DocumentCode
3423958
Title
Design of high-performance massively parallel architectures under pin limitations and non-uniform propagation delay
Author
Yeh, Chi-Hsiang ; Parhami, Behrooz
Author_Institution
Dept. of Electr. & Comput. Eng., California Univ., Santa Barbara, CA, USA
fYear
1997
fDate
17-21 Mar 1997
Firstpage
58
Lastpage
65
Abstract
Intermodule bandwidth is one of the major constraints on the performance of current and future parallel systems. We propose and evaluate several high performance bus based parallel architectures, including bus based cyclic networks (BCNs) and quotient cyclic networks (BQCNs), which are particularly efficient in view of their respective intermodule communication patterns. The intercluster connection in a BCN is defined on a set of nodes whose addresses are cyclic shifts of one another. The node degree of a basic BCN is 3, while those of BQCNs and enhanced BCNs can vary from a small constant (e.g., 2) to as large as required, thus providing flexibility and effective tradeoff between cost and performance. A variety of algorithms can be performed efficiently on these networks, thus providing the versatility of BCNs and BQCNs
Keywords
parallel architectures; parallel machines; performance evaluation; system buses; BCN; BQCNs; bus based cyclic networks; bus based quotient cyclic networks; cyclic shifts; high performance bus based parallel architectures; high performance massively parallel architecture design; intercluster connection; intermodule bandwidth; intermodule communication patterns; node degree; non uniform propagation delay; parallel systems performance; pin limitations; Bandwidth; Costs; Fault tolerant systems; Hypercubes; Network topology; Parallel architectures; Pins; Propagation delay; Scalability; Tin;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel Algorithms/Architecture Synthesis, 1997. Proceedings., Second Aizu International Symposium
Conference_Location
Aizu-Wakamatsu
Print_ISBN
0-8186-7870-4
Type
conf
DOI
10.1109/AISPAS.1997.581626
Filename
581626
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