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The Effects of an ARMOR-Based SIFT Environment on the Performance and Dependability of User Applications.

, , , , , and . IEEE Trans. Software Eng., 30 (4): 257-277 (2004)

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Joint Panel - IPDS and Workshop on Dependability Benchmarking., , , , , , , , , and . DSN, IEEE Computer Society, (2002)Toward Application-Aware Security and Reliability., , , , , , and . IEEE Secur. Priv., 5 (1): 57-62 (2007)An embedded reconfigurable architecture for patient-specific multi-paramater medical monitoring., , , and . EMBC, page 1896-1900. IEEE, (2011)The Effects of an ARMOR-Based SIFT Environment on the Performance and Dependability of User Applications., , , , , and . IEEE Trans. Software Eng., 30 (4): 257-277 (2004)Formal Reasoning of Various Categories of Widely Exploited Security Vulnerabilities by Pointer Taintedness Semantics., , , and . SEC, volume 147 of IFIP, page 83-100. Kluwer / Springer, (2004)Hierarchical Error Detection in a Software Implemented Fault Tolerance (SIFT) Environment., , , , and . IEEE Trans. Knowl. Data Eng., 12 (2): 203-224 (2000)Pervasive embedded systems for detection of traumatic brain injury., , , , , and . ICME, page 1704-1707. IEEE, (2009)LoMoS: Less-Online/More-Offline Signatures for Extremely Time-Critical Systems., , , , , , , and . IEEE Trans. Smart Grid, 13 (4): 3214-3226 (2022)On Practicality of Using ARM TrustZone Trusted Execution Environment for Securing Programmable Logic Controllers., , , , , and . CoRR, (2024)Watch Out for the Safety-Threatening Actors: Proactively Mitigating Safety Hazards., , , and . CoRR, (2022)