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A Performance Model of Adaptive Wormhole Routing in k-Ary n-Cubes in the Presence of Digit-Reversal Traffic

机译:存在数字逆向流量的k-Ary n立方体中自适应虫孔路由性能模型

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摘要

Several analytical models of fully adaptive routing in wormhole -routed k-ary n-cubes under the uniform traffic pattern have recently been proposed in the literature. Although the uniform reference model has been widely used by researchers, it is not always true in practice as there are many applications that exhibit traffic nouniformity. There has hardly been any study that describes an analytical model of fully adaptive routing under nonuniform traffic conditions. this paper describes the first analytical model of fully adaptive routing in k-ary n-cubes in the presence of nonuniform traffic generated by the digit-reversal permutation, which is an important communication operation found in may matrix computation problems. Results obtained through simulation experiments confirm that the model predicts message latency with a good degree of accuracy under different working conditions.
机译:最近在文献中提出了在统一流量模式下虫洞路由的k元n立方体中完全自适应路由的几种分析模型。尽管统一参考模型已被研究人员广泛使用,但在实践中并不总是如此,因为有许多应用显示流量不均。几乎没有任何研究描述非均匀交通状况下完全自适应路由的分析模型。本文描述了第一种分析模型,该模型在存在由数字反转排列产生的非均匀流量的情况下,在k元n立方体中实现完全自适应路由,这是在可能矩阵计算问题中发现的重要通信操作。通过模拟实验获得的结果证实,该模型可以在不同的工作条件下以较高的准确性预测消息等待时间。

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