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Information / Low latency / Electronic engineering / Throughput / Wormhole switching / Channel / Latency / Routing / Network topology / Information theory / Network performance / Computing


775 IEEE TRANSACTIONS ON COMPUTERS, VOL. 39, NO. 6, JUNE 1990 Performance Analysis of k-ary n-cube Interconnection Networks
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Document Date: 2008-04-03 14:18:56


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City

Cambridge / /

Company

General Electric Corporation / XRR AE / k-ARY n-CUBE INTERCONNECTION NETWORKS / Intelligence Laboratory / /

Currency

pence / USD / /

Facility

Massachusetts Institute of Technology / /

IndustryTerm

1K networks / bandwidth direct network / n-cube networks / wireefficient communication networks / indirect networks / 4K networks / point-to-point network / shuffle exchange networks / large networks / e-cube / 4K node networks / concurrent computing / parallel processing / lowdimensional networks / k-ary ncube networks / larger solution / direct networks / low-dimensional networks / 1K node networks / tional network / communication media / dimensional networks / unidirectional network / communication chips / lower dimensional networks / interconnection network / bidirectional networks / to indirect networks / k-ary n-cube networks / interconnection networks / radix networks / direct network / threedimensional packaging technology / dimensional network / indirect network / communication network / larger networks / n-cube interconnection networks / communication networks / higher-dimensional networks / steady-state solution / Fat-tree networks / highdimensional networks / /

NaturalFeature

As stream / /

Organization

Defense Advanced Research Projects Agency / National Science Foundation / Laboratory for Computer Science / Massachusetts Institute of Technology / /

Person

Max Throughput Latencyh / WILLIAM J. DALLY / /

Position

head / store-and-forward / and-forward / author / VLSI architect / /

ProvinceOrState

Massachusetts / /

PublishedMedium

IEEE TRANSACTIONS ON COMPUTERS / /

Technology

VLSI communication chips / 3-D / threedimensional packaging technology / VLSI chip / VLSI technology / flow control / simulation / parallel processing / /

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