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Design and Development of an Automated Flight Control System for Tilt-wing Aircraft

Jacob Cook, Matthias Studiger, Mirela Minkova-Walker, Sebastian Schmid, Daniel Tataru, Muscan Karadayi, Dufour Aerospace

https://doi.org/10.4050/F-0081-2025-0059

Abstract:
This paper presents the development and implementation of a complete flight control architecture for a 200kg-class tilt-wing eVTOL aircraft, designed and tested by Dufour Aerospace. The system enables fully automated flight across all regimes, including hover, transition, and cruise. A modular control architecture is described, incorporating a unified vehicle controller, envelope protection, and a guidance system. The control design leverages classical and modern techniques, including model-based synthesis, control allocation, and gain scheduling. A structured software development and validation pipeline is outlined, combining simulation, software- and hardware- in-the-loop testing, and flight testing on both subscale and full-scale platforms. Results from recent autonomous flight trials of the Aero2 aircraft demonstrate precise trajectory tracking and robust performance. The presented approach highlights the feasibility of rapid development cycles while maintaining high standards of safety and reliability for certifiable eVTOL platforms.


Design and Development of an Automated Flight Control System for Tilt-wing Aircraft

  • Presented at Forum 81
  • 13 pages
  • SKU # : F-0081-2025-0059
  • Autonomy and UAS

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Design and Development of an Automated Flight Control System for Tilt-wing Aircraft

Authors / Details: Jacob Cook, Matthias Studiger, Mirela Minkova-Walker, Sebastian Schmid, Daniel Tataru, Muscan Karadayi, Dufour Aerospace