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    • 1. 发明申请
    • DECREASING FREE-RIDING DATA TRAFFIC IN UPLINK SCHEDULING
    • 在上传时间表中减少自由骑车数据流量
    • WO2017029539A1
    • 2017-02-23
    • PCT/IB2015/056287
    • 2015-08-18
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WANG, LipingSUN, YingFU, Jing
    • H04W72/12
    • H04W72/1242H04W72/1268H04W72/1284
    • A method and node for uplink scheduling of a plurality of wireless devices in a communications network is provided. The method includes estimating, for each of a plurality of wireless devices, a buffer size corresponding to each of at least one radio bearer group (RBG), each of the at least one RBG being used by the wireless device to carry traffic via multiple bearers. The method further includes determining an uplink resource maximum allotment for each wireless device based, at least in part, on the estimated buffer sizes and a priority weight of each RBG used by the plurality of wireless devices. The priority weight of each RBG is based at least in part on quality of service (QoS) requirements of bearers carried by the RBG.
    • 提供了一种用于通信网络中的多个无线设备的上行链路调度的方法和节点。 该方法包括为多个无线设备中的每一个估计与至少一个无线电承载组(RBG)中的每一个相对应的缓冲器大小,所述至少一个RBG中的每一个被无线设备用于经由多个承载携带业务 。 该方法还包括至少部分地基于估计的缓冲器大小和由多个无线设备使用的每个RBG的优先级权重来确定每个无线设备的上行链路资源最大分配。 每个RBG的优先级权重至少部分地基于由RBG携带的承载的服务质量(QoS)要求。
    • 3. 发明申请
    • METHODS, SYSTEM AND USER EQUIPMENT OF A WIRELESS COMMUNICATION NETWORK FOR DETERMINING TRANSMISSION CONDITIONS FOR A REAL-TIME MEDIA FLOW
    • 用于确定实时媒体流的传输条件的无线通信网络的方法,系统和用户设备
    • WO2017127000A1
    • 2017-07-27
    • PCT/SE2016/050033
    • 2016-01-20
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WANG, YingWANG, LipingFU, Jing
    • H04L1/00H04W76/02H03M13/35
    • H04W28/0231H03M13/353H03M13/356H04L1/009H04L1/1877H04W28/0252H04W28/0268H04W28/10
    • Disclosed is a method performed by a system of a wireless communication network (100) for determining transmission conditions for a real-time media flow to be transmitted wirelessly to a first User Equipment, UE, (121) residing in a first cell (115) served by a first base station (110) of the network. The method comprises obtaining radio network statistics of the first cell (115), the radio network statistics comprising radio network data for individual of a plurality of UEs (122) in the first cell, UE throughput for individual of the plurality of UEs, and UE packet loss or packet delay for individual of the plurality of UEs, and obtaining, at a second time point occurring later in time than the obtaining of the radio network statistics, radio network data for the first UE (121). The method further comprises determining a predicted first UE throughput and a predicted first UE packet loss or packt delay based on the obtained radio network statistics of the first cell (115) and on the obtained radio network data for the first UE (121), and triggering sending of information of the predicted first UE throughput and of the predicted first UE packet loss or excessive packet delay to a sender of the real-time media flow to the first UE (121). A Forward Error Correction, FEC, optimization module (406) takes the predicted UE packet loss rate, the predicted UE throughput, and adapts the amount of FEC redundancy packets according to the throughput and packet loss rate. Further, the adapted amount of FEC redundancy packets are then used by the sender of the video when transmitting the video.
    • 公开了一种由无线通信网络(100)的系统执行的方法,用于确定要实时媒体流无线传输到第一用户设备UE(121)的传输条件, 位于由网络的第一基站(110)服务的第一小区(115)中。 该方法包括获得第一小区(115)的无线电网络统计数据,无线电网络统计数据包括第一小区中多个UE(122)中的各个UE的无线电网络数据,多个UE中的各个UE的UE吞吐量以及UE 分组丢失或分组延迟,并且在比获得无线电网络统计量晚的时间点获得用于第一UE(121)的无线电网络数据的第二时间点。 该方法进一步包括基于所获得的第一小区(115)的无线电网络统计量和第一UE(121)的所获得的无线电网络数据来确定预测的第一UE吞吐量和预测的第一UE分组丢失或打包延迟,以及 触发向第一UE(121)发送预测的第一UE吞吐量和预测的第一UE分组丢失或过度分组延迟的信息给实时媒体流的发送方。 前向纠错FEC优化模块(406)采用预测的UE分组丢失率,预测的UE吞吐量,并且根据吞吐量和分组丢失率来调整FEC冗余分组的数量。 此外,在传输视频时,视频的发送者使用适合的FEC冗余分组的数量。