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    • 2. 发明申请
    • TIMESLOT ALLOCATION METHOD IN A WIRELESS TDD NETWORK
    • 无线TDD网络中的时间分配方法
    • WO2011162656A1
    • 2011-12-29
    • PCT/SE2010/050728
    • 2010-06-24
    • TELEFONAKTIEBOLAGET LM ERIKSSON (publ)SUSITAIVAL, RiikkaDIMOU, Konstantinos
    • SUSITAIVAL, RiikkaDIMOU, Konstantinos
    • H04W72/08
    • H04W72/085H04W72/082
    • Method and arrangement in a first base station for scheduling in a TDD wireless network, which wireless network comprises the first base station serving a user equipment, and a second base station. The method comprises detecting that the second base station uses a different TDD configuration, instructing the user equipment to provide a signal strength measurement report based on a signal received from the second base station, receiving the measurement report, and allocating resources to the user equipment based on the received measurement report. Thereby is allocation of resources in TTIs not having the same uplink-downlink direction in the first base station and the second base station respectively, is avoided for the user equipment, when the received signal strength measurement report indicates that such allocation is appropriate. Also, a method and arrangement in a user equipment for scheduling in a TDD wireless network is described.
    • 用于在TDD无线网络中进行调度的第一基站中的方法和装置,该无线网络包括服务用户设备的第一基站和第二基站。 该方法包括:检测第二基站使用不同的TDD配置,指示用户设备基于从第二基站接收的信号,接收测量报告以及向用户设备分配资源来提供信号强度测量报告 在收到的测量报告。 因此,当接收信号强度测量报告指示这种分配是适当的时,由此在用户设备中避免了分别在第一基站和第二基站中具有相同上行链路 - 下行链路方向的TTI中的资源分配。 另外,描述了在TDD无线网络中进行调度的用户设备中的方法和装置。
    • 4. 发明申请
    • DETECTION OF RADIO LINK FAILURE (RLF) FOR RECOVERY
    • 检测无线电链路故障(RLF)用于恢复
    • WO2011102773A1
    • 2011-08-25
    • PCT/SE2010/051480
    • 2010-12-23
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)DIMOU, KonstantinosZHAO, Wei
    • DIMOU, KonstantinosZHAO, Wei
    • H04W36/00
    • H04W36/0055
    • Embodiments herein relate to a method in a radio base station (12) for enabling a user equipment (10) to establish a connection in a radio communications network The user equipment (10) is served in a first cell (14) controlled by the radio base station (12) and the radio base station (12) is comprised in the radio communications network. The radio base station 12 detects a failure of a radio link between the user equipment (10) and the radio base station (12). The radio base station (12) then forwards a user equipment context of the user equipment (10) to a circuitry controlling a second cell (16) when the failure is detected, which user equipment context enables the circuitry controlling the second cell (16) to serve the user equipment (10) enabling the user equipment (10) to establish the connection in the radio communications network.
    • 本文的实施例涉及无线电基站(12)中的用于使得用户设备(10)能够在无线电通信网络中建立连接的方法。 用户设备(10)被服务在由无线电基站(12)控制的第一小区(14)中,无线电基站(12)包括在无线电通信网络中。 无线基站12检测用户装置(10)与无线基站(12)之间的无线链路的故障。 然后,当检测到故障时,无线电基站(12)将用户设备(10)的用户设备上下文转发到控制第二小区(16)的电路,哪个用户设备上下文使能控制第二小区(16)的电路, 服务用户设备(10),使得用户设备(10)能够在无线电通信网络中建立连接。
    • 9. 发明申请
    • BEAMFORMING FOR CELL EDGE CAPACITY IMPROVEMENT IN A HETEROGENEOUS NETWORK
    • 用于在异构网络中进行细胞边缘能力改进的光束
    • WO2013014566A1
    • 2013-01-31
    • PCT/IB2012/053518
    • 2012-07-10
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)BOUDREAU, Gary DavidDIMOU, Konstantinos
    • BOUDREAU, Gary DavidDIMOU, Konstantinos
    • H04W16/28
    • H04W16/28H04W64/003H04W84/045Y02D70/122Y02D70/1262Y02D70/1264
    • Improving data rates in a heterogeneous network composed of macro cells and pico cells. A user equipment, UE, is connected to the network via a macro base station serving a macro cell (eNB) or a low power node (LPN) serving a pico cell. A signal strength indicator, RSSI, is received (measurement report or feedback) from one or more UEs located in a macro cell and adjacent one or more pico cell. The location of a UE within a region of a macro cell or a pico cell is identified (calculated or determined) according to the signal strength indicator. Then, a weak coverage area of the macro cell is identified (e.g. a coverage hole) according to the signal strength indicator (RSSI) and a beam forming antenna of a macro base station serving the macro cell where the UE is located, is directed to steer (sweep, tilt, orient or point) the antenna beam to an area of the cell requiring an improved signal strength indicator (e.g. cell edge, where the low power node pico cell or UE is located).
    • 提高由宏小区和微微小区组成的异构网络中的数据速率。 用户设备UE经由服务微微小区的宏小区(eNB)或低功率节点(LPN)的宏基站连接到网络。 从位于宏小区中并邻近一个或多个微微小区的一个或多个UE接收信号强度指示符RSSI(测量报告或反馈)。 根据信号强度指示符识别(计算或确定)在宏小区或微微小区的区域内的UE的位置。 然后,根据信号强度指示符(RSSI)识别宏小区的弱覆盖区域(例如,覆盖孔),并且服务于所述UE所位于的宏小区的宏基站的波束形成天线指向 将天线波束转向(扫描,倾斜,定向或点)到需要改进的信号强度指示符(例如低功率节点微微小区或UE所在的小区边缘)的小区的区域。