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Adaptive-trail routing and performance evaluation in irregular networks using cut-through switches

机译:使用直通交换机的不规则网络中的自适应尾路路由和性能评估

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Cut-through switching promises low latency delivery and has been used in new generation switches, especially in high speed networks demanding low communication latency. The interconnection of cut-through switches provides an excellent network platform for high speed local area networks (LANs). For cost and performance reasons. Irregular topologies should be supported in such a switch-based network. Switched irregular networks are truly incrementally scalable and have potential to be reconfigured to adapt to the dynamics of network traffic conditions. Due to the arbitrary topologies of networks, it is critical to develop an efficient deadlock-free routing algorithm. A novel deadlock-free adaptive routing algorithm called adaptive-trail routing is proposed to allow irregular interconnection of cut-through switches. The adaptive routing algorithm is based on two unidirectional adaptive trails constructed from two opposite unidirectional Eulerian trails. Some heuristics are suggested in terms of the selection of Eulerian trails, the avoidance of long routing paths, and the degree of adaptivity. Extensive simulation experiments are conducted to evaluate the performance of the proposed and two other routing algorithms under different topologies and traffic workloads.
机译:直通式交换保证了低延迟交付,并且已在新一代交换机中使用,特别是在要求低通信延迟的高速网络中。直通交换机的互连为高速局域网(LAN)提供了出色的网络平台。出于成本和性能原因。这种基于交换机的网络应支持不规则拓扑。交换式不规则网络真正具有增量可伸缩性,并且有可能需要重新配置以适应网络流量状况的动态变化。由于网络的任意拓扑,开发有效的无死锁路由算法至关重要。提出了一种新颖的无死角自适应路由算法,称为自适应跟踪路由,以允许直通交换机的不规则互连。自适应路由算法基于由两个相对的单向欧拉路径构成的两个单向自适应路径。在选择欧拉路径,避免长路径路径以及适应程度方面,提出了一些启发式方法。进行了广泛的仿真实验,以评估在不同的拓扑和流量工作负载下所提出的路由算法和其他两种路由算法的性能。

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