Wind tunnel evaluation for control transition from elevator to stabilator of small UAV

Faulty control surface actuator in a small Unmanned Aerial Vehicles (sUAV) could be overcome with a few techniques. Redundant actuators, analytical redundancy or combination of both are normally used as fault accommodation techniques. In this paper, the accommodation technique of faulty elevator act...

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Main Authors: Sahwee Z., Mahmood A.S., Rahman N.A., Sahari K.S.M.
Other Authors: 55524079500
Format: Article
Published: Taylor's University 2023
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Institution: Universiti Tenaga Nasional
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spelling my.uniten.dspace-232172023-05-29T14:38:30Z Wind tunnel evaluation for control transition from elevator to stabilator of small UAV Sahwee Z. Mahmood A.S. Rahman N.A. Sahari K.S.M. 55524079500 57193427529 9338388000 57218170038 Faulty control surface actuator in a small Unmanned Aerial Vehicles (sUAV) could be overcome with a few techniques. Redundant actuators, analytical redundancy or combination of both are normally used as fault accommodation techniques. In this paper, the accommodation technique of faulty elevator actuator is presented. This technique uses a standby control surface as temporary control reallocation. Wind tunnel measurement facility is set up for the experimental validation and it is compared with FoilSim software. Flat plate airfoil which was used as horizontal stabilizer, is simulated using numerical model and it is validated using the wind tunnel test. Then, a flat airfoil is designed to be used as stabilator for the recovery of faulty elevator actuator. Results show the different deflection angle is needed when transferring from one control surface to another. From the analysis, the proposed method could be implemented without affecting the pitch stability during control surface transition. The alternate control surface accommodation technique proves to be promising for higher reliability sUAV in the case of a faulty on-board actuator. � School of Engineering, Taylor�s University. Final 2023-05-29T06:38:30Z 2023-05-29T06:38:30Z 2017 Article 2-s2.0-85020201586 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85020201586&partnerID=40&md5=95018979aefe9eab2beef0036a1cb89a https://irepository.uniten.edu.my/handle/123456789/23217 12 6 1617 1626 Taylor's University Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Faulty control surface actuator in a small Unmanned Aerial Vehicles (sUAV) could be overcome with a few techniques. Redundant actuators, analytical redundancy or combination of both are normally used as fault accommodation techniques. In this paper, the accommodation technique of faulty elevator actuator is presented. This technique uses a standby control surface as temporary control reallocation. Wind tunnel measurement facility is set up for the experimental validation and it is compared with FoilSim software. Flat plate airfoil which was used as horizontal stabilizer, is simulated using numerical model and it is validated using the wind tunnel test. Then, a flat airfoil is designed to be used as stabilator for the recovery of faulty elevator actuator. Results show the different deflection angle is needed when transferring from one control surface to another. From the analysis, the proposed method could be implemented without affecting the pitch stability during control surface transition. The alternate control surface accommodation technique proves to be promising for higher reliability sUAV in the case of a faulty on-board actuator. � School of Engineering, Taylor�s University.
author2 55524079500
author_facet 55524079500
Sahwee Z.
Mahmood A.S.
Rahman N.A.
Sahari K.S.M.
format Article
author Sahwee Z.
Mahmood A.S.
Rahman N.A.
Sahari K.S.M.
spellingShingle Sahwee Z.
Mahmood A.S.
Rahman N.A.
Sahari K.S.M.
Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
author_sort Sahwee Z.
title Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
title_short Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
title_full Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
title_fullStr Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
title_full_unstemmed Wind tunnel evaluation for control transition from elevator to stabilator of small UAV
title_sort wind tunnel evaluation for control transition from elevator to stabilator of small uav
publisher Taylor's University
publishDate 2023
_version_ 1806425632230342656