification information for the GAN cell (9101), or vice versa.
    • 在通过通用接入网络进行长期演进的电路交换服务中,CSoLTEvGAN架构(600),E-UTRAN小区(9201)与通用接入网络(GAN)(G101)之间的关系在通用接入节点控制器GANC (910)。 这可能会给操作员带来巨大的负担。 本发明通过自动建立所需的关系克服了这一点。 这通过在GANC(910)处确定用于E-UTRAN小区(9201)的小区标识信息和覆盖E-UTRAN小区(9101)的GERAN或UTRAN小区(1101)的小区标识信息来确定。 基于GERAN或UTRAN小区(1101)的小区识别信息来确定GAN小区(9101)。 创建翻译表(1000)内的条目,使得E-UTRAN小区(9201)的小区标识信息被映射到GAN小区(9101)的小区标识信息,反之亦然。
    • 87. 发明授权
    • Method for registering a mobile terminal in a mobile radio communication system
    • 在移动无线电通信系统中注册移动终端的方法
    • US08346254B2
    • 2013-01-01
    • US12741333
    • 2007-11-22
    • Jari VikbergMagnus HallenstålGöran Rune
    • Jari VikbergMagnus HallenstålGöran Rune
    • H04W4/00
    • H04L65/1073H04L65/1016H04L69/28H04W60/02
    • The present invention relates to a method for registering a mobile terminal in a mobile radio communication system. The mobile radio communication system comprises at least one mobile radio communication core network and at least one IMS core network. The mobile terminal is located within a radio access network associated to the at least one mobile radio communication core network and comprises at least a first and a second periodic registration timer for respectively registering the mobile terminal with the at least one mobile radio communication core network and the at least one IMS core network upon their respective expiry. The method comprises the step of registering the mobile terminal with the mobile radio communication core network and with the at least one second network as any one of the at least first and second periodic registration timers, which is first to expire, expires.
    • 本发明涉及在移动无线电通信系统中注册移动终端的方法。 移动无线电通信系统包括至少一个移动无线电通信核心网络和至少一个IMS核心网络。 移动终端位于与至少一个移动无线电通信核心网络相关联的无线电接入网络内,并且包括至少第一和第二周期性登记定时器,用于分别将移动终端与至少一个移动无线电通信核心网络注册,以及 所述至少一个IMS核心网络在其相应期满时。 该方法包括以下步骤:将移动终端与移动无线电通信核心网络和至少一个第二网络注册为首先到期的至少第一和第二周期性注册定时器中的任何一个到期。