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    • 11. 发明申请
    • SYSTEM AND METHOD FOR A LOCATION PREDICTION-BASED NETWORK SCHEDULER
    • 基于位置预测的网络调度器的系统和方法
    • WO2016015626A1
    • 2016-02-04
    • PCT/CN2015/085338
    • 2015-07-28
    • HUAWEI TECHNOLOGIES CO., LTD.
    • SHAFIEE, KavehZHANG, HangCALLARD, AaronSTEPHENNE, AlexFARMANBAR, Hamidreza
    • H04W4/02
    • H04W28/0268H04L47/805H04W28/0226H04W72/048
    • Embodiments are provided for traffic scheduling based on user equipment (UE) in wireless networks. A location prediction-based network scheduler (NS) interfaces with a traffic engineering (TE) function to enable location-prediction-based routing for UE traffic. The NS obtains location prediction information for a UE for a next time window comprising a plurality of next time slots, and obtains available network resource prediction for the next time slots. The NS then determines, for each of the next time slots, a weight value as a priority parameter for forwarding data to the UE, in accordance with the location prediction information and the available network resource prediction. The result for the first time slot is then forwarded from the NS to the TE function, which optimizes, for the first time slot, the weight value with a route and data for forwarding the data to the UE.
    • 提供了用于基于无线网络中的用户设备(UE)的业务调度的实施例。 基于位置预测的网络调度器(NS)与流量工程(TE)功能接口,以实现针对UE业务的基于位置预测的路由。 NS为包含多个下一个时隙的下一个时间窗口的UE获取位置预测信息,并获得下一个时隙的可用网络资源预测。 然后,NS根据位置预测信息和可用的网络资源预测,为每个下一个时隙确定权重值作为用于将数据转发到UE的优先级参数。 第一时隙的结果然后从NS转发到TE功能,其在第一时隙中利用路由和用于将数据转发到UE的数据来优化权重值。
    • 16. 发明申请
    • SYSTEM AND METHOD FOR DATA TRANSMISSION IN UPLINK RAN
    • 用于上行链路RAN中的数据传输的系统和方法
    • WO2018054159A1
    • 2018-03-29
    • PCT/CN2017/094125
    • 2017-07-24
    • HUAWEI TECHNOLOGIES CO., LTD.
    • FARMANBAR, Hamidreza
    • H04W28/20
    • H04L47/827H04L43/0894H04L47/822H04W28/22H04W72/04
    • A method includes iteratively executing, by a computer, a scheduling process computing an allocation of wireless access network data rate to each link between an Access point and a User Equipment within a coverage area of the Access Point, and a routing process computing an allocation of wired network resources to each wired link between the Access Point and nodes of a wired network. The scheduling and routing processes are independent of each other. At each iteration, information of the allocated wireless access network data rate is passed to the routing process; and information of the aggregate allocated data rate for each service at the Access Point is passed to the scheduling process.
    • 一种方法包括由计算机迭代地执行调度过程,该调度过程计算无线接入网络数据速率到接入点的覆盖区域内的接入点和用户设备之间的每个链路的分配, 以及路由过程,计算有线网络资源分配给接入点和有线网络节点之间的每个有线链路。 调度和路由过程彼此独立。 在每次迭代中,将分配的无线接入网数据速率的信息传递给路由选择进程; 并且接入点中每个服务的聚合分配数据速率的信息被传递给调度过程。
    • 20. 发明申请
    • FRAMEWORK FOR TRAFFIC ENGINEERING IN SOFTWARE DEFINED NETWORKING
    • 软件定义网络中的交通工程框架
    • WO2015081817A1
    • 2015-06-11
    • PCT/CN2014/092607
    • 2014-11-29
    • HUAWEI TECHNOLOGIES CO., LTD.
    • LI, XuFARMANBAR, HamidrezaZHANG, Hang
    • H04L12/70
    • H04L47/18H04L45/02H04L45/302H04L45/42H04L47/122H04L47/726H04W28/12
    • System and method embodiments are provided for traffic engineering, TE, in software defined networking, SDN. The embodiments enable a complete end-to-end TE solution between a user equipment, UE, and a source/destination across a radio access network, RAN (102). In an embodiment, a method in a network component for TE in a SDN includes receiving TE information from a first core network component in a core network (104), a RAN component (112), wherein the RAN (102) is communicably coupled to the core network (104), wherein the TE information includes a TE objective; and determining a TE decision (242) between at least one UE (122) and a second core network component in the core network (104) according to the TE information and the TE objective, wherein the TE decision (242) comprises information for at least one end-to-end path solution between the at least one UE (122) and the second core network wherein the path traverses the core network and the RAN (102).
    • 在软件定义的网络SDN中为流量工程TE提供系统和方法实施例。 这些实施例使得能够通过无线电接入网络RAN(102)在用户设备,UE和源/目的地之间实现完整的端到端TE解决方案。 在一个实施例中,SDN中的TE的网络组件中的方法包括从核心网络(104)中的第一核心网络组件(RAN)接收TE信息,RAN组件(112),其中RAN(102)可通信地耦合到 所述核心网络(104),其中所述TE信息包括TE目标; 以及根据所述TE信息和所述TE目标在所述核心网络(104)中的至少一个UE(122)和所述第二核心网络组件(122)之间确定TE决定(242),其中所述TE决定(242)包括: 所述至少一个UE(122)和所述第二核心网络之间的至少一个端到端路径解决方案,其中所述路径穿过所述核心网络和所述RAN(102)。