Otwarty dostęp

Mathematical Modeling and Examination of the Effects of Structural Redundancy in а Class of Computer-Based Fault Tolerant Systems


Zacytuj

1. BS EN 50126-1:1999, Railway Applications. The Specification and Demonstration of Reliability, Availability, Maintainability and Safety (RAMS). Basic requirements and Generic Process, BSI, ISBN 9780580717512, European Committee for Electrotechnical Standardization, 1999.Search in Google Scholar

2. Standard: CENELEC - EN-50128 Railway Applications - Communication, Signalling and Processing Systems - Software for Railway Control and Protection Systems, European Committee for Electrotechnical Standardization, Brussels, 2011.Search in Google Scholar

3. Standard: CENELEC - EN 50159 Railway Applications - Communication, Signalling and Processing Systems - Safety-Related Communication in Transmission Systems, European Committee for Electrotechnical Standardization, Brussels, 2010.Search in Google Scholar

4. Franeková, M., P. Lüley. Modelling of Failure Effects within Safety-Related Communications with Safety Code for Railway Applications, Mechanic, Transport, Communication, Art. ID 1213, VII 27 - VII 34, 2015.Search in Google Scholar

5. Hristov, H., W. Bo. Safety Critical Computer Systems: Failure Independence and Software Diversity Effects on Reliability of Dual Channel Structures. - Information Technologies and Control, 2014, No 2, pp. 9-18.10.1515/itc-2015-0011Search in Google Scholar

6. Lee, P. A., T. Anderson. Fault Tolerance: Principles and Practice. - Springer Science & Business Media, 2012, pp. 51-62.Search in Google Scholar

7. Li, Z., J. Tian, P. Zhao. Software Reliability Estimate with Duplicated Components Based on Connection Structure. - Cybernetics and Information Technologies, Vol. 14, 2014, No 3. 10.2478/cait-2014-0028Search in Google Scholar

8. Dubrova, E. Fault-Tolerant Design. New York, Springer Verlag, 2013, DOI 10.1007/978-1-4614-2113-9.10.1007/978-1-4614-2113-9Search in Google Scholar

9. She, X., K. S. Mc Elvain. Time Multiplexed Triple Modular Redundancy for Single Event Upset Mitigation. - IEEE Transactions on Nuclear Science, 2009.10.1109/TNS.2009.2021656Search in Google Scholar

10. Hristov, H., G. Popo v, M. Hristova. Comparative Reliability Analysis for Fault-Tolerant Microprocessor Structures. - In: Proc. of 2nd International Scientific Conference “Computer Science”, Greece, 2005, pp. 48-53.Search in Google Scholar

11. Hristov, H., M. Hristova. Modeling Reliability of Fault Tolerant Systems with Homogeneous Reservation. - Sci. J. Mechanics, Transport, Communications, Vol. 1, 2013, No 3, art. 0862, ISSN 1312-3823.Search in Google Scholar

12. Koren, I., C. M. Krishna. Fault-Tolerant Systems. San Francisco, CA, USA, Morgan Kaufmann Publishers, Inc., ©2007, ISBN:0120885255. 10.1016/B978-012088525-1/50007-9Search in Google Scholar

13. Pradhan, D. K. Fault-Tolerant Computer. Prentice Hall, 1996, ISBN:0-13-057887-8.Search in Google Scholar

14. Shooman, M. L. Reliability of Computer Systems and Networks: Fault Tolerance, Analysis, and Design. by John Wiley & Sons, Inc., 2002, pp 83-144, ISBN: 9780471293422.Search in Google Scholar

15. Li, W., Z. Liu, X. Jin, Y. Shi. Reliability Estimation Based on the Degradation Amount Distribution Using Composite Time Series Analysis. - Cybernetics and Information Technologies, Vol. 13, 2013, No 3. 10.2478/cait-2013-0021Search in Google Scholar

eISSN:
1314-4081
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Computer Sciences, Information Technology