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The Pancake-Hypercube Hybrid Network: A promising design feasible for VLSI implementations

机译:Pancake-Hypercube混合网络:VLSI实施可行的有前途的设计

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Symmetric graphs, such as the hypercube, the star, and the pancake have been widely used as processor/communication interconnection networks. The hypercube has been recognized as the ideal structure for parallel computing. However, the implementation feasibility of the hypercube remains questionable when it comes to VLSI layout design for a large size cube-based system. The star and pancake networks were proposed recently as attractive alternatives to the popular hypercube for interconnecting processors on a parallel computer. Both the star and the pancake were shown having many desirable properties of the hypercube, and in several important aspects, they are better than the hypercube. Unfortunately, both the star and pancake networks have many serious disadvantages comparing with the hypercube. In this paper, we propose a class of new networks, the pancake-hypercube hybrid network (or PH networks). The PH network is constructed by combining both the hypercube and the pancake graphs so that it remedies several major disadvantages of the hypercube and pancake graph. This new class of networks provide more flexibility in choosing the size, degree, diameter, fault tolerance, and many other properties when designing massively parallel computing structures feasible for VLSI implementations.
机译:对称图(例如超立方体,星形和煎饼)已被广泛用作处理器/通信互连网络。超立方体已被公认为是并行计算的理想结构。但是,在涉及基于大型多维数据集的系统的VLSI布局设计时,超多维数据集的实现可行性仍存在疑问。最近提出了星形和薄煎饼网络,作为流行的超立方体的有吸引力的替代方案,用于在并行计算机上互连处理器。星形和煎饼都显示出具有超立方体的许多理想特性,并且在几个重要方面,它们都比超立方体更好。不幸的是,与超立方体相比,星形和薄煎饼网络都具有许多严重的缺点。在本文中,我们提出了一类新网络,即煎饼-超立方体混合网络(或PH网络)。 PH网络是通过组合超立方体图和煎饼图而构建的,因此它可以弥补超立方体图和煎饼图的几个主要缺点。在设计适用于VLSI实现的大规模并行计算结构时,此类新型网络在选择大小,度数,直径,容错性和许多其他属性时提供了更大的灵活性。

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