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Contribution of Communications to Dependability in Massively-Defective General-Purpose Nanoarchitectures.

, , , and . IOLTS, page 219-228. IEEE Computer Society, (2006)

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MEFISTO-L: A VHDL-Based Fault Injection Tool for the Experimental Assessment of Fault Tolerance., , and . FTCS, page 168-173. IEEE Computer Society, (1998)Fault Injection and Dependability Evaluation of Fault-Tolerant Systems., , , , and . IEEE Trans. Computers, 42 (8): 913-923 (1993)Design of Self-Checking MOS-LSI Circuits: Application to a Four-Bit Microprocessor., and . IEEE Trans. Computers, 29 (6): 532-537 (1980)Estimators for Fault Tolerance Coverage Evaluation., , , and . IEEE Trans. Computers, 44 (2): 261-274 (1995)Estimators for Fault Tolerance Coverage Evaluation., , , and . FTCS, page 228-237. IEEE Computer Society, (1993)System Dependability: Characterization and Benchmarking., and . Advances in Computers, (2012)Fault Injection for the Formal Testing of Fault Tolerance., , , and . FTCS, page 345-354. IEEE Computer Society, (1992)A Method for Operator Error Detection Based on Plan Recognition., and . SAFECOMP, volume 1698 of Lecture Notes in Computer Science, page 125-138. Springer, (1999)Contribution of Communications to Dependability in Massively-Defective General-Purpose Nanoarchitectures., , , and . IOLTS, page 219-228. IEEE Computer Society, (2006)Experimental Analysis of the Errors Induced into Linux by Three Fault Injection Techniques., , , and . DSN, page 331-336. IEEE Computer Society, (2002)