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    • 5. 发明申请
    • Self-Optimizing Repeater
    • 自动优化中继器
    • US20120106340A1
    • 2012-05-03
    • US13003123
    • 2008-07-10
    • Christian HoymannMagnus AlmgrenPer SkillermarkArne Simonsson
    • Christian HoymannMagnus AlmgrenPer SkillermarkArne Simonsson
    • H04W24/00H04W28/10
    • H04B7/2606H04B7/15528
    • The object of the present invention is to reduce interference and power consumption of a repeater operated in a wireless communication network. According to the present invention this object is achieved by a self-optimizing repeater (10) for use in a wireless communication network using predetermined carrier communication resources per cell. The self-optimizing repeater (10) comprises an amplifier (12) adapted to amplify a first subset of communication resources selected from, the carrier communication resources, a monitoring unit (14) adapted to monitor traffic load on the first subset of communication resources, and an adjustment unit (16) adapted to adjust the first subset of communication resources as a function of the monitored traffic load. The operation of the self-optimizing repeater is fully transparent and no control signaling is necessary to control the self-optimizing repeater.
    • 本发明的目的是减少在无线通信网络中运行的中继器的干扰和功耗。 根据本发明,该目的通过一种在每个小区使用预定载波通信资源的无线通信网络中使用的自优化中继器(10)实现。 自优化中继器(10)包括适于放大从载波通信资源中选择的通信资源的第一子集的放大器(12),适于监视通信资源的第一子集上的业务负载的监视单元(14) 以及调整单元(16),其适于根据所监视的业务负载来调整所述第一通信资源子集。 自优化中继器的操作是完全透明的,不需要控制信令来控制自优化中继器。
    • 6. 发明申请
    • Establishing Parallel Tunnels for Higher Bit Rate
    • 建立更高比特率的并行隧道
    • US20100103875A1
    • 2010-04-29
    • US12530230
    • 2007-03-07
    • Arne SimonssonEdas WongAnders NäsmanMagnus AlmgrenPer Skillermark
    • Arne SimonssonEdas WongAnders NäsmanMagnus AlmgrenPer Skillermark
    • H04W4/00
    • H04W40/12H04W76/12H04W76/15H04W84/005H04W88/12H04W92/02H04W92/12
    • An object of the present invention is to provide a mechanism for an improved network capacity when using fixed wireless terminal. The object is achieved by a method in a radio access network node for establishing at least two packet data tunnels for packet transmission, from a fixed wireless terminal in a local area network through a set of cells in a radio access network. The set of cells comprises at least two cells. The fixed wireless terminal is a radio access network node comprised in the radio access network. The radio access network comprises a plurality of potential cells to which the packet data tunnels may be established, whereof said set of cells are part of the potential cells. The method comprising the steps of: Selecting the set of cells to use for a packet transmission, based on radio link quality between the fixed wireless terminal and each of the respective potential cells and establishing the at least two packet data tunnels, one individual packet data tunnel from the fixed wireless terminal through each of the respective cells in the selected set of cells.
    • 本发明的目的是提供一种在使用固定无线终端时提高网络容量的机制。 该目的通过无线电接入网络节点中的方法来实现,用于通过无线电接入网络中的一组小区从局域网中的固定无线终端建立用于分组传输的至少两个分组数据隧道。 该组细胞包含至少两个细胞。 固定无线终端是包括在无线接入网络中的无线接入网络节点。 无线电接入网络包括可以建立分组数据隧道的多个潜在小区,其中所述小区集合是潜在小区的一部分。 该方法包括以下步骤:基于固定无线终端与各个潜在小区中的每一个之间的无线电链路质量来选择用于分组传输的小区集合,并建立至少两个分组数据隧道,一个单独分组数据 从固定无线终端通过所选择的一组单元中的每个相应小区的隧道。
    • 8. 发明授权
    • Methods in base stations, base stations, computer programs and computer program products
    • 基站,基站,计算机程序和计算机程序产品的方法
    • US09497681B2
    • 2016-11-15
    • US14116198
    • 2011-05-12
    • Konstantinos DimouArne Simonsson
    • Konstantinos DimouArne Simonsson
    • H04W36/20H04W36/04
    • H04W36/20H04W36/04
    • A method in a first base station having a first coverage area at least partly overlapping with a second coverage area of a second base station, the first base station operating within a first transmission power range and the second base station operating within a second transmission power range. The method includes determining radio link quality of a user equipment (UE1) connected to the first base station and being located in an adjustable extended coverage range of the second base station; requesting from the second base station, interference related measurements for unused physical channels or for physical channels at least partially overlapping with physical channels used by UE1 and having the radio link quality falling below a threshold value; and deciding for UE1, based on the interference related measurements, whether a handover to the second base station should be performed.
    • 一种在第一基站中具有与第二基站的第二覆盖区域至少部分重叠的第一覆盖区域的方法,所述第一基站在第一传输功率范围内操作,所述第二基站在第二传输功率范围内工作 。 该方法包括确定连接到第一基站并位于第二基站的可调扩展覆盖范围内的用户设备(UE1)的无线链路质量; 从所述第二基站请求对于未使用的物理信道的干扰相关测量或至少部分地与所述UE1使用的物理信道重叠并且所述无线电链路质量低于阈值的物理信道; 以及基于干扰相关测量来确定UE1是否应当执行到第二基站的切换。
    • 9. 发明授权
    • Super scheduling control channel
    • 超级调度控制通道
    • US09144059B2
    • 2015-09-22
    • US13993254
    • 2010-12-13
    • Peter De BruinBo HagermanSara LandströmArne SimonssonBogdan Timus
    • Peter De BruinBo HagermanSara LandströmArne SimonssonBogdan Timus
    • H04Q7/00H04W72/04H04W16/32H04W92/20
    • H04W72/04H04W16/32H04W72/0426H04W92/20
    • A method and arrangement for enabling communication of data between a UE and a first base station in a cellular communication network further comprising the second base station, and the second base station is connected to the first base station via a communication interface. A scheduling request is received from the first base station. The scheduling request is based on a suggested scheduling which is determined by the first base station, and the suggested scheduling concerns the communication of data. Scheduling information is determined based on the scheduling request, and the scheduling information is transmitted to the UE. By determining a suggested scheduling in a micro base station, but transmitting scheduling information from an overlaying macro base station, local awareness of communication conditions may be applied, and interferences from neighboring micro base stations may be decreased.
    • 还包括第二基站和第二基站的蜂窝通信网络中的UE与第一基站之间的数据通信的方法和装置经由通信接口连接到第一基站。 从第一基站接收到调度请求。 调度请求基于由第一基站确定的建议调度,并且所建议的调度涉及数据的通信。 根据调度请求确定调度信息,将调度信息发送给UE。 通过确定微基站中的建议调度,但是从覆盖的宏基站发送调度信息,可以应用通信条件的局部感知,并且可以减少来自相邻微基站的干扰。
    • 10. 发明授权
    • Using information in multiple sub-bands to adaptively determine CQI
    • 使用多个子带中的信息自适应地确定CQI
    • US09088999B2
    • 2015-07-21
    • US13574161
    • 2010-01-27
    • Henrik AsplundPeter ÖkvistArne Simonsson
    • Henrik AsplundPeter ÖkvistArne Simonsson
    • H04L12/28H04W72/12H04L1/20H04L25/02H04L1/00H04J1/16H04W28/04
    • H04W72/1231H04L1/0023H04L1/0026H04L1/20H04L25/0226H04W28/04
    • The present solution relates to a method in a first communication node (201) for determining an indication of channel quality of a radio channel (205) between the first communication node (201) and a second communication node (203). The first communication node (201) and the second communication node (203) are comprised in a wireless communication network (200). The radio channel (205) comprises a plurality of sub bands. First, at least two channel quality reports are obtained (701) for different time instances. Each channel quality report comprises indications of channel quality of at least two of the plurality of sub bands. Then a channel quality deviation is estimated (702) for at least one of the plurality of sub bands. Further, an indication of a channel quality is determined (703) for at least one of the plurality of sub bands based on the estimated channel quality deviation.
    • 本方案涉及第一通信节点(201)中用于确定第一通信节点(201)和第二通信节点(203)之间的无线电信道(205)的信道质量的指示的方法。 第一通信节点(201)和第二通信节点(203)包括在无线通信网络(200)中。 无线电信道(205)包括多个子带。 首先,为不同的时间实例获得至少两个信道质量报告(701)。 每个信道质量报告包括多个子带中的至少两个子带的信道质量的指示。 然后,针对多个子带中的至少一个估计(702)信道质量偏差。 此外,基于所估计的信道质量偏差来确定对于多个子带中的至少一个子带的信道质量的指示(703)。