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Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis
Abstract
In this study, the design of the electric powered VTOL Flying car was made in the CAD program, and the longitudinal, vertical and lateral flight dynamics were examined and aerodynamic analysis was made. In the design, the power and propulsion systems of the flying car, avionic systems, security systems, magnetic sensors, navigation landing and take-off methods, requirement verification methods, flight performance values were determined. Our design work for flying cars, which will soon start real-time flights, will guide the people and institutions that will design and produce in this field.
A practical flying car should be able to operate safely and environmentally both in public spaces and in the air. For widespread adoption, it must be able to fly without a qualified pilot as we know it as a controller, and must have appropriate purchase and operating costs. Being a qualified car driver and having a pilot license, which certification processes are extremely difficult, is an important obstacle to the adoption and widespread process of the flying car concept. The certification processes of many different countries have been examined for the flying car we will design. Examination of these processes has been guiding in the creation of detailed data on many issues, and in this context, care has been taken to meet the requested competencies on a common ground. In order to overcome these procedures, a VTOL platform with high autonomy has been designed thanks to its subsystems as well as a stable flight dynamics.
Keywords
References
- Kenaroğlu, Y. (2013). İnsansız Hava Aracı Ne Kadar Güvenilir? Engineer & the Machinery Magazine, (636).
- Arıca, N., Cicibaş, H., & Demir, K. A. (2012). İnsansız Hava Araçları için Çok Kriterli Güzergâh Planlama Modeli. Savunma Bilimleri Dergisi, 11(1), 251-270.
- Demir, K. A., Cicibaş, H., & Arıca, N. İnsansız Hava Araçları İçin Modüler Bir Simülasyon Tasarım Örneği.
- Dursun, M., & Aksöz, A. İnsansız Bir Hava Aracı Modelinin Üç Boyutlu Tasarımı Analizi ve Simülasyonu.
- Bayraktar, O., Özdemir, F., Çetin, Ö., & YILMAZ, G. (2012). İnsansız Hava Araçları İçin Otonom İniş Sistemi Simülatörü Tasarımı. Bilişim Teknolojileri Dergisi, 5(2), 1-8.
- Hadi, G. S., Varianto, R., Trilaksono, B., & Budiyono, A. (2014). Autonomous UAV system development for payload dropping mission. The Journal of Instrumentation, Automation and Systems, 1(2), 72-22.
- Çoban, S. (2019). Different Autopilot Systems Design For a Small Fixed Wing Unmanned Aerial Vehicle. Avrupa Bilim ve Teknoloji Dergisi, (17), 682-691.
- Başak, H., & Gülen, M. (2010). İnsansız Hava Aracı Kazalarının Önlenmesi İçin Risk Ölçümü Ve Yönetimi Modeli. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 14(1), 55-65.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
August 31, 2021
Submission Date
April 6, 2021
Acceptance Date
August 16, 2021
Published in Issue
Year 2021 Number: 25
APA
Uzun, M., & Çoban, S. (2021). Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis. Avrupa Bilim Ve Teknoloji Dergisi, 25, 815-821. https://doi.org/10.31590/ejosat.910516
AMA
1.Uzun M, Çoban S. Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis. EJOSAT. 2021;(25):815-821. doi:10.31590/ejosat.910516
Chicago
Uzun, Metin, and Sezer Çoban. 2021. “Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis”. Avrupa Bilim Ve Teknoloji Dergisi, nos. 25: 815-21. https://doi.org/10.31590/ejosat.910516.
EndNote
Uzun M, Çoban S (August 1, 2021) Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis. Avrupa Bilim ve Teknoloji Dergisi 25 815–821.
IEEE
[1]M. Uzun and S. Çoban, “Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis”, EJOSAT, no. 25, pp. 815–821, Aug. 2021, doi: 10.31590/ejosat.910516.
ISNAD
Uzun, Metin - Çoban, Sezer. “Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis”. Avrupa Bilim ve Teknoloji Dergisi. 25 (August 1, 2021): 815-821. https://doi.org/10.31590/ejosat.910516.
JAMA
1.Uzun M, Çoban S. Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis. EJOSAT. 2021;:815–821.
MLA
Uzun, Metin, and Sezer Çoban. “Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis”. Avrupa Bilim Ve Teknoloji Dergisi, no. 25, Aug. 2021, pp. 815-21, doi:10.31590/ejosat.910516.
Vancouver
1.Metin Uzun, Sezer Çoban. Electrically Driven VTOL Flying Car Designing and Aerodynamic Analysis. EJOSAT. 2021 Aug. 1;(25):815-21. doi:10.31590/ejosat.910516
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