Internet of Agentic Things: Networked AI Agents for Closed-Loop IoT Orchestration - The paper introduces the Internet of Agentic Things (IoAT), an architectural framework that integrates agentic AI, IoT, cyber-physical systems, Physic...
Scanned 9/11/2026
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---
name: internet-of-agentic-things-networked-ai-agents-for
description: "Internet of Agentic Things: Networked AI Agents for Closed-Loop IoT Orchestration - The paper introduces the Internet of Agentic Things (IoAT), an architectural framework that integrates agentic AI, IoT, cyber-physical systems, Physic..."
version: 1.0.0
author: Quanyan Zhu
arxiv_id: 2607.12662
created: 2026-07-14
category: multi-agent-rl
tags: [cs.AI, cs.MA, eess.SY]
activation_keywords: [internet, agentic, things, networked, agents, closed, loop, orchestration, paper, introduces]
---
# Internet of Agentic Things: Networked AI Agents for Closed-Loop IoT Orchestration
## Overview
The paper introduces the Internet of Agentic Things (IoAT), an architectural framework that integrates agentic AI, IoT, cyber-physical systems, Physical AI, edge computing, and digital twins into a unified closed-loop orchestration framework. The proposed architecture consists of cloud, edge/fog, and physical IoT layers connected through autonomous AI agents that perceive, reason, coordinate, and actuate across distributed cyber-physical environments. The paper formalizes IoAT as a coupled workflow-control problem with nested strategic and tactical decision making using a hylomorphic dynamic programming framework that links agentic planning with physical execution. Smart-building orchestration is presented as a representative use case, and key research challenges related to safety, security, governance, resilience, and trustworthy deployment are discussed.
## Key Insights
- TODO: Extract key insights from the paper
## Implementation Approach
- TODO: Describe how to implement the techniques from this paper
## Applications
- TODO: List potential applications
## Activation Keywords
internet, agentic, things, networked, agents, closed, loop, orchestration, paper, introduces
---
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