Searching for "On Hypercubes in de Bruijn Graphs." – sorted by Relevance.
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A New Architecture and A New Metric for Lightwave Networks
- and is incrementally expandable. Keywords: Optical networks, mesh, torus, de Bruijn graph, ow number, Multi
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An Edge-Isoperimetric Problem for Powers of the Petersen Graph
- as the interconnection topology (such as grids, tori, hypercube, de Bruijn graphs) for multiprocessor architectures
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Copyright 2003, Intel Corporation, All rights reserved.
- , and de Bruijn graphs. However, unlike interconnection networks, DHTs define an overlay graph for all
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Embedding Cartesian Products of Graphs into de Bruijn Graphs
- of common processor networks (as tori, meshes and hypercubes) into de Bruijn graphs of small fixed base. Our
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Wormhole Routing in De Bruijn Networks and Hyper-Debruijn Networks
- (m, n) is the direct product of an order-m hypercube and an order-n debruijn graph. The hyper-deBruijn
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Dense Edge-Disjoint Embedding of Complete Binary Trees in Interconnection Networks
- commonly employed networks: hypercubes, meshes, de Bruijn and shuffle-exchange graphs. The time
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Searching for Edge Disjoint Paths on Hypercube-like Topologies
- .g. [47, 51]). In Chapter 4 and 5, when dealing with the hypercube and the de Bruijn graph, we
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Cartesian products of graphs as spanning subgraphs of de Bruijn graphs (Extended Abstract)
- networks (as tori, meshes and hypercubes) into de Bruijn graphs of fixed small base. Keywords: de Bruijn
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- .g. meshes, tori and hypercubes, into de Bruijn graphs [1]. Our embeddings are optimized with respect
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Runtime Reconfigurable Routing
- graphs, e.g., hypercubes, de Bruijn graphs and cubeconnected cycles, and the rather complex details
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