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Quantitative Assessment of Fault-Tolerant Software Architecture., и . Fehlertolerierende Rechensysteme, том 147 из Informatik-Fachberichte, стр. 284-297. Springer, (1987)Licensing Reliable Embedded Software for Safety-Critical Applications.. Real Time Syst., 28 (2-3): 217-236 (2004)Criticality and Sensitivity Analysis for Off-the-Shelf-Components in Safety-Relevant Systems.. ISAS-SCI (1), стр. 589-594. IIIS, (2001)Evaluation of Pre-Developed Software for Usage in Safety-Critical Systems.. EUROMICRO, стр. 2193-2199. IEEE Computer Society, (2000)Model-Based Design and Testing of Decisional Autonomy and Cooperation in Cyber-Physical Systems., , , и . EUROMICRO-SEAA, стр. 479-483. IEEE Computer Society, (2015)A Classification of Software Diversity Degrees Induced by an Analysis of Fault Types to be Tolerated.. Fault-Tolerant Computing Systems, том 283 из Informatik-Fachberichte, стр. 383-395. Springer, (1991)Testing the Cooperation of Autonomous Robotic Agents., и . ICSOFT EA, стр. 287-296. SciTePress, (2014)Automatische, Modellbasierte Testdatengenerierung durch Einsatz Evolutionärer Verfahren., , , и . GI Jahrestagung (2), том P-110 из LNI, стр. 393-398. GI, (2007)Analysis of Potential Code Vulnerabilities Involving Overlapping Instructions., , , и . SAFECOMP Workshops, том 10489 из Lecture Notes in Computer Science, стр. 103-113. Springer, (2017)The Impact of Voter Granularity in Fault-Tolerant Software on System Reliability and Avaiability.. Fehlertolerierende Rechensysteme, том 214 из Informatik-Fachberichte, стр. 174-185. Springer, (1989)