基于ip的网络中服务质量支持的调度程序的开发

N. M. Din, N. Fisal
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引用次数: 3

摘要

目前基于ip的网络被称为“尽力而为”。当数据包到达路由器时,路由器查看目的地址,检查路由表项,然后选择最佳匹配并将数据包发送到输出队列。路由是动态的,单个流中的数据包可能通过不同的路径到达目的地。此外,输出队列中的数据包是基于先到先服务的顺序进行服务的。基于ip的网络的最佳努力机制在端到端数据传输环境中工作得非常好,这有助于迄今为止Internet的成功。然而,要在基于IP的网络上支持实时多媒体应用,如流媒体视频流、IP电话、互联网广播、电话会议、互动游戏等,就需要必要的服务来保证应用所需的端到端延迟。最近引入了新的服务体系结构来支持基于ip的网络中的实时多媒体网络。差分服务(DiffServ)体系结构与多协议标签交换(MPLS)相结合,已成为一种很有前途的实现服务质量(QoS)的机制,具有Internet所需的可扩展性。网络节点的调度机制可以根据流量的要求提供公平和保护。提出了一种基于模糊逻辑的MPLS边缘节点动态调度方法。模糊逻辑调度程序采用最大带宽分配方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a scheduler for quality of service support in IP-based networks
The current IP-based networks are described as best effort. When a packet arrives at a router, the router looks at the destination address, checks with the routing-table entries, then selects the best match and sends the packet to the output queue. The routing is dynamic where the packets in a single flow may take different paths to the destination. Also packets in the output queues are serviced based on first-come-first-serve order. The best effort mechanism of the IP-based networks worked very well in an end-to-end data transfer environment, which contributes to the success of the Internet this far. However, to support real-time multimedia applications over the IP-based networks such as streaming video, IP telephony, Internet radio, teleconferencing, interactive games, etc, would require necessary services that could guarantee the end-to-end delay required by the applications. New service architectures have been recently introduced to support real-time multimedia networking in IP-based networks. Differentiated services (DiffServ) architecture combined with multi protocol label switching (MPLS) have become a promising mechanism of achieving quality of service (QoS) with the scalability required by the Internet. Scheduling mechanisms at the network nodes can give fairness and protection according to the requirements of the traffic. This paper proposes a dynamic scheduler based on fuzzy logic at the DiffServ-enabled MPLS edge node. The fuzzy logic scheduler uses the maximum bandwidth allocation scheme.
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