Open Access
Issue
MATEC Web Conf.
Volume 355, 2022
2021 International Conference on Physics, Computing and Mathematical (ICPCM2021)
Article Number 01022
Number of page(s) 8
Section Investigation in Physics and Materials
DOI https://doi.org/10.1051/matecconf/202235501022
Published online 12 January 2022
  1. Francesco, G. D., and M. Mattei. Modeling and Incremental Nonlinear Dynamic Inversion Control of a Novel Unmanned Tiltrotor. Journal of Aircraft 53.1(2016):1–14. [Google Scholar]
  2. Wei, et al. Robust transition control of a Martian coaxial tiltrotor aerobot. Acta Astronautica 99.1(2014):111–129. Wei, et al. [CrossRef] [Google Scholar]
  3. Chao, C., et al. Mathematical modeling and control of a tiltrotor UAV. IEEE International Conference on Information & Automation IEEE, 2017. [Google Scholar]
  4. Li ZQ, Xia PQ. Aeroelastic stability of full-span tiltrotor aircraft model in forward flight. Chin J Aeronaut 2017;30(6):1885–94. [CrossRef] [Google Scholar]
  5. Chen H, Lu ZL, Guo TQ. Rotor slipstream effects on aerodynamic performance of tiltrotor aircraft in airplane mode. Journal of Aerospace Power 2018,33(11):2809–2816 [Chinese]. [Google Scholar]
  6. Polak, D. R., and A. R. George. Flowfield and Acoustic Measurements from a Model Tiltrotor in Hover. Journal of Aircraft (1998). [Google Scholar]
  7. Yuksek, B., et al. Transition Flight Modeling of a Fixed-Wing VTOL UAV. Journal of Intelligent & Robotic Systems 84.1–4(2016):1–23. [Google Scholar]
  8. Landgrebe, Anton J. An Analytical and Experimental Investigation of Helicopter Rotor Hover Performance and Wake Geometry Characteristics. (1971). [Google Scholar]
  9. Steijl, R., and G. Barakos. Sliding mesh algorithm for CFD analysis of helicopter rotor–fuselage aerodynamics. International Journal for Numerical Methods in Fluids 58.5(2010):527–549. [Google Scholar]
  10. Zhiquan L I, Xia P, Engineering C, et al. Aeroelastic stability of full-span tiltrotor aircraft model in forward flight[J]. Chinese Journal of Aeronautics, 2017. [Google Scholar]
  11. Garcia, A. J., and G. N. Barakos. Numerical simulations on the ERICA tiltrotor. Aerospace Science & Technology 64.MAY(2017):171–191. [CrossRef] [Google Scholar]
  12. Hernandez-Garcia, R. G., and H. Rodriguez-Cortes . Transition flight control of a cyclic tiltrotor UAV based on the Gain-Scheduling strategy. IEEE(2015):951–956. [Google Scholar]
  13. Papachristos, C., K. Alexis, and A. Tzes. Design and experimental attitude control of an unmanned Tilt-Rotor aerial vehicle. International Conference on Advanced Robotics IEEE, 2011. [Google Scholar]

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