A Protocol-agnostic Multiple Agents Interaction Model for Autonomous Network
draft-wang-nmrg-magent-im-00
| Document | Type |
Expired Internet-Draft
(individual)
Expired & archived
|
|
|---|---|---|---|
| Authors | Zitao Wang , Xieyuan , Qin Wu | ||
| Last updated | 2026-01-08 (Latest revision 2025-07-07) | ||
| RFC stream | (None) | ||
| Intended RFC status | (None) | ||
| Formats | |||
| Yang Validation | 3 errors, 0 warnings | ||
| Stream | Stream state | (No stream defined) | |
| Consensus boilerplate | Unknown | ||
| RFC Editor Note | (None) | ||
| IESG | IESG state | Expired | |
| Telechat date | (None) | ||
| Responsible AD | (None) | ||
| Send notices to | (None) |
This Internet-Draft is no longer active. A copy of the expired Internet-Draft is available in these formats:
Abstract
In the push toward Level 4 Autonomous Networks, CSPs must to adopt new processes and organizational changes, along with function-centric building blocks for higher autonomy. As intelligent agents evolve, network autonomy increasingly relies on deploying these agents, enabling self-management, self-healing, and adaptation with minimal human intervention. These agents facilitate the transition toward fully autonomous network operations across multiple layers, including services and resources. However, achieving Level 4 autonomy, where networks independently handle tasks across various domains, presents significant challenges, notably secure, efficient, and accurate multi-agent interactions. This document introduces a protocol- agnostic data model that enables multiple intelligent agents to communicate effectively using the model, ensuring end-to-end task execution and closed-loop operations in autonomous networks.
Authors
(Note: The e-mail addresses provided for the authors of this Internet-Draft may no longer be valid.)