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Abstract
This paper presents a novel Agentic Artificial Intelligence of Things (Agentic AIoT) framework designed to overcome the critical challenge of achieving Just-in-Time logistics for bulky, costly modular construction. The framework merges autonomous, agentic artificial intelligence with Internet of Things infrastructure, creating a decentralised system for self-organising coordination among geographically dispersed stakeholders facing unpredictable disruptions. The research employs a mixed-methods approach, detailing a multi-layer architecture with specialised agents for data collection, intelligent search, multi-agent reinforcement learning, and autonomous control. A developed prototype was validated in two real-world modular construction projects, where it autonomously executed hundreds of dynamic schedule adjustments. The results demonstrate the framework’s transformative potential: it reduced inventory costs by 57.2% and 85.7% and significantly shortened disruption recovery times in the respective cases. This research establishes a foundational framework for developing autonomous, resilient logistics systems capable of intelligent coordination in complex, time-critical environments.
| Original language | English |
|---|---|
| Journal | International Journal of Logistics Research and Applications |
| DOIs | |
| Publication status | E-pub ahead of print - 27 Feb 2026 |
Bibliographical note
Publisher Copyright:© 2026 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
Funding
This research was supported by the Faculty Research Grant (FRG) [grant number SDS25A9] 2025/26 of the School of Data Science at the Lingnan University and the Public Sector Trial Scheme (PSTS) Fund [grant number ITT/004/24LP] of the Innovation and Technology Commission (ITC) of Hong Kong, China.
Keywords
- Agentic AI
- artificial intelligence of things (AioT)
- internet of things (IoT)
- just-in-time
- logistics and supply chain management
- modular construction
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Agentic Artificial Intelligence of Things (AIoT) for Just-in-Time (JIT) Logistics and Supply Chain: A Case of Modular Construction
WU, M. (PI)
1/01/26 → 31/12/27
Project: Grant Research
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