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    • 4. 发明申请
    • FAST CHANNEL PROBING
    • 快速通道探测
    • WO2011112127A1
    • 2011-09-15
    • PCT/SE2010/050273
    • 2010-03-11
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)LUNDEVALL, MagnusÖSTERGAARD, JessicaWIEMANN, HenningQIAN, Yu
    • LUNDEVALL, MagnusÖSTERGAARD, JessicaWIEMANN, HenningQIAN, Yu
    • H04L25/02
    • H04W24/00H04L1/0003H04L1/0009H04L1/1867H04L1/201H04L1/245H04L41/5019H04W28/18H04W48/08H04W48/16
    • A method and arrangement for estimating the current channel quality for a data transfer in a mobile network. In a sending system entity, a channel quality estimate (CQE) associated with a data transfer to a receiving system entity in a mobile communication network is adjusted. One or more probing packets are communicated 400 between the sending system entity and the receiving system entity, each probing packet being formatted according to a predefined combination of transmission parameters. Furthermore, is a Channel State Information (CSI) report received 404 from the receiving system entity, and the CQE is adjusted 406 based on the CSI report and which probing packets have been successfully communicated. By sending a sequence of probing packets, each formatted according to a predefined combination of transmission parameters, and not waiting for each packet to be acknowledged, a fast and accurate estimation of the current channel quality is achieved.
    • 一种用于估计移动网络中的数据传输的当前信道质量的方法和装置。 在发送系统实体中,调整与移动通信网络中的接收系统实体的数据传输相关联的信道质量估计(CQE)。 在发送系统实体和接收系统实体之间传送一个或多个探测分组400,每个探测分组根据传输参数的预定组合进行格式化。 此外,是从接收系统实体接收到的信道状态信息(CSI)报告404,并且基于CSI报告调整了406,并且哪个探测分组被成功通信。 通过发送一系列探测分组,每个探测分组根据传输参数的预定组合进行格式化,并且不等待每个待确认的分组,实现当前信道质量的快速和准确的估计。
    • 8. 发明申请
    • SECONDARY SERVING CELL SELECTION FOR A WIRELESS COMMUNICATION DEVICE
    • 用于无线通信设备的次级服务小区选择
    • WO2017160195A1
    • 2017-09-21
    • PCT/SE2016/050215
    • 2016-03-16
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • KRONESTEDT, FredricLUNDEVALL, MagnusVIKBERG, Jari
    • H04L5/00H04W16/14H04W72/04
    • There is provided a method of secondary serving cell selection for a wireless communication device served by an indoor radio system. The indoor radio system is operating in a first set of at least one frequency band, shared with at least one neighboring base station, and a second set of at least one frequency band, unused by the at least one neighboring base station. The method comprises selecting (S1), if it is determined that there is lack of indoor dominance on one or more bands of the first set of frequency band(s), a component carrier of the second set of frequency band(s) to carry the secondary serving cell with higher priority than a component carrier of said one or more bands of the first set of frequency band(s) on which there is lack of indoor dominance, and selecting (S2), if it is determined that there is indoor dominance on one or more bands of the first set of frequency band(s), a component carrier of the one or more bands of the first set of frequency band(s) on which there is indoor dominance, from the indoor radio system, to carry the secondary serving cell with higher priority than a component carrier of the second set of frequency band(s).
    • 提供了一种用于由室内无线电系统服务的无线通信设备的次服务小区选择的方法。 室内无线电系统工作在与至少一个相邻基站共享的至少一个频带的第一集合和至少一个相邻基站未使用的至少一个频带的第二集合中。 该方法包括:如果确定在第一组频带的一个或多个频带上没有室内优势,则选择(S1)要携带的第二组频带的分量载波 所述第二服务小区具有比所述第一组频带的所述一个或多个频带的分量载波更高的优先级,并且选择(S2),如果确定存在室内 从所述室内无线电系统到所述第一组频带中的一个或多个频带上的优势,所述第一组频带中的一个或多个频带的分量载波具有室内无线电系统, 携带具有比第二组频带的分量载波更高优先级的辅助服务小区。
    • 9. 发明申请
    • CONTROL PLANE CONNECTIVITY FOR WIRELESS DEVICES
    • 控制无线设备的平面连接
    • WO2017135854A1
    • 2017-08-10
    • PCT/SE2016/050088
    • 2016-02-04
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • KRONESTEDT, FredricÖSTERLING, JacobLUNDEVALL, Magnus
    • H04W28/08H04W76/02H04W36/00
    • H04W28/08H04W36/00H04W36/0055H04W36/22H04W76/15
    • There is provided mechanisms for assigning control plane connectivity for a wireless device in a dual connectivity supported communications network. The communications network comprises a first network node supporting a group of low frequency bands and a second network node supporting a group of high frequency bands. A method is performed by a control node. The method comprises acquiring an uplink load level for the group of low frequency bands. The method comprises acquiring a first pathloss level between the wireless device and the first network node and a second pathloss level between the wireless device and the second network node. The method comprises selecting, from the acquired uplink load level, the first pathloss level, and the second pathloss level, which one of the first network node and the second network node to provide control plane connectivity for the wireless device.
    • 提供了用于为支持双连接的通信网络中的无线设备分配控制平面连接性的机制。 通信网络包括支持一组低频带的第一网络节点和支持一组高频带的第二网络节点。 一种方法由控制节点执行。 该方法包括获取该组低频带的上行链路负载水平。 该方法包括获取无线设备与第一网络节点之间的第一路径损耗水平和无线设备与第二网络节点之间的第二路径损耗水平。 该方法包括从所获取的上行链路负载等级中选择第一路径损耗等级和第二路径损耗等级,第一网络节点和第二网络节点中的哪一个为该无线设备提供控制面连接。