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March 30, 2026Scientific Reports0 citationsOpen Access

Mathematical modeling of adaptive information security strategies using composite behavior models

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ANAhmed Al NuaimKing Faisal UniversityANAbdullah Al NuaimKing Faisal UniversityMNMohd NadeemShri Ramswaroop Memorial University

Key Points

  • The research aims to develop a unified mathematical framework for adaptive information security strategies.
  • Proposed a mathematical modeling approach combining composite behavior models.
  • Developed a unified dynamic model to capture attacker and defender behaviors.
  • Utilized system dynamics and game theory for adaptation rules.
  • Demonstrated improvements in threat detection and mitigation speed.
  • Showed enhanced resource optimization through model implementation.
  • The proposed method outperformed existing approaches in scalability and effectiveness.

Abstract

Most existing adaptive information security approaches focus on simplified behavioral patterns and work as isolated models. This limits their effectiveness against advanced and dynamic cyber threats. Therefore, there is an emergent requirement for a mathematically unified framework that can dynamically capture and forecast the aggregate behavior of both the attacker and the defender in a complex environment. The paper proposes a mathematical modeling approach that combines composite behavior models into adaptive information security strategies. The framework encapsulates heterogeneous behavioral patterns into a unified dynamic model that can adapt to an ever-changing threat landscape. This result in novel adaptation rules derived from system dynamics and game theory, with the aim of enabling proactive defense mechanisms that can adapt to real-time challenges posed by adversary actors. The outcomes presented in this paper demonstrate strong improvements in threat detection, mitigation speed, and resource optimization through systematic model implementation, comprehensive simulation, and positive statistical hypothesis testing. The comparison reveals that the proposed method is generally superior to existing methods in scalability and effectiveness. It presents a new class of adaptive cybersecurity models that have deeper behavioral insights and enhanced resilience in complicated threat environments.

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Cite This Study

Nuaim et al. (2026) studied this question.

synapsesocial.com/papers/69c9c5c5f8fdd13afe0bdc7ehttps://doi.org/10.1038/s41598-026-45315-5
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