Krízový Manažment 2010, 9(1):93-98 | DOI: 10.26552/krm.C.2010.1.93-98

A REVIEW OF FAULT TOLERANCE WITH THE APPLICATION TO PARALLEL COMPUTER SYSTEMS

Milan ROŠKO, Jozef ŽIVČÁK
Technical University of Košice, Faculty of Mechanical Engineering, Department of Biomedical Engineering, Automation and Measurement, Letná 9/A, 042 00 Košice (Slovak Republic)

In this paper we review the main definitions and concepts of fault tolerance of a system, and discuss various approaches of implementing the ability to withstand faulty subsystems in a complex system, with the application to parallel computer systems. We describe some approaches that support fault tolerance through a process of recovery from a failure. We also describe parallel fault tolerant system model on basis of Dataflow computer system designed at Technical University of Košice, Faculty of Electrical Engineering and Informatics, which is able to recover after error.

Kľúčové slová: Fault Tolerance, Parallel Systems, DataFlow Model

Uverejnené: March 30, 2010  Zobraziť citáciu

ACS AIP APA ASA Harvard Chicago Chicago Notes IEEE ISO690 MLA NLM Turabian Vancouver
ROŠKO, M., & ŽIVČÁK, J. (2010). A REVIEW OF FAULT TOLERANCE WITH THE APPLICATION TO PARALLEL COMPUTER SYSTEMS. Krízový Manažment9(1), 93-98. doi: 10.26552/krm.C.2010.1.93-98
Stiahnuť citáciu

Referencie

  1. ISERMANN, R.: Fault-diagnosis systems: an introduction from fault detection to fault tolerance, Springer, 2006, ISBN 3-540-24112-4. Prejsť k pôvodnému zdroju...
  2. LEVI, S.T. - AGRAWALA, A. K.: Fault Tolerant System Design. Mc Graw-Hill Inc.,1994, ISBN 0-07-037515-1.
  3. VOKOROKOS, L.: Diagnosis of fault tolerant compound system using the observer. Journal of Electrical Engineering, Vol.51, No.11-12, pp. 333-336, 2000, ISSN 1335-3632.
  4. PATTON, R. J. - FRANK, P. M. - CLARK, R. N.: Issues of Fault Diagnosis for Dynamic Systems. Springer, 2000, ISBN 3-540-19968-3. Prejsť k pôvodnému zdroju...
  5. BLANKE, M. - KINNEART, M. - LUNZE, J. - STAROSWIECKI, M.: Diagnosis and Fault-Tolerant Control. 2nd Ed. Springer, 2006, ISBN 3-540-35652-5.
  6. KORBICZ, J. - KOSCIELNY, J. - KOWALCZUK, Z. - CHOLEWA, W.: Fault Diagnosis. Models, Artificial Intelligence, Applications. Springer, 2004, ISBN 3-540-40767-7. Prejsť k pôvodnému zdroju...
  7. VOKOROKOS, L.: Data Flow Computing Model: Application for Parallel Computer Systems Diagnosis. Computing and informatics, formerly: Computers and artificial intelligence, Vol. 20, No. 4/2001, SAP, pp. 411-428, ISSN 1335-9150.
  8. VOKOROKOS, L, et al: Research of Parallel Computing Environment Used for Execution of Computing Processes in Specialized Application Areas: Theory, Models, Simulation, Assessment, Application Determination. VEGA No.: 1/2174/05. Technical University, KPI FEI, Košice. Technical Report, 2008.
  9. JELŠINA, M. - ROŠKO, M. - ADAM, N.: Multipipelined and Multithreaded Architectures Approach - Overview of Dataflow Architecture. Proc. of 6th Int. Scientific Conf. on Electronic Comp. and Informatics 2004, ECI'2004, Košice-Herľany, 2004, pp.241-246.
  10. JELŠINA, M: Computer Architectures: Principles, Structure Organization, Functions. Technical University Ko šice, EF KPI. 467 P., 2002, ISBN 8089066402.
  11. VOKOROKOS, L.: Faults diagnosis of control system using the observer. 4th IEEE International Conference on Intelligent Engineering Systems. Portorož, Slovenia, 2000, pp. 189-192.

Tento článok je publikovaný v režime otvoreného prístupu k vedeckým informáciam (Open Access), ktorý je distribuovaný pod licenciou Creative Commons Attribution 4.0 International License (CC BY 4.0), ktorá umožňuje distribúciu, reprodukciu a zmeny, ak sa pôvodna práca riadne ocitovaná. Distribúcia, reprodukcia alebo zmeny, ktoré nie sú v súlade s podmienkami tejto licencie, nie sú povolené.