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2020 | OriginalPaper | Chapter

Design and Modeling of Actuation System of Unmanned Tricopter with Thrust-Vectoring Front Tilt Rotors for Sustainable Flying

Authors : Riady Siswoyo Jo, Aaron EuGene Tan, Mark Tee Kit Tsun, Hudyjaya Siswoyo Jo

Published in: Proceedings of International Conference of Aerospace and Mechanical Engineering 2019

Publisher: Springer Singapore

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Abstract

Tilt rotor aircrafts combine the advantages of the long mileage of fixed-wing airplanes and the vertical take-off and landing (VTOL) capabilities of rotorcrafts by using tiltable rotors. However, tilt rotor aircrafts suffer from poor autorotation performance and landing stabilitiy. This work proposes an alternative actuation configuration of a tricopter tilt rotor aircraft that aims to optimize the flight duration, VTOL capabilities and stability control. The proposed configuration employs two front tilt rotors that are able to provide thrust-vectoring control with the addition of a fixed tail rotor that produces upward thrust. Dynamic modeling of the proposed actuation configuration is developed to provide insights on how different motions (hovering, ascending, descending, rotating and airplane-like flying) are achieved by manipulating the amounts of thrusts and rotor tilt angles. Preliminary prototype as well as the electronic and control systems are developed and discussed. Proposed configuration has the potential to achieve more sustainable flying.

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Literature
1.
go back to reference Culick FC (2003) The Wright brothers: first aeronautical engineers and test pilots. AIAA J 41:985–1006 Culick FC (2003) The Wright brothers: first aeronautical engineers and test pilots. AIAA J 41:985–1006
2.
go back to reference Liu Z, He Y, Yang L, Han J (2017) Control techniques of tilt rotor unmanned aerial vehicle systems: a review. Chin J Aeronaut 30(1):135–148CrossRef Liu Z, He Y, Yang L, Han J (2017) Control techniques of tilt rotor unmanned aerial vehicle systems: a review. Chin J Aeronaut 30(1):135–148CrossRef
3.
go back to reference George L (1930) Flying machine. US Patent 1,775,861 George L (1930) Flying machine. US Patent 1,775,861
4.
go back to reference Park S, Bae J, Kim Y, Kim S (2013) Fault tolerant flight control system for tilt-rotor UAV. J Franklin Inst 350:2535–2559MathSciNetCrossRef Park S, Bae J, Kim Y, Kim S (2013) Fault tolerant flight control system for tilt-rotor UAV. J Franklin Inst 350:2535–2559MathSciNetCrossRef
5.
go back to reference Markman S, Holder B (2000) Bell/boeing V-22 Osprey tilt-engine VTOL transport (USA). Straight up: a history of vertical flight Markman S, Holder B (2000) Bell/boeing V-22 Osprey tilt-engine VTOL transport (USA). Straight up: a history of vertical flight
6.
go back to reference Tan W, Li Y, Miao Y, Lv H (2014) The Analysis of airworthiness issues influence to the development of tiltrotor aircraft. Proc Eng 80:602–608CrossRef Tan W, Li Y, Miao Y, Lv H (2014) The Analysis of airworthiness issues influence to the development of tiltrotor aircraft. Proc Eng 80:602–608CrossRef
7.
go back to reference Ansari A, Prach A, Bernstein DS (2017) Adaptive trim and trajectory following for a tilt-rotor tricopter. In: 2017 American control conference (ACC), pp 1109–1114 Ansari A, Prach A, Bernstein DS (2017) Adaptive trim and trajectory following for a tilt-rotor tricopter. In: 2017 American control conference (ACC), pp 1109–1114
8.
go back to reference Mehndiratta M, Kayacan E, Kayacan E (2018) A simple learning strategy for feedback linearization control of aerial package delivery robot. In: 2018 IEEE conference on control technology and applications (CCTA), pp 361–367 Mehndiratta M, Kayacan E, Kayacan E (2018) A simple learning strategy for feedback linearization control of aerial package delivery robot. In: 2018 IEEE conference on control technology and applications (CCTA), pp 361–367
9.
go back to reference Song Y, Wang H (2009) Design of flight control system for a small unmanned tilt rotor aircraft. Chin J Aeronaut 22:250–256CrossRef Song Y, Wang H (2009) Design of flight control system for a small unmanned tilt rotor aircraft. Chin J Aeronaut 22:250–256CrossRef
10.
go back to reference Rawal NA (2015) Modelling and analysis of a coaxial tiltrotor. In: 4th Asian/Australian rotorcraft forum, pp, 143–163 Rawal NA (2015) Modelling and analysis of a coaxial tiltrotor. In: 4th Asian/Australian rotorcraft forum, pp, 143–163
11.
go back to reference Wang X, Cai L (2015) Mathematical modeling and control of a tilt-rotor aircraft. Aerosp Sci Technol 47:473–492CrossRef Wang X, Cai L (2015) Mathematical modeling and control of a tilt-rotor aircraft. Aerosp Sci Technol 47:473–492CrossRef
12.
go back to reference Wang Y, Zhou Y, Lin C (2019) Modeling and control for the mode transition of a novel tilt-wing UAV. Aerosp Sci Technol 91:593–606CrossRef Wang Y, Zhou Y, Lin C (2019) Modeling and control for the mode transition of a novel tilt-wing UAV. Aerosp Sci Technol 91:593–606CrossRef
13.
go back to reference Saharudin MF (2016) Development of tilt-rotor unmanned aerial vehicle (UAV): material selection and structural analysis on wing design. IOP Conf Ser Mater Sci Eng 152(1):012017CrossRef Saharudin MF (2016) Development of tilt-rotor unmanned aerial vehicle (UAV): material selection and structural analysis on wing design. IOP Conf Ser Mater Sci Eng 152(1):012017CrossRef
14.
go back to reference Kasliwal A, Furbush NJ, Gawron JH, McBride JA, Wallington TJ, De Kleine RD, Kim HC, Keoleian DA (2019) Role of flying cars in sustainable mobility. Nat Commun 10(1555):1–9 Kasliwal A, Furbush NJ, Gawron JH, McBride JA, Wallington TJ, De Kleine RD, Kim HC, Keoleian DA (2019) Role of flying cars in sustainable mobility. Nat Commun 10(1555):1–9
15.
go back to reference Spong MW, Vidyasagar M (2008) Robot dynamics and control. Wiley Spong MW, Vidyasagar M (2008) Robot dynamics and control. Wiley
16.
go back to reference Liu S, Trenkler G (2008) Hadamard, Khatri-Rao, Kronecker and other matrix products. Int J Inf Syst Sci 4:160–177MathSciNetMATH Liu S, Trenkler G (2008) Hadamard, Khatri-Rao, Kronecker and other matrix products. Int J Inf Syst Sci 4:160–177MathSciNetMATH
Metadata
Title
Design and Modeling of Actuation System of Unmanned Tricopter with Thrust-Vectoring Front Tilt Rotors for Sustainable Flying
Authors
Riady Siswoyo Jo
Aaron EuGene Tan
Mark Tee Kit Tsun
Hudyjaya Siswoyo Jo
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-4756-0_5

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