Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles
Abstract
Keywords
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References
- Abinaya, R., Arravind, R. (2017). Selection of Low-Cost Recovery System for Unmanned Aerial Vehicle. International Research Journal of Engineering and Technology, 4(5), 1074-1078.
- Airbus. (2024). A 320 CEO Setting Single-Aisle Standards. https://aircraft.airbus.com/en/aircraft/a320-the- most-successful-aircraft-family-ever/a320ceo (Accessed on September 12, 2024).
- Al-Madani, B., Svirskis, M., Narvydas, G., Maskeliūnas, R. and Damaševičius, R. (2018). Design of Fully Automatic Drone Parachute System with Temperature Compensation Mechanism for Civilian and Military Applications. Journal of Advanced Transportation, 2018, ID 2964583, 1-11.
- Austin, R. (2010). Unmanned Aircraft Systems – UAVS Design, Development and Deployment. John Wiley &Sons Ltd. New Delhi, India.
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- Blom, J.D. (2010). Unmanned Aerial Systems: A Historical Perspective. Combat Studies Institute Press, US Army Combined Arms Center, Fort Leavenworth, Kansas.
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- Federal Aviation Administration. (2015). Parachute Rigger Handbook, Oklahoma City, USA, pp. 1-350.
Details
Primary Language
English
Subjects
Avionics
Journal Section
Research Article
Authors
Emre Kırteke
0000-0003-3348-3814
Türkiye
Early Pub Date
October 7, 2024
Publication Date
October 22, 2024
Submission Date
May 6, 2024
Acceptance Date
September 23, 2024
Published in Issue
Year 2024 Volume: 8 Number: 3
Cited By
Incremental GA-Based 3D Trajectory Optimization for Powered Parachute Aerial Delivery Systems
Aerospace
https://doi.org/10.3390/aerospace12050386Design and Development of Drone Recovery System Using Parachute
International Journal of Innovative Science and Research Technology
https://doi.org/10.38124/ijisrt/25apr540