network management

Toward Standardized Cross-Vendor Agent Tool Trust Management in Autonomous Networks

arXiv:2607.25914

summary

The paper proposes AgentToolMO, a 3GPP NRM information model that enables AI agents in autonomous networks to manage and share trust information about cross‑vendor tools, limiting the spread of compromised services through standardized notifications and impact assessment.

Abstract

Autonomous Network Levels 4-5 require AI agents to invoke tools across vendor boundaries without human oversight, yet existing management standards lack a standardized mechanism for cross-vendor trust visibility. When a tool from Vendor B is compromised, agents from Vendor A continue invoking it -- unaware of the trust degradation -- causing cascading service impact. We present AgentToolMO, a proposed 3GPP NRM information model for agent tool trust management. The model comprises: a formally defined trust state machine with provable graduated enforcement, damped cascade propagation with bounded convergence, cross-vendor trust notifications via existing Management Services (MnS) interfaces, and retroactive impact assessment through NRM dependency graph traversal. Simulation-based evaluation across multi-vendor topologies shows that standardized cross-vendor notifications reduce blast radius from hours-scale undetected propagation to near-real-time containment bounded by MnS notification delivery, with cascade convergence guaranteed in bounded iterations and sub-linear notification scaling across vendor domains. The framework operates within existing 3GPP management infrastructure, leverages existing protocols, and provides a standardization pathway for trustworthy multi-vendor autonomous network management.

22 pages, 7 figures, 9 tables, 4 algorithms

Topics & keywords

#cross-vendor trust#autonomous networks#AI agents#3gpp nrm#trust managementtrust state machinecascade propagationmanagement servicesdependency graph traversalsimulation evaluation
Toward Standardized Cross-Vendor Agent Tool Trust Management in Autonomous Networks · wovepaper