Analysis of Topological Properties and Embedding for Folded Hyper-Star Network
Jong-Seok Kim, Chung-Ho Cho, Hyeong-Ok Lee
Abstract
Jong-Seok Kim, Chung-Ho Cho, Hyeong-Ok Lee
Abstract
In this paper, we analyze topological properties and embedding of Folded Hyper-Star network to further improve the network cost of Hypercube, a major interconnection network. Folded Hyper-Star network has a recursive expansion and maximal fault tolerance. The result of embedding is that Folded Hypercube and Torus can be embedded into Folded Hyper-Star FHS(2n,n) with dilation 2. Also, we show Folded Hyper-Star FHS(2n,n) can be embedded into Folded Hypercube with dilation 1.
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In this paper, we analyze topological properties and embedding of Folded Hyper-Star network to further improve the network cost of Hypercube, a major interconnection network. Folded Hyper-Star network has a recursive expansion and maximal fault tolerance. The result of embedding is that Folded Hypercube and Torus can be embedded into Folded Hyper-Star FHS(2n,n) with dilation 2. Also, we show Folded Hyper-Star FHS(2n,n) can be embedded into Folded Hypercube with dilation 1.
Key concepts: Hypercube, Embedding, Dilation (metric space), Star (game theory), Interconnection, Topology (electrical circuits), Torus, Star network