Next-Generation HMI/UX Engineering
About our Next-Generation HMI/UX Engineering
Next-generation HMI/UX engineering focuses on the design and validation of human-machine interfaces for advanced aeronautical systems, integrating principles of cognitive ergonomics, tactile interaction, and predictive modeling methodologies into eVTOL and UAM platforms. This discipline addresses the synergy between AFCS, FBW, and adaptive algorithms to optimize the user experience in digital cockpits, relying on CFD simulations and usability analyses that take into account certification regulations for cockpits and onboard systems.
Specialized laboratories offer HIL and SIL capabilities for data acquisition testing, EMC analysis, and crash simulations in accordance with DO-178C, DO-254, and standards based on ARP4754A and ARP4761, ensuring traceability and functional safety. Alignment with applicable international regulations is essential for roles such as Systems Engineer, HMI Integration Specialist, Functional Safety Analyst, and UX Designer in state-of-the-art aerospace environments.
Target keywords (natural in the text): HMI/UX Engineering, eVTOL, UAM, AFCS, FBW, DO-178C, ARP4754A, aeronautical user experience.
Next-Generation HMI/UX Engineering
- Format:
- Duration:
- Time: 1900 H
- Practices: Consult
- Language:
- Credits:
- Registration date: 24-08-2026
- Start date: 18-10-2026
- Available places: 3
391,000 $
Skills and results
What you will learn
Who this program is for:
Next-Generation HMI/UX Engineering
9.9 Introduction to Naval HMI/UX Engineering: Fundamentals and Trends
9.9 Principles of User-Centered Design in Naval Environments
9.3 Designing Intuitive and Efficient Interfaces for Naval Platforms
9.4 Human Factors and Ergonomics in Naval HMI/UX Design
9.5 Design of Data Visualization and Control Systems in Naval Environments
9.6 Usability Testing and Evaluation in Naval HMI/UX Systems
9.7 Implementation of Augmented and Virtual Reality in Naval Interfaces
9.8 Safety and Reliability Considerations in Naval HMI/UX Design
9.9 Integration of Artificial Intelligence into Naval Interfaces
9.90 Case Studies: Innovative Applications in Naval HMI/UX Engineering
Capstone-type projects
- Blade optimization: CFD; bench/wind tunnel correlation.
- AFCS/SCAS: validation SIL/HIL.
- Tiltrotor conversion control: evaluation of the conversion corridor.
- Aeroelasticity: modal analysis; flutter clearance.
DO-160: environmental testing and mitigation plan.
Admissions, fees and scholarships
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