DOE OSTI · 3020488
Resilience Through Data-Driven, Intelligent Designed Control: A Formal Methods Approach
Abstract
The PNNL and GTRI team developed a strategy to integrate temporal logic rule specification for detection of cyber-intrusion in the source code and control algorithms of CPS using advanced cyber-data. The GTRI team utilized its capabilities in rule synthesis and temporal logic specifications for software assurance and verification to detect and predict impact of cyber-intrusions and malware in the computational and control algorithms of cyber-physical systems. The team also developed a testing and verification approach that could be used to validate the suggested approach against a realistic use-case CPS showcasing improvements in system impact prediction performance. Temporal logic offers a compact expression of events in absolute and relative time and has a formalized translation to state machines. As such, temporal logic rules can feasibly be synthesized to any system as a rule engine, with the process being formally verified to be correct. The goal here is to utilize temporal logic rules to detect cyber-attacks and manipulations in the computational algorithms and provide real-time software assurance and verification guarantees.
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Nazir, Mohammad Nawaf [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)], Adetola, Veronica A. [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)], Litchfield, Samuel L. [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)]. 2026-02-19. Resilience Through Data-Driven, Intelligent Designed Control: A Formal Methods Approach. https://doi.org/10.2172/3020488
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