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April 15, 20260 citationsOpen Access

State-Driven Access Control for Emergent Behavior in Agentic Systems

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AMAnandadip Mandal

Key Points

  • The research aims to establish a model for access control in agentic systems to manage emergent behavior caused by interactions among agents.
  • Developed a state-driven access control model treating system state as a primary security element.
  • Extended traditional authorization semantics to outcome-complete forms.
  • Formalized safety and liveness properties for agentic systems.
  • Integrated transition validation and failure-aware recovery into the authorization process.
  • All reachable states were shown to remain invariant-preserving across successful and failure-induced paths.
  • The model effectively prevents policy-compliant actions from causing unsafe emergent behavior.
  • Demonstrated that emergent behavior control is crucial for access control in non-deterministic environments.

Abstract

Agentic systems exhibit emergent behavior arising from interactions among multiple agents operating over shared and evolving state. While individual actions may be authorized according to policy, their composition—under non-deterministic execution, partial failures, and concurrency—can lead to unsafe or inconsistent system states. This paper introduces a state-driven access control model that treats system state as a first-class security object and enforces workflow integrity as a core security objective. The proposed model extends traditional authorization semantics to an outcome-complete form, requiring that all possible execution outcomes, including both successful and failure-induced transitions, satisfy validity, safety, and consistency constraints. We formalize safety and liveness properties and show that all reachable states remain invariant-preserving across both successful and failure-induced execution paths, even under concurrent interactions. By integrating transition validation, failure-aware recovery, and commit-time consistency into the authorization process, the model prevents policy-compliant actions from inducing emergent unsafe behavior. This establishes control of emergent behavior under non-deterministic execution as a fundamental requirement for access control in agentic systems.

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Cite This Study

Anandadip Mandal (2026) studied this question.

synapsesocial.com/papers/69df2c2fe4eeef8a2a6b138fhttps://doi.org/10.5281/zenodo.19560397
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Also Consider

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  1. 1Behavior-Constrained Agent Systems: A Control-Theoretic View of Safe Authorization2026
  2. 2A Unified Architecture for Agentic AI: Semantic, Epistemic and Safety Dominant Event Driven Systems2026
  3. 3Security Properties of Execution-Time Authorization in Agent Systems: Threat Model, Trust Boundaries, and Replay-Forensic Guarantees2026
  4. 4Agent Runtime Governance: Dynamic Permission Control for Autonomous AI Systems2026
  5. 5Architecture-Level Safety Enforcement for Autonomous Systems through Non-Bypassable Execution Control2026