Smart Industry Lab @ THA_air
J 4.01 — Industry 4.0, autonomous robotics, and AI diagnostics combined — practical research, teaching, and technology transfer.
About the Laboratory
The Smart Industry Lab combines Industry 4.0, autonomous robotics, and data-driven diagnostics. A tabletop model of a flexible manufacturing system demonstrates real-time control, monitoring, and visualization; IoT prototypes simulate autonomous robotics and automation scenarios. In the field of AI, electrophysiological diagnostics and brainwave measurements are used to assess cognitive states:
- Research: AI algorithms for manufacturing optimization, robotics, and medical signal processing
- Student Projects: Implementation of IoT architectures, robotics programming, and signal analysis in interdisciplinary teams
- Transfer: Collaborations with industry partners for smart manufacturing solutions and medical diagnostic tools
Hardware prototypes, AI models, and data-intensive experiments create a practical environment for innovative research and interdisciplinary collaboration.
Room: J 4.01

Areas of Application in Research, Teaching, and Knowledge Transfer
Publicly Funded Projects
- AI-based optimization of, for example, manufacturing processes
- Optimization of 3D printing
- AI-based anomaly detection
Collaborative projects
- Medical diagnostics
Student projects
- Autonomous Robotics and Diagnostics (Transcranial Sonography)
- AI-Agent-Based Manufacturing Optimization
Lab Infrastructure
Industry 4.0
- Table-top model of a flexible manufacturing system with control, monitoring, and visualization
- Numerous models and prototype IoT environments for automation, monitoring, and visualization
Robotics
- RoboRace: Autonomous model car
Artificial Intelligence/Data Science
- Electrophysiological Diagnostics
- Brainwave measurements
Projects and Collaborations
- KI-HEAP 4.0
- DEXAI
- AIGS3D


