Diploma in Structural Monitoring (SHM) and Aircraft Health
About us Diploma in Structural Monitoring (SHM) and Aircraft Health
The Diploma in Structural Monitoring (SHM) and Aircraft Health focuses on the application of advanced technologies for the real-time diagnosis of aircraft structural integrity. It addresses the use of smart sensors, data analysis, and predictive algorithms to detect and assess damage, fatigue, and corrosion in critical components such as wings, fuselages, and engines, minimizing downtime and optimizing safety.
The program delves into the knowledge of optical, piezoelectric, and acoustic sensors, as well as the operation of data acquisition platforms and specialized software for signal analysis. It focuses on the integration of SHM systems into aircraft design and maintenance, complying with FAA and EASA regulations, preparing professionals for roles such as SHM engineers, predictive maintenance specialists, and aeronautical data analysts. Target keywords (natural occurrences in the text): structural monitoring, aircraft health, smart sensors, data analysis, aircraft fatigue, predictive maintenance, structural integrity, aeronautical diploma.
Diploma in Structural Monitoring (SHM) and Aircraft Health
- Format:
- Duration:
- Hours: 900 H
- Language:
- Credits:
- Registration date: 08-09-2026
- Strat date: 19-10-2026
- Available places: 9
920 $
Competencies and results
What you will learn
Who this program is for:
Diploma in Structural Monitoring (SHM) and Aircraft Health
9.9 Fundamentals of Rotorcraft Optimization: Principles and Methodologies
9.9 Aerodynamic Modeling of Rotors: Analysis and Advanced Simulation
9.3 Blade Design and Optimization: Geometry and Materials
9.4 Vibration Control Strategies: Reduction and Mitigation
9.5 Performance Optimization Under Specific Flight Conditions
9.6 Stability and Control Analysis: System Design
9.7 Transmission System Modeling: Efficiency Optimization
9.8 Performance Evaluation Under Different Flight Regimes
9.9 Implementation of Optimization Strategies: Case Studies
9.90 Sensitivity Analysis and Robust Design in Rotorcraft
Capstone-type projects
- SHM/Aeroelasticity: analysis and simulation; fault detection; experimental validation.
- Rotor Optimization: CFD modeling; noise reduction; vibration analysis.
- Health Diagnostics: machine learning algorithms; anomaly detection.
- Performance Evaluation: aerodynamic modeling; flight simulation; optimization.
Admissions, fees and scholarships
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