Agentic Artificial Intelligence for Ethical Cybersecurity in Uganda: A Reinforcement Learning Framework for Threat Detection in Resource-Constrained Environments
Ibrahim Adabara, Bashir Olaniyi Sadiq, Aliyu Nuhu Shuaibu, Yale Ibrahim Danjuma, Venkateswarlu Maninti, Mutebi Joe

TL;DR
This paper introduces an agentic AI framework using reinforcement learning and ethical governance to enhance cybersecurity in Uganda's resource-limited digital infrastructure, achieving perfect detection and ethical compliance.
Contribution
It presents a novel reinforcement learning-based cybersecurity framework with explicit ethical constraints tailored for resource-constrained environments like Uganda.
Findings
Achieved 100% threat detection rate and zero false positives.
Demonstrated ethical compliance and auditability of the AI system.
Outperformed traditional rule-based systems in accuracy and fairness.
Abstract
Uganda's rapid digital transformation, supported by national strategies such as Vision 2040 and the Digital Transformation Roadmap, has expanded reliance on networked services while simultaneously increasing exposure to sophisticated cyber threats. In resource-constrained settings, commonly deployed rule-based intrusion detection systems lack the adaptability and ethical safeguards needed to address evolving attack patterns, leading to undetected breaches and excessive blocking of legitimate traffic. This study proposes an Agentic Artificial Intelligence (AAI) framework that integrates reinforcement learning, an explicit ethical governance layer, and human oversight to deliver adaptive and trustworthy cybersecurity. A CPU-optimized simulation environment was developed using a five-node network topology that mirrors key elements of Uganda's critical digital infrastructure and generates…
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Taxonomy
TopicsInformation and Cyber Security · Network Security and Intrusion Detection · Advanced Malware Detection Techniques
