Review

Properties of Novel Tricopter And Comparision of Other Unmanned Aerial Vehicles

Number: 16 August 31, 2019
TR EN

Properties of Novel Tricopter And Comparision of Other Unmanned Aerial Vehicles

Abstract

With the development of technology, the usage rates of unmanned aerial vehicles have increased. Although unmanned aerial vehicles were first used as counter-attack in army, they were also used for surveillance, reconnaissance, mapping and defence. In addition to this, have begun to be used for various purposes such as taking images from the air in the film industry, carrying cargo, traffic control, natural disaster search and rescue, fire warning and extinguishing, illegal building control. While the advantages of fixed wing unmanned aerial vehicles are that they can move quickly, the disadvantages is that long runways for take-off and landing. Rotary wing unmanned aerial vehicles have the advantage that they do not need runways because they can take off and landing in the same place, but they are disadvantageous because of their low flight time. The general name of the rotating wing unmanned aerial vehicle is drone. 4 propelled quadcopter and other multi-propelled multicopters are inefficient in energy management, 2 propelled bicopters are less manoeuvrable, tricopter is more advantageous than others. The tricopters have better maneuverability than other rotary wing aircraft thanks to the servo mechanism used in the tail motor. Tricopter’s fixed body (moment arm of the rotor) which are endurance, ease of control, ease of to-downstream keeps constant the air vibrations and like many features stable flight. By using innovative tricopter aerodynamic mechanism, the torque arm of the rotors is provided with variability and performance/stability parameters are planned to be stabilized and kept in the air for a long time.

Keywords

Supporting Institution

erciyes üniversitesi bap

Project Number

FYL-2017-7591

Thanks

This study was supported by Erciyes University Scientific Research Project Coordination Unit (Project Number: FYL-2017-7591). We thank Erciyes University BAP Coordination for their support.

References

  1. Maziar, A., Shane, A., Matthew, M., Matthieu, N., and Tong, Z. (2012). Classification of Unmanned Aerial Vehicles. The University of Adelaide
  2. COŞKUN, M. Z. (2012) “Düşük Maliyetli İHA (İnsansız Hava Aracı) ile Mobil Harita Üretiminin Bugünü ve Geleceği”, Harita Teknolojileri Elektronik Dergisi, vol: 4, No: 2, p.11-18
  3. Emma, M. Australia (2000) Propeller & Propulsion Terminology, http://www.propellerpages.com
  4. Merç, Y., and Bayılmış, C. (2011). Dört Rotorlu İnsansız Hava Aracı (Quadrotor) Uygulaması. 6th International Advanced Technologies Symposium (IATS’11), Elazığ, Turkey
  5. Özdemir, U. (2015). Dikey İniş Kalkış Yapabilen Sabit Kanatlı İnsansız Hava Aracı Tasarım, Üretimi Ve Uçuş Testleri. İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, İstanbul
  6. Naze 32 Rev6 manual (2015), http://www.robotshop.com/media/files
  7. MPU-6000 and MPU-6050 register map and Descriptions (03/09/2012), https://store.invensense.com/Datasheets/invensense/
  8. Staples, G. (2013). Propeller Static & Dynamic Thrust Calculation, http://electricrcaircraftguy.blogspot.com.

Details

Primary Language

English

Subjects

Engineering

Journal Section

Review

Publication Date

August 31, 2019

Submission Date

July 4, 2019

Acceptance Date

July 30, 2019

Published in Issue

Year 2019 Number: 16

APA
Şahin, H., & Oktay, T. (2019). Properties of Novel Tricopter And Comparision of Other Unmanned Aerial Vehicles. Avrupa Bilim Ve Teknoloji Dergisi, 16, 816-825. https://doi.org/10.31590/ejosat.586900