DocumentCode :
433493
Title :
A constraint-based performance comparison of hypercube and star multicomputer with failures
Author :
Rezazad, M. ; Sarbazi-Azad, H.
Author_Institution :
Sch. of Comput. Sci., IPM, Iran
Volume :
1
fYear :
2005
fDate :
28-30 March 2005
Firstpage :
841
Abstract :
Many theoretical studies have compared the hypercube and star graphs from a graph theoretical viewpoint, under structural and algorithmic properties. None of these studies have, however, considered real working conditions and implementation constraints. In this paper, the hypercube and star graphs are compared in view of fault tolerance and technological implementation constraints. In order to realize a fair comparison, we use the unsafety-vector fault tolerant routing algorithm, recently introduced in (J. Al-Sadi et al., 2002) and (R. Rezazaad et al., 2004), for the hypercube and star graph. Under two implementation constraints, namely constant bisection bandwidth and constant node pin-out, we have compared the performance of the two networks for different fault rates. The results obtained through simulation experiments reveal that, in the presence of low fault rates, the star graph is of better performance than the hypercube.
Keywords :
fault tolerant computing; graph theory; hypercube networks; performance evaluation; constraint-based performance comparison; fault tolerant routing algorithm; hypercube network; star graph; star multicomputer; Algorithm design and analysis; Bandwidth; Computer science; Delay effects; Employee welfare; Fault tolerance; Hypercubes; Multiprocessor interconnection networks; Network topology; Routing; Fault-tolerant routing; Hypercube; Implementation constraints; Interconnection networks; Multicomputers; Performance comparison; Star graph;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Information Networking and Applications, 2005. AINA 2005. 19th International Conference on
ISSN :
1550-445X
Print_ISBN :
0-7695-2249-1
Type :
conf
DOI :
10.1109/AINA.2005.16
Filename :
1423593
Link To Document :
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