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Design and performance analysis of link-by-link congestion avoidance algorithm

机译:链接链路拥塞避免算法的设计与性能分析

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In this paper, a simple but new approach, namely link-by-link congestion avoidance (LbLCA) algorithm, which works at the network layer, has been proposed. LbLCA is a proactive congestion avoidance algorithm. It uses explicit feedback to prevent congestion to happen in the first place. The novelty of LbLCA is that no per flow information is required, which makes it more scalable. Based on the design philosophy and equations, sizing of various router buffers has been arrived at for different typical network topologies. Buffer sizes depend upon the mean arrival rate at router input and outgoing link capacities and are independent of round trip time (RTT) and the number of flows passing through the router. The buffer sizes determined using LbLCA design are validated using extensive NS2 simulations. The performance evaluation has been done using NS2 simulations on the typical network topologies. The performance comparison between TCP and LbLCA reveals that proposed LbLCA algorithm gives improved performance for the end-to-end delay and packet delivery ratio. LbLCA is impartial to all flows, as LbLCA works at network layer and therefore, cannot differentiate between flows.
机译:在本文中,已经提出了一种简单但新的方法,即在网络层上工作的链路逐个拥塞避免(LBLCA)算法。 LBLCA是一种积极的拥塞避免算法。它使用明确的反馈来防止最初发生拥塞。 LBLCA的新颖性是,不需要每个流信息,这使得它更加可扩展。基于设计理念和方程,各种路由器缓冲区的尺寸已到达不同的典型网络拓扑。缓冲区大小取决于路由器输入和传出链路容量的平均到达速率,并且与往返时间(RTT)无关,并且通过路由器的流量。使用LBLCA设计确定的缓冲尺寸使用广泛的NS2模拟验证。在典型的网络拓扑上使用NS2模拟完成了性能评估。 TCP和LBLCA之间的性能比较显示,所提出的LBLCA算法为端到端延迟和分组传递比提供了改进的性能。 LBLCA对所有流程都公正,因为LBLCA在网络层工作,因此,不能区分流量。

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