Traffic Engineering in Ethernet Networks by Using Shortcut Switching Strategy

F. Faghani, G. Mirjalily
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引用次数: 8

Abstract

IEEE STP is a layer-2 protocol which provides a loop-free connectivity across various network nodes. STP does this task by reducing the topology of a switched network to a tree topology where redundant ports are blocked. This action ensures there is a unique path from any node to every other node. Blocked ports are then kept in a standby mode of operation until a network failure occurs. In STP, there isn’t any traffic engineering mechanism for load balancing. This results in uneven load distribution and bottlenecks especially close to the Root. In this paper, we propose a novel switching strategy that uses blocked ports to forward frames in some special and restricted cases. This decreases the average traffic volume on links and switches specially close to the Root, improves load balancing on links and switches and reduces the average number of switching hops.
基于快捷交换策略的以太网流量工程
STP是一种二层协议,它提供了跨各种网络节点的无环路连接。STP通过将交换网络的拓扑结构简化为阻塞冗余端口的树状拓扑来完成这项任务。此操作确保从任何节点到其他每个节点都有唯一的路径。然后,阻塞的端口保持在备用操作模式,直到发生网络故障。在STP中,没有任何流量工程机制来实现负载均衡。这导致负载分布不均匀和瓶颈,特别是在靠近根的地方。在本文中,我们提出了一种新的交换策略,在一些特殊和受限的情况下,使用阻塞端口转发帧。这样可以减少靠近根节点的链路和交换机的平均流量,提高链路和交换机的负载分担能力,减少平均交换跳数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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