Abstract
Multistage interconnection networks are used as a medium for interconnecting processors and memories in multiprocessor systems. Multistage interconnection networks are an effective substitute for crossbar switches, used in telephone network systems and parallel computers, due to their low cost, better performance and easy maintainability. In this paper, we propose new fault-tolerant hybrid multistage interconnection networks obtained from shuffle exchange gamma interconnection network (SEGIN) and logical neighborhood network named as shuffle exchange gamma logical neighborhood interconnection network (SEGLNIN). We evaluated the performance of SEGLNIN in terms of disjoint paths, reliability and hardware cost and compared it with some well-known MINs like shuffle exchange network (SEN), shuffle exchange network with one extra stage (SEN +) and shuffle exchange network with two extra stages (SEN + 2), SEGIN-1, and SEGIN-2. The results illustrate that the performance of the proposed SEGLNIN is better than that of the compared networks in terms of reliability and disjoint paths.
Similar content being viewed by others
References
Pattavina A (1998) Switching theory: architectures and performance in broadband ATM Networks. Wiley, Chichester
Yunus NAM, Othman M (2015) Reliability evaluation for shuffle exchange interconnection network. Procedia Comput Sci 59:162–170
Bistouni F, Jahanshahi M (2014) Analyzing the reliability of shuffle-exchange networks using reliability block diagrams. Reliab Eng Syst Saf 132:97–106
Abd-El-Barr M (2007) Design and analysis of reliable and fault-tolerant computer systems. Imperial College Press, London
Lang T, Stone HS (1976) A Shuffle-exchange network with simplified control. IEEE Trans Comput C-25(1):55–65
Gunawan I (2008) Reliability analysis of shuffle-exchange network systems. Reliab Eng Syst Saf 93(2):271–276
Bistouni F, Jahanshahi M (2015) Pars network: a multistage interconnection network with fault-tolerance capability. J Parallel Distrib Comput 75(2015):168–183
Khanna G, Mishra R, Chaturvedi SK (2016) 4DGIN-3: a new design layout of 4-disjoint gamma interconnection network. J Parallel Distrib Comput 98:40–47
Goyal NK, Rajkumar S (2017) Multi-source multi-terminal reliability evaluation of interconnection networks. Microsyst Technol 23(1):255–274
Gunawan I (2008) Performance analysis of a multistage interconnection network system based on a minimum cut set method. Int J Perform Eng 4(2):111–120
Rajkumar S, Goyal NK (2016) Review of multistage interconnection networks reliability and fault-tolerance. IETE Tech Rev 33(3):223–230
Khanna G, Mishra R, Chaturvedi SK (2017) Design of fault-tolerant shuffle exchange gamma interconnection network layouts. J Interconnect Netw 17(02):1750005
IEC 1078 (1991) Analysis techniques for dependability-reliability block diagrams, 1st edn. Document Center, Inc., Belmont
Rajkumar S, Goyal NK (2014) Design of 4-disjoint gamma interconnection network layouts and reliability analysis of gamma interconnection networks. J Supercomput 69(1):468–491
Acknowledgements
Authors acknowledge the National Institute of Technology Jamshedpur, India, for providing the research opportunity and facilities.
Author information
Authors and Affiliations
Corresponding author
Ethics declarations
Conflict of interest
The authors confirm that this article content has no conflicts of interest.
Additional information
Publisher's Note
Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.
Rights and permissions
About this article
Cite this article
Prakash, A., Yadav, D.K. Design and reliability analysis of fault-tolerant shuffle exchange gamma logical neighborhood interconnection network. J Supercomput 75, 7934–7951 (2019). https://doi.org/10.1007/s11227-019-02929-z
Published:
Issue Date:
DOI: https://doi.org/10.1007/s11227-019-02929-z