Browse > Article
http://dx.doi.org/10.5139/IJASS.2010.11.2.126

Conceptual Design of a Multi-Rotor Unmanned Aerial Vehicle based on an Axiomatic Design  

Yoo, Dong-Wan (Department of Aerospace Engineering, Korea Advanced Institute of Science and Technology)
Won, Dae-Yeon (Department of Aerospace Engineering, Korea Advanced Institute of Science and Technology)
Tahk, Min-Jea (Department of Aerospace Engineering, Korea Advanced Institute of Science and Technology)
Publication Information
International Journal of Aeronautical and Space Sciences / v.11, no.2, 2010 , pp. 126-130 More about this Journal
Abstract
This paper presents the conceptual design of a multi-rotor unmanned aerial vehicle (UAV) based on an axiomatic design. In most aerial vehicle design approaches, design configurations are affected by past and current design tendencies as well as an engineer's preferences. In order to design a systematic design framework and provide fruitful design configurations for a new type of rotorcraft, the axiomatic design theory is applied to the conceptual design process. Axiomatic design is a design methodology of a system that uses two design axioms by applying matrix methods to systematically analyze the transformation of customer needs into functional requirements (FRs), design parameters (DPs), and process variables. This paper deals with two conceptual rotary wing UAV designs, and the evaluations of tri-rotor and quad-rotor UAVs with proposed axiomatic approach. In this design methodology, design configurations are mainly affected by the selection of FRs, constraints, and DPs.
Keywords
Tri-rotor; Quad-rotor; Axiomatic design; Conceptual design;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Jung, W. H., Lee, K. T., and Kim, J. Y. (2004). The development of performance analysis code for pre-conceptual design of VTOL UAV. Journal of the Korean Society for Aeronautical and Space Sciences, 32, 1-9.
2 Lee, J. W. and Park, M. W. (1996). Aircraft conceptual and preliminary design process: focused on the Korean advanced trainer development. Journal of the Korean Society for Aeronautical and Space Sciences, 24, 137-150.
3 Park, G. J. and Kang, B. S. (2005). Introduction to axiomatic design. Auto Journal, 27, 31-36.
4 Seong, H. S., Cha, S. W., and Lee, K. S. (2001). Improvement of flapping air vehicle by using axiomatic design. Korean Society for Precision Engineering Conference. pp. 684-688.   과학기술학회마을
5 Won, D. Y., Yoo, D. W., and Tahk, M. J. (2009). Conceptual design of tri-rotor rotorcraft based on axiomatic design. 2nd International Forum on Rotorcraft Multidisciplinary Technology, Seoul, Korea.
6 Won, D. Y., Choi, D. H, Tahk, M. J., Lee, J. H., and Kwon, O. J. (2008). Conceptual design of a quad-rotor UAV. Proceeding of the Korean Society for Aeronautical and Space Sciences Conference. pp. 197-201.