Reliability analysis of repairable network system of three computer labs connected with a server under 2- out- of- 3 G configuration
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Engineering
Link
https://link.springer.com/content/pdf/10.1007/s41872-020-00129-w.pdf
Reference18 articles.
1. Ding Z, Xu T, Ye T, Zhou Y (2016) Online prediction and improvement of reliability for service-oriented systems. IEEE Trans Reliab 65(3):1133–1148
2. Gebre BA, Ramirez-Marquez JE (2007) Element substitution algorithm for general two-terminal network reliability analyses. IEEE Trans Reliab 39(3):265–275
3. Kiu SW, McAllister DF (1988) Reliability optimization of computer-communication networks. IEEE Trans Rel 37(5):475–483
4. Koide T, Shinmori S, Ishii H (2005) Efficient computation of network reliability importance on k-terminal reliability. Int J Reliab Qual Saf Eng 12(3):213–226
5. Lado AK, Singh VV (2019) Cost Assessment of complex repairable system consisting two subsystems in Series configuration using Gumbel Hougaard family copula. Int J Qual Reliabil Manag 36(10):1683–1698
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