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An approximate analysis of the performance of deflection routing in regular networks

机译:常规网络中偏转路径性能的近似分析

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Regular two-dimensional architectures are being considered as alternatives to the linear topology metropolitan area networks (MANs) that are popular today. Deflection routing is an adaptive routing strategy that performs well on such architectures. A general analytic model has been developed to study the performance of buffered deflection routing in regular networks. The Manhattan street network, the ShuffleNet, and the shuffle exchange network have been studied as candidate two-connected networks with different topological characteristics. The results show that deflection routing performs well on both the Manhattan street network and the ShuffleNet, even under heavy loads, while on the shuffle exchange network it does not perform as well. The introduction of just a few buffers provides significant improvement in the delay-throughput performance over unbuffered deflection routing, especially in networks with large propagation delays. The analytic results are found to match the simulations very closely in most cases.
机译:常规的二维体系结构被认为是当今流行的线性拓扑城域网(MAN)的替代方案。偏转路由是一种自适应路由策略,在这种体系结构上表现良好。已经开发了一种通用分析模型来研究常规网络中缓冲偏转路径的性能。曼哈顿街道网络,ShuffleNet和shuffle交换网络已作为具有不同拓扑特征的候选双连接网络进行了研究。结果表明,即使在重负载下,偏转路由在曼哈顿街道网络和ShuffleNet上也表现良好,而在shuffle交换网络上则表现不佳。与无缓冲的偏转路由相比,仅引入几个缓冲器就大大提高了延迟吞吐量性能,特别是在具有较大传播延迟的网络中。在大多数情况下,发现分析结果与模拟非常匹配。

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