Thus our approach should be used for both: making standard computers malfunction tolerant, while special purpose system fault tolerant using malfunction
tolerant hardware elements.
References
1. Avizienis A, Gilley G, Mathur FP, Rennels D, Rohr J, Rubin D (1971) The star (self-testing
and repairing) computer: an investigation of the theory and practice of fault-tolerant computer
design. IEEE Trans Comput 20(11):1312–1321
2. DeAngelis D, Lauro J (1976) Software recovery in the fault-tolerant space borne computer.
FTCS-6 26
3. Schagaev I (1986) Algorithms of computation recovery. Automat Remote Control 7
4. Schagaev I (1987) Algorithms for restoring a computing process. Automat Remote Control 48
(4)
5. Schagaev I et al (2001) Redundancy classification and its applications for fault tolerant
computer design. In IEEE proceedings of man system cybernetics, Arizona Tucson
6. Avizienis A (1985) Architectures of fault tolerant computing systems, 1975. FTCS-5. In 5th
international symposium, pp 3–16
7. Laprie J-C (1984) Dependability modeling and evaluation of software and hardware systems.
In: Fehlertolerierende Rechensysteme, 2. GI/NTG/GMR- Fachtagung, pp 202–215, Springer,
London
8. Laprie J-C et al. Basic concepts and taxonomy of dependable and secure computing. IEEE
Trans Dependable Secure Comput 1(1):11–33
9. Schagaev I (2008) Reliability of malfunction tolerance. In International multi-conference on
computer science and information technology. IMCSIT 2008, pp 733–737
10. O’Brian F (1976) Rollback point insertion strategies. In Digest of papers 6th international
symposium on fault-tolerant computing, 1976, FTCS-6
11. Vilenkin S, Schagaev I (1998) Operating system for fault tolerant SIMD computers
Programmirovanie, (No. 3)
12. Birolini A (2014) Reliability engineering theory and practice, 7th edn, Springer, London
13. Castano V, Schagaev I (2015) Resilient computer system design. Springer, London ISBN
978- 3-319-15068-0
46
4 Generalized Algorithm of Fault Tolerance (GAFT)
tolerant hardware elements.
References
1. Avizienis A, Gilley G, Mathur FP, Rennels D, Rohr J, Rubin D (1971) The star (self-testing
and repairing) computer: an investigation of the theory and practice of fault-tolerant computer
design. IEEE Trans Comput 20(11):1312–1321
2. DeAngelis D, Lauro J (1976) Software recovery in the fault-tolerant space borne computer.
FTCS-6 26
3. Schagaev I (1986) Algorithms of computation recovery. Automat Remote Control 7
4. Schagaev I (1987) Algorithms for restoring a computing process. Automat Remote Control 48
(4)
5. Schagaev I et al (2001) Redundancy classification and its applications for fault tolerant
computer design. In IEEE proceedings of man system cybernetics, Arizona Tucson
6. Avizienis A (1985) Architectures of fault tolerant computing systems, 1975. FTCS-5. In 5th
international symposium, pp 3–16
7. Laprie J-C (1984) Dependability modeling and evaluation of software and hardware systems.
In: Fehlertolerierende Rechensysteme, 2. GI/NTG/GMR- Fachtagung, pp 202–215, Springer,
London
8. Laprie J-C et al. Basic concepts and taxonomy of dependable and secure computing. IEEE
Trans Dependable Secure Comput 1(1):11–33
9. Schagaev I (2008) Reliability of malfunction tolerance. In International multi-conference on
computer science and information technology. IMCSIT 2008, pp 733–737
10. O’Brian F (1976) Rollback point insertion strategies. In Digest of papers 6th international
symposium on fault-tolerant computing, 1976, FTCS-6
11. Vilenkin S, Schagaev I (1998) Operating system for fault tolerant SIMD computers
Programmirovanie, (No. 3)
12. Birolini A (2014) Reliability engineering theory and practice, 7th edn, Springer, London
13. Castano V, Schagaev I (2015) Resilient computer system design. Springer, London ISBN
978- 3-319-15068-0
46
4 Generalized Algorithm of Fault Tolerance (GAFT)
