Bit-permute multistage interconnection networks

In this paper, we consider a class of log N stage interconnection networks called Bit-Permute Multistage Interconnection Networks (BPMIN's) where the ports of each switch of a stage are different at only one bit position of their labels. We describe the decomposition structure of the BPMIN'...

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Published inMicroprocessing and microprogramming Vol. 41; no. 7; pp. 449 - 468
Main Authors Kim, Myung-Kyun, Yoon, Hyunsoo, Maeng, S.R.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.11.1995
North-Holland
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ISSN0165-6074
DOI10.1016/0165-6074(95)00017-I

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Abstract In this paper, we consider a class of log N stage interconnection networks called Bit-Permute Multistage Interconnection Networks (BPMIN's) where the ports of each switch of a stage are different at only one bit position of their labels. We describe the decomposition structure of the BPMIN's and prove that all of the BPMIN's are topologically equivalent and some of them are functionally equivalent. We also identify a class of 2 log N stage rearrangeable networks called symmetric BPMIN's where two log N stage BPMIN's are connected in sequence. The symmetric BPMIN's are either symmetric or asymmetric and regular or irregular in their inter-stage connections and can be reduced into 2 log N-1 stages by combining the two center stages. We show that the symmetric BPMIN's constitute larger class of rearrangeable networks than ever known. We also propose a general routing algorithm for the symmetric BPMIN's by modifying slightly the looping algorithm of the Benes network.
AbstractList In this paper, we consider a class of log N stage interconnection networks called Bit-Permute Multistage Interconnection Networks (BPMIN's) where the ports of each switch of a stage are different at only one bit position of their labels. We describe the decomposition structure of the BPMIN's and prove that all of the BPMIN's are topologically equivalent and some of them are functionally equivalent. We also identify a class of 2 log N stage rearrangeable networks called symmetric BPMIN's where two log N stage BPMIN's are connected in sequence. The symmetric BPMIN's are either symmetric or asymmetric and regular or irregular in their inter-stage connections and can be reduced into 2 log N-1 stages by combining the two center stages. We show that the symmetric BPMIN's constitute larger class of rearrangeable networks than ever known. We also propose a general routing algorithm for the symmetric BPMIN's by modifying slightly the looping algorithm of the Benes network.
Author Yoon, Hyunsoo
Kim, Myung-Kyun
Maeng, S.R.
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10.1109/T-C.1974.223927
10.1002/j.1538-7305.1953.tb01433.x
10.1109/TC.1981.6312171
10.1002/j.1538-7305.1962.tb03990.x
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10.1109/TC.1983.1676295
10.1145/321439.321449
10.1109/TC.1986.1676800
10.1109/12.53604
10.1002/j.1538-7305.1971.tb02569.x
10.1109/12.324560
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Issue 7
Keywords Functional equivalence
Routing algorithm
Multistage interconnection networks
Topological equivalence
Rearrangeable networks
Routing
Computer system
Equivalence
Algorithm
Interconnected power system
Multilayer network
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Snippet In this paper, we consider a class of log N stage interconnection networks called Bit-Permute Multistage Interconnection Networks (BPMIN's) where the ports of...
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SubjectTerms Algorithmics. Computability. Computer arithmetics
Applied sciences
Computer science; control theory; systems
Computer systems and distributed systems. User interface
Exact sciences and technology
Functional equivalence
Interconnected networks
Multistage interconnection networks
Networks and services in france and abroad
Rearrangeable networks
Routing algorithm
Software
Telecommunications
Telecommunications and information theory
Teleprocessing networks. Isdn
Theoretical computing
Topological equivalence
Title Bit-permute multistage interconnection networks
URI https://dx.doi.org/10.1016/0165-6074(95)00017-I
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