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    • 32. 发明申请
    • MULTIMEDIA STREMING IN A NETWORK WITH A BOTTLENECK LINK
    • 多媒体用BOTTLENECK连接在网络中
    • WO2004030433A3
    • 2004-07-22
    • PCT/IB0304314
    • 2003-10-01
    • NOKIA CORPNOKIA INC
    • VARSA VIKTORLEON DAVIDGUERRERO DURHANJANSSON CRIS
    • H04L12/56H04J3/22
    • H04L65/4069H04L47/10H04L47/127H04L47/14H04L47/263H04L47/30H04L47/33H04L65/80
    • A method used for communicating packets or other information units from a server (11) to a client (15) over a communication path including a packet scheduler (14-1) followed by a bottleneck path (14-2), with the packet scheduler (14-1) having a buffer for holding packets so as not to transmit over the bottleneck path (14-2) at a rate either too high or too low, the method providing that the server (11) communicate to the client (15) the last packet sent to the client (11) and do so via a mechanism by which the sender information is communicated over the bottleneck path (14-2) ahead of substantially all packets already in the buffer. The client (11) then uses the sender information to provide, as needed, information useful in adapting the rate at which the packets arrive at the packet scheduler (14-1).
    • 一种用于通过包括分组调度器(14-1)跟随有瓶颈路径(14-2)的通信路径将分组或其他信息单元从服务器(11)传送到客户机(15)的方法,其中分组调度器 (14-1)具有用于保持分组的缓冲器,以便不以太高或太低的速率在所述瓶颈路径(14-2)上传输,所述方法提供所述服务器(11)与所述客户端(15)通信 )发送到客户端(11)的最后一个分组,并且通过在基本上已经在缓冲器中的所有分组之前通过瓶颈路径(14-2)传送发送者信息的机制来执行。 客户端(11)然后使用发送者信息来根据需要提供有助于使分组到达分组调度器(14-1)的速率的信息。
    • 35. 发明申请
    • TRAFFIC CONTROL IN A COMMUNICATION NETWORK
    • 通信网络中的流量控制
    • WO2017092779A1
    • 2017-06-08
    • PCT/EP2015/078012
    • 2015-11-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • ÖHLÉN, PeterROSTAMI, Ahmad
    • H04L12/801H04W40/18
    • H04L67/322H04L47/127H04L63/10H04W16/10H04W16/18H04W16/22H04W28/0231H04W28/0236H04W28/0257H04W40/18H04W72/1252H04W72/1257
    • A method for traffic control is disclosed for a communication network comprising a controller node operationally connectable to a plurality of network nodes. The controller node acquires one or more current communication scenario parameters provided to the controller node by each of one or more first network nodes out of the plurality of network nodes. The controller node predicts (based on the acquired current communication scenario parameters) one or more future communication scenarios, wherein each predicted communication scenario comprises one or more predicted communication scenario parameters for each of one or more second network nodes out of the plurality of network nodes. Furthermore, the controller node determines (for at least one selected communication scenario out of the predicted communication scenarios) a traffic control operation for each of one or more third network nodes out of the plurality of network nodes. The controller node transmits, to each of the one or more third network nodes, a message indicative of the determined traffic control operation and the predicted communication scenario parameters for each of the selected communication scenarios. Each of the one or more third network nodes may compare one or more subsequent current communication scenario parameters to the predicted communication scenario parameters, and (if a match is detected for any of the selected communication scenarios) perform the corresponding determined traffic control operation. Corresponding computer program product, arrangements, network node, controller node and communication network are also disclosed.
    • 公开了一种用于通信网络的通信量控制方法,该通信网络包括可操作地连接到多个网络节点的控制器节点。 控制器节点获取由多个网络节点中的一个或多个第一网络节点中的每一个提供给控制器节点的一个或多个当前通信场景参数。 控制器节点(基于所获取的当前通信场景参数)预测一个或多个未来通信场景,其中每个预测通信场景包括多个网络节点中的一个或多个第二网络节点中的每一个的一个或多个预测通信场景参数 。 此外,控制器节点针对多个网络节点中的一个或多个第三网络节点中的每一个确定(对于预测的通信场景中的至少一个所选通信场景)流量控制操作。 控制器节点向一个或多个第三网络节点中的每一个发送指示针对所选择的通信场景中的每一个的所确定的业务控制操作和预测的通信场景参数的消息。 一个或多个第三网络节点中的每一个可以将一个或多个后续当前通信场景参数与预测通信场景参数进行比较,并且(如果针对任何所选通信场景检测到匹配)执行相应确定的业务控制操作。 还公开了相应的计算机程序产品,装置,网络节点,控制器节点和通信网络。