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Design of hybrid-electric aircraft with fault-tolerance considerations

Semantic Scholar · Article (Chinese Journal of Aeronautics) · 1899aadf8e0da74b75fed50d3ab5850772750a0c · Published 2022-06-01 · Chinese Journal of Aeronautics · 5 authors

Abstract and citation only, verbatim from Semantic Scholar; full text lives there. All credit to the authors and Chinese Journal of Aeronautics.

Abstract

The potential benefits of hybrid-electric or all-electric propulsion have led to a growing interest in this topic over the past decade. Preliminary design of propulsion systems and innovative configurations has been extensively discussed in literature, but steps towards higher levels of technological readiness, optimisation algorithms based on reliable weight estimation and simulation-based mission analysis are required. This paper focuses on the integration of a method for evaluating the lateral-directional controllability of an aircraft within a design chain that integrates aeropropulsive interactions, accurate modelling of the fuel system, and mid-fidelity estimation of the structural weight. Furthermore, the present work proposes a strategy for powerplant management in scenarios with an inoperative chain element. Benefits of hybrid-electric propulsion on the design of the vertical tail plane are evaluated involving the analysis of multiple failure scenarios and certification requirements. The proposed application concerns a commuter aircraft.

Authors

  • V. Marciello
  • F. Orefice
  • F. Nicolosi
  • D. Ciliberti
  • P. Della Vecchia

Keywords

  • Engineering

Citation

V. Marciello, F. Orefice, F. Nicolosi , et al. (2022). Design of hybrid-electric aircraft with fault-tolerance considerations. Chinese Journal of Aeronautics. Semantic Scholar ID 1899aadf8e0da74b75fed50d3ab5850772750a0c. https://doi.org/10.1016/j.cja.2022.05.014 ↗