DocumentCode
3304253
Title
A New Family of Hybrid Topologies for Large-Scale Interconnection Networks
Author
Peñaranda, Roberto ; Gómez, Crispín ; Gómez, María Engracia ; López, Pedro ; Duato, Jose
Author_Institution
Univ. Politec. de Valencia, Valencia, Spain
fYear
2012
fDate
23-25 Aug. 2012
Firstpage
220
Lastpage
227
Abstract
In large supercomputers the topology of the interconnection network is a key design issue that impacts the performance and cost of the whole system. Direct topologies provide a reduced hardware cost, but as the number of dimensions is conditioned by 3D wiring restrictions, a high number of nodes per dimension is used, which increases communication latency and reduces network throughput. On the other hand, indirect topologies can provide better performance for large network sizes, but at the cost of a high amount of switches and links. In this paper we propose a new family of topologies that combines the best features of both direct and indirect topologies to efficiently connect an extremely high number of nodes. In particular, we propose an n-dimensional topology where the nodes of each dimension are connected through a small indirect topology. This combination results in a family of topologies that provides high performance, with latency and throughput figures of merit close to indirect topologies, but with a lower hardware cost. In particular, it is able to double the throughput obtained per switching element of indirect topologies. Moreover, the layout of the topology is much simpler than in indirect topologies. Indeed, its fault-tolerance degree is equal or higher than the one for direct and indirect topologies.
Keywords
fault tolerant computing; multiprocessor interconnection networks; network topology; parallel machines; 3D wiring restrictions; fault-tolerance degree; hybrid topologies; indirect topologies; large-scale interconnection networks; n-dimensional topology; supercomputers; switching element; Artificial neural networks; Hardware; Network topology; Routing; Throughput; Topology; Wiring; Interconnection networks; supercomputers; topology;
fLanguage
English
Publisher
ieee
Conference_Titel
Network Computing and Applications (NCA), 2012 11th IEEE International Symposium on
Conference_Location
Cambridge, MA
Print_ISBN
978-1-4673-2214-0
Type
conf
DOI
10.1109/NCA.2012.22
Filename
6299098
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