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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >3D hexagonal network: modeling, topological properties, addressing scheme, and optimal routing algorithm
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3D hexagonal network: modeling, topological properties, addressing scheme, and optimal routing algorithm

机译:3D六角形网络:建模,拓扑属性,寻址方案和最佳路由算法

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摘要

The 2D hexagonal mesh, based on triangle plane tessellation, is considered as a multiprocessor interconnection network. The 3D hexagonal mesh is presented as a natural extension of the hexagonal mesh. Although the topological properties of the 2D hexagonal mesh are well known, existing addressing schemes are not suitable to be extended to 3D hexagonal mesh. Then, we present, in this paper, a new addressing scheme and an optimal routing algorithm for 2D hexagonal network based on the distance formula and using shortest paths. We propose also a 3D hexagonal network that can be built with 2D hexagonal meshes as a natural generalization. We also present some topological properties, an efficient addressing scheme, and an optimal routing algorithm based on our 2D routing algorithm.
机译:基于三角形平面细分的2D六角形网格被视为多处理器互连网络。 3D六角形网格表示为六角形网格的自然扩展。尽管2D六角形网格的拓扑属性是众所周知的,但是现有的寻址方案不适合扩展到3D六角形网格。然后,在本文中,我们提出了一种基于距离公式并使用最短路径的二维六边形网络的新寻址方案和最佳路由算法。我们还提出了3D六角形网络,可以自然地将其与2D六角形网格一起构建。我们还介绍了一些拓扑属性,高效的寻址方案以及基于2D路由算法的最佳路由算法。

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