Development of a system for identifying and analyzing systemic risks in complex technological systems based on an object-oriented approach
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The article justifies developing a system for identifying and analyzing systemic
risk in complex technological environments using an object-oriented approach. The
problem is driven by rising interdependencies, data volumes, and legacy integrations in
high-tech sectors. The theoretical base is the Unified Foundational Ontology and the KISS principle, which sustain conceptual coherence and constrain complexity. The
methodology combines user stories, architectural patterns, OOP principles
(encapsulation, inheritance, polymorphism, abstraction), and safety engineering:
HAZOP, FMEA, and PRA with sensitivity and uncertainty analysis. Stages include
requirements elicitation, modeling, prototyping, and assessment of flows and
vulnerabilities. Modularity enables threat localization, staged deployment, and
integration with legacy components. Novelty lies in synthesizing ontological modeling
with OO methods and in directions: e.g., object-oriented Bayesian networks (OOBN),
big data analytics, expanding the Disruption Knowledge Base, and DisruptiOn Graphs
for analyzing disruption scenarios and risk propagation. Practical value: guidance for
designing and modernizing systems that require formal risk models. Limitations: code
complexity, performance trade-offs with encapsulation, choice of granularity, risks of
faulty requirement identification, and adoption barriers. No empirical measurements
are reported; the work is conceptual-methodological and sets directions for further
verification.
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Stoliarenko Т. Development of a system for identifying and analyzing systemic risks in complex technological systems based on an object-oriented approach / Т. Stoliarenko // MACHINE`S WORD: електронна збірка матеріалів. – Харків : проєкт Prof2IT, 2025. – Вип.1 – С. 540-549.