HUD Engineering, In-Cabin AR/MR, and 3D Visualization — projection, occlusion, luminance, compliance, and testing.

About our HUD Engineering, In-Cabin AR/MR, and 3D Visualization — projection, occlusion, luminance, compliance, and testing.

HUD engineering, in-cockpit AR/MR, and 3D visualization addresses the advanced design of optical projection systems integrated into aeronautical platforms, emphasizing critical aspects such as occlusion, luminance, and regulatory compliance to ensure ergonomics and operational effectiveness in eVTOLs, tiltrotors, and helicopters. This field combines fundamentals of adaptive optics, dynamics/control with AFCS/FBW systems, as well as advanced modeling using CFD and HIL simulation to validate immersive cockpit interfaces under ADS-33E-PRF scenarios, integrating AR/MR technologies with a focus on situational awareness enhancement and pilot workload reduction.

Specialized laboratories enable detailed testing of luminance and occlusion using data acquisition systems, EMC/Lightning testing, and vibroacoustic analysis to ensure the safe integration of HUD and AR/MR systems in cockpits certified under applicable international standards, such as DO-160, DO-178C and ARP4754A. Safety traceability is based on compliance with critical software and hardware regulations and standards, ensuring employment opportunities for professionals in aviation systems design, aeronautical certification, cockpit integration engineering, and flight testing.

Target keywords (natural in the text): HU

Target keywords (natural in the text): HUD, AR/MR, 3D visualization, optical projection, occlusion, luminance, DO-160, DO-178C, ARP4754A, AFCS, FBW, HIL, simulation, aviation certification.

HUD Engineering, In-Cabin AR/MR, and 3D Visualization — projection, occlusion, luminance, compliance, and testing.

393,000 $

Skills and results

What you will learn

Who this program is for:

HUD Engineering, In-Cabin AR/MR, and 3D Visualization — projection, occlusion, luminance, compliance, and testing.

9.9 Aerodynamic design of rotors: theory and practice.
9.9 Rotor performance analysis: methods and tools.
9.3 Computational modeling of rotors: CFD and simulation.
9.4 Material selection and rotor manufacturing.
9.5 Vibrations and acoustics in rotors.
9.6 Rotor control: systems and technologies.
9.7 Rotor testing and validation: test bench and flight.
9.8 Rotor maintenance and lifecycle management.
9.9 Rotor regulations and standards.
9.90 Innovation in rotor design.

Capstone-type projects

Admissions, fees and scholarships

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