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Topological properties of hypercubes

IEEE Transactions on Computers · 1988 · Vol. 37(7) · pp. 867–872
Yousef SaadMartin H. Schultz

Abstract

The n-dimensional hypercube is a highly concurrent loosely coupled multiprocessor based on the binary n-cube topology. Machines based on the hypercube topology have been advocated as ideal parallel architectures for their powerful interconnection features. The authors examine the hypercube from the graph-theory point of view and consider those features that make its connectivity so appealing. Among other things, they propose a theoretical characterization of the n-cube as a graph and and show how to map various other topologies into a hypercube.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Interconnection Networks and SystemsParallel Computing and Optimization TechniquesDistributed systems and fault toleranceHypercubeNetwork topologyComputer scienceInterconnectionMultiprocessingGraph theoryCube (algebra)Topology (electrical circuits)GraphTheoretical computer science
Citations
1,355
FWCI
64.68
field-weighted impact
References
11
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References
The NYU Ultracomputer—Designing an MIMD Shared Memory Parallel Computer
IEEE Transactions on Computers · 1983 · 745 citations
Generalized Hypercube and Hyperbus Structures for a Computer Network
IEEE Transactions on Computers · 1984 · 851 citations
Topological properties of hypercubes
IEEE Transactions on Computers · 1988 · 1,355 citations
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