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A General Approach for Analytical Modeling of Irregular NoCs

机译:非正规NOC分析建模的一般方法

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摘要

So far, many analytical models have been proposed in the literature to evaluate the performance of networks with different topologies such as hypercube, torus, mesh, hypermesh, Cartesian product networks, star graph, and k-ary n-cube; however, to the best of our knowledge, no mathematical model has been presented for irregular networks. Therefore, as an effort to fill this gap, this paper presents a comprehensive mathematical model for fully adaptive routing in wormhole-switched irregular networks. Moreover, since our approach holds no assumption for the network topology, the proposed analytical model covers all the aforementioned models (i.e. it covers both regular and irregular topologies). Furthermore, the model makes no preliminary assumption about the deadlock-free routing algorithm applied to the network. Finally, besides the generality of the model regarding the topology and routing algorithm, our analysis shows that the analytical model exhibits high accuracy which enables it to be used for almost all topologies with all traffic loads.
机译:到目前为止,在文献中提出了许多分析模型,以评估具有不同拓扑的网络的性能,如超立方体,托伦,网格,高度,笛卡尔产品网络,星形图和K-ARY N-CUBE;然而,据我们所知,没有为不规则网络提供数学模型。因此,作为填补这一差距的努力,本文提出了一种全面的数学模型,用于蠕虫开关的不规则网络中的完全自适应路由。此外,由于我们的方法没有对网络拓扑的假设保持,所以所提出的分析模型涵盖了所有上述模型(即它涵盖了常规和不规则的拓扑)。此外,该模型对应用于网络的止血路由算法没有初步假设。最后,除了关于拓扑和路由算法的模型的一般性之外,我们的分析表明分析模型表现出高精度,使其能够用于所有交通负荷的几乎所有拓扑。

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