DocumentCode :
2427614
Title :
Practicable layouts for optimal circulant graphs
Author :
Vallejo, Enrique ; Beivide, Ramón ; Martínez, Carmen
Author_Institution :
Comput. Archit. Group, Cantabria Univ., Santander, Spain
fYear :
2005
fDate :
9-11 Feb. 2005
Firstpage :
118
Lastpage :
125
Abstract :
Circulant graphs have been deeply studied in technical literature. Midimew networks are a class of distance-related optimal circulant graphs of degree four which have applications in network engineering and coding theory. In this research, a new layout for Midimew networks which keeps the maximum link length under the value √5 is presented, considering unitary length as the subjacent mesh link´s length. The most interesting Midimew sizes are studied: dense and quasidense cases, with bounded link length layouts in both cases, although the proposed algorithm is also valid for other network sizes. These results improve a previously known result in a maximum factor of √5. Also, the number of planar layers necessary to implement this layout is studied. In addition, an expandability method is presented which enables network expansion without modifying existing nodes or links, except those needed to connect to new nodes. Finally, this layout is compared to the classical folded Torus. When considering both physical and topological distances and propagation delays our proposal is clearly competitive against Tori.
Keywords :
graph theory; multiprocessor interconnection networks; Midimew networks; bounded link length layouts; expandability method; interconnections; maximum link length; optimal circulant graphs; planar layers; propagation delays; topological distances; Application software; Codes; Computer architecture; Concurrent computing; Hypercubes; Network topology; Propagation delay; Proposals; Switches; System-on-a-chip;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel, Distributed and Network-Based Processing, 2005. PDP 2005. 13th Euromicro Conference on
ISSN :
1066-6192
Print_ISBN :
0-7695-2280-7
Type :
conf
DOI :
10.1109/EMPDP.2005.32
Filename :
1386050
Link To Document :
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