Research Article

Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles

Volume: 8 Number: 3 October 22, 2024
EN

Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles

Abstract

Fixed-wing mini-UAVs (Unmanned Aerial Vehicles) face difficulties due to the need for runways during take-off and landing. While fixed-wing UAVs are capable of using catapults during take-off, various landing systems are required for landing. Therefore, in this study, a parachute system design and production were carried out for the safe landing of fixed-wing mini-UAVs. The produced parachute utilized ultra-lightweight ripstop nylon fabric and suspension lines, while a carbon fiber tube was chosen for the launching system for its lightweight and strength. The parachute deployment system was triggered by a servo motor with low power consumption and high torque. During tests, the parachute was activated at a height of 47 meters during flight. The parachute deployment was completed in 1.42 seconds, and the descent with the parachute lasted 11 seconds. The vertical descent speed of the parachute during landing was measured at 4.27 m/s. The produced parachute landing system was manufactured at 71% lower cost compared to existing parachute landing systems in the literature and on the market. Additionally, the ultra-light ripstop parachute weighed 56 grams, making it 12% lighter than similar systems. Considering the advantages in terms of cost and weight, it is anticipated that parachute landing systems will be increasingly used for fixed-wing UAVs in the future.

Keywords

Project Number

FYL-2022-12008

Thanks

This work has been supported by Erciyes University Scientific Research Projects Coordination. The unit is under grant number code FYL-2022-12008.

References

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Details

Primary Language

English

Subjects

Avionics

Journal Section

Research Article

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

APA
Yıldırım Dalkıran, F., & Kırteke, E. (2024). Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles. Journal of Aviation, 8(3), 198-205. https://doi.org/10.30518/jav.1479457
AMA
1.Yıldırım Dalkıran F, Kırteke E. Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles. JAV. 2024;8(3):198-205. doi:10.30518/jav.1479457
Chicago
Yıldırım Dalkıran, Fatma, and Emre Kırteke. 2024. “Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles”. Journal of Aviation 8 (3): 198-205. https://doi.org/10.30518/jav.1479457.
EndNote
Yıldırım Dalkıran F, Kırteke E (October 1, 2024) Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles. Journal of Aviation 8 3 198–205.
IEEE
[1]F. Yıldırım Dalkıran and E. Kırteke, “Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles”, JAV, vol. 8, no. 3, pp. 198–205, Oct. 2024, doi: 10.30518/jav.1479457.
ISNAD
Yıldırım Dalkıran, Fatma - Kırteke, Emre. “Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles”. Journal of Aviation 8/3 (October 1, 2024): 198-205. https://doi.org/10.30518/jav.1479457.
JAMA
1.Yıldırım Dalkıran F, Kırteke E. Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles. JAV. 2024;8:198–205.
MLA
Yıldırım Dalkıran, Fatma, and Emre Kırteke. “Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles”. Journal of Aviation, vol. 8, no. 3, Oct. 2024, pp. 198-05, doi:10.30518/jav.1479457.
Vancouver
1.Fatma Yıldırım Dalkıran, Emre Kırteke. Design and Implementation of A Low-Cost Parachute Landing System for Fixed-Wing Mini Unmanned Aerial Vehicles. JAV. 2024 Oct. 1;8(3):198-205. doi:10.30518/jav.1479457

Cited By

Journal of Aviation - JAV 


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