Control of flexible wings for mini UAVs

In recent years, the world has been moving towards unmanned surveillance mainly for military security. This is highly beneficial as it eliminates any risk to the human operator. One such tool for unmanned surveillance is the miniature Unmanned Aerial Vehicle (UAV). The mini-UAV not only takes away r...

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Main Author: Lai, Benedict Chen Kin
Other Authors: Tegoeh Tjahjowidodo
Format: Final Year Project
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/10356/67621
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-676212023-03-04T19:45:39Z Control of flexible wings for mini UAVs Lai, Benedict Chen Kin Tegoeh Tjahjowidodo School of Mechanical and Aerospace Engineering DRNTU::Engineering In recent years, the world has been moving towards unmanned surveillance mainly for military security. This is highly beneficial as it eliminates any risk to the human operator. One such tool for unmanned surveillance is the miniature Unmanned Aerial Vehicle (UAV). The mini-UAV not only takes away risks to the human operator, it is smaller, lighter and more cost effective than conventional UAVs and can survey a large area quickly. It also requires only one operator to launch and operate the mini-UAV. However, one problem that a typical mini-UAV faces is that it has a low flight altitude where the wind conditions tend to be unpredictable. Thus, this project studies the use of flexible wing on UAVs for their smoother flight characteristics, which are the direct effect of the adaptive washout effect. In addition, the flexibility of the wing enables the wing to be folded around the fuselage for easy storage and deployment. While the flexible wing is preferred over a conventional rigid fixed wing aircraft, it faces the issue of ineffective roll control authority due to the absence of ailerons. This report discusses the novel solution of using tendon-sheath wing-warping mechanism as a substitute to ailerons. By warping the wing along its chord length, one can change the wing’s camber to manipulate lift generation. When only one side of the wing is warped, the difference in lift forces from both sides of the wing creates a rolling moment, exactly like ailerons. This report focuses on the control of the tendon-sheath wing-warping mechanism in particular. Bachelor of Engineering (Aerospace Engineering) 2016-05-18T08:02:52Z 2016-05-18T08:02:52Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/67621 en Nanyang Technological University 90 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Lai, Benedict Chen Kin
Control of flexible wings for mini UAVs
description In recent years, the world has been moving towards unmanned surveillance mainly for military security. This is highly beneficial as it eliminates any risk to the human operator. One such tool for unmanned surveillance is the miniature Unmanned Aerial Vehicle (UAV). The mini-UAV not only takes away risks to the human operator, it is smaller, lighter and more cost effective than conventional UAVs and can survey a large area quickly. It also requires only one operator to launch and operate the mini-UAV. However, one problem that a typical mini-UAV faces is that it has a low flight altitude where the wind conditions tend to be unpredictable. Thus, this project studies the use of flexible wing on UAVs for their smoother flight characteristics, which are the direct effect of the adaptive washout effect. In addition, the flexibility of the wing enables the wing to be folded around the fuselage for easy storage and deployment. While the flexible wing is preferred over a conventional rigid fixed wing aircraft, it faces the issue of ineffective roll control authority due to the absence of ailerons. This report discusses the novel solution of using tendon-sheath wing-warping mechanism as a substitute to ailerons. By warping the wing along its chord length, one can change the wing’s camber to manipulate lift generation. When only one side of the wing is warped, the difference in lift forces from both sides of the wing creates a rolling moment, exactly like ailerons. This report focuses on the control of the tendon-sheath wing-warping mechanism in particular.
author2 Tegoeh Tjahjowidodo
author_facet Tegoeh Tjahjowidodo
Lai, Benedict Chen Kin
format Final Year Project
author Lai, Benedict Chen Kin
author_sort Lai, Benedict Chen Kin
title Control of flexible wings for mini UAVs
title_short Control of flexible wings for mini UAVs
title_full Control of flexible wings for mini UAVs
title_fullStr Control of flexible wings for mini UAVs
title_full_unstemmed Control of flexible wings for mini UAVs
title_sort control of flexible wings for mini uavs
publishDate 2016
url http://hdl.handle.net/10356/67621
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