الملخص
Factories are shifting toward smaller lot sizes with high product customization, requiring frequent re-programming of flexible and reconfigurable automation systems. LLM-based agents can be deployed in two complementary roles: Offline, they generate deterministic production sequences, reducing programming effort; online, they operate live machines and handle unforeseen runtime faults that static programs cannot anticipate. We propose a solution in which each factory module is paired with a dedicated LLM-based agent and an MCP tool server that exposes the module's skills via OPC UA method calls, with agents coordinating over MQTT and grounded by real-time updates of the factory state. We compare three agent architectures (orchestrator, peer-to-peer, and monolithic) across nine production challenges of increasing complexity in a simulation of a physical six-module hexagonal factory, including silent hardware fault detection. The monolithic and peer-to-peer architectures both achieve the highest mean solve rate (93\%), while the orchestrator uniquely resolves a silent conveyor-belt fault in all ten runs by autonomously rerouting plates around the blocked segment. All architectures exhibit emergent fault-diagnosis behavior without any explicit failure-handling logic, establishing standardized MCP tooling, MQTT-based inter-agent communication, and real-time state injection as a viable and reproducible foundation for LLM-programmed smart manufacturing.
الكلمات المفتاحية
الموضوع
بيانات النشر
- المجلة
- غير متاح
- وصول مفتوح
- وصول مفتوح أخضر
اقتبس هذه المقالة
APA 7
Köhle, K., Anicic, D., Runkler, T. A., & Graf, R. (2026). LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing. https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing
MLA 9
Köhle, Kay, et al. "LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing." https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing.
شيكاغو (المؤلف–التاريخ)
Köhle, Kay, Darko Anicic, Thomas A. Runkler, and René Graf. 2026. "LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing." https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing.
هارفارد
Köhle, K., Anicic, D., Runkler, T. A. and Graf, R. (2026) 'LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing', Available at: https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing.
فانكوفر
Köhle K, Anicic D, Runkler TA, Graf R. LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing. https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing
IEEE
K. Köhle, D. Anicic, T. A. Runkler, and R. Graf, "LLM-Driven Multi-Agent Control for Skill-Based Smart Manufacturing," https://omanscience.com/ar/articles/llm-driven-multi-agent-control-for-skill-based-smart-manufacturing.