Design and development of a prop-hanging mini aerial vehicle

A prop-hanging Unmanned Aerial Vehicle (PH-UAV) concept is designed and developed in the final year project. The PH-UAV is then fabricated and tested on its hovering capability. The completed PH-UAV prototype will be a good basis for further studies. This Final Year Report presents a PH-UAV design...

Full description

Saved in:
Bibliographic Details
Main Author: Lee, Yuan Sheng.
Other Authors: Chen Chang
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/16137
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-16137
record_format dspace
spelling sg-ntu-dr.10356-161372023-03-04T18:22:09Z Design and development of a prop-hanging mini aerial vehicle Lee, Yuan Sheng. Chen Chang School of Mechanical and Aerospace Engineering Go Tiauw Hiong DRNTU::Engineering::Aeronautical engineering::Aircraft A prop-hanging Unmanned Aerial Vehicle (PH-UAV) concept is designed and developed in the final year project. The PH-UAV is then fabricated and tested on its hovering capability. The completed PH-UAV prototype will be a good basis for further studies. This Final Year Report presents a PH-UAV design approach by first analyzing the theoretical aerodynamic properties followed by stability characteristics. The aerodynamic properties are analyzed through various programs and aerodynamic empirical models. These set the airfoil profile, aspect ratios, airfoil sweep and many other parameters through the comparison of lift, drag and moment coefficients. The power required also verifies the findings. These will be the basis for the structural design ideal for the hover flight for the PH-UAV. The stability analysis under hover flight condition is significantly different from that of horizontal flight in conventional aircraft, in which Euler angles involved in the transformations would give erroneous results. Thus, the stability of the PH-UAV are derived from the fundamental equations and manipulated differently for hover flight analysis. In between, assumptions relevant to hovering are applied. The set of stability modes, frequencies and roots derived are indicative of the stability of the PH-UAV. A clear understanding of stability theory and the mode of flight are required to perform various transformations correctly and the proper use of assumptions. The stability study determines the possible placements of CG and is a prediction of the likely stability behavior of the PH-UAV. After the Well detailed study in aerodynamics and stability, the PH-UAV is then fabricated in the lab. Hardware knowledge is required to put the various electronic systems together, such as the motors and transmitter-receiver system. Hands on technical skills are also needed to machine and fabricate various parts/mounts to attach the hardware on the structure. Practical technical knowledge is applied to determine the various positions of linkages and mounts such that these attachments required for remote operation do not affect the design of the prototype aerodynamically. Further work in the future will involve detailed analysis of the flight properties displayed during tests and how it deviates from the theoretical expectation. The theoretical model can be further modified to incorporate terms such that the actual behavior of the PH-UAV can be better reflected. Improvement on aerodynamic and stability properties can be made to enhance performance and endurance limits. Further hardware additions will be the integration of a control feedback system, an autonomous system and a camera system such that the prototype achieves good autonomous control with added surveillance ability. Bachelor of Engineering (Aerospace Engineering) 2009-05-21T06:43:02Z 2009-05-21T06:43:02Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16137 en Nanyang Technological University 117 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::Aeronautical engineering::Aircraft
spellingShingle DRNTU::Engineering::Aeronautical engineering::Aircraft
Lee, Yuan Sheng.
Design and development of a prop-hanging mini aerial vehicle
description A prop-hanging Unmanned Aerial Vehicle (PH-UAV) concept is designed and developed in the final year project. The PH-UAV is then fabricated and tested on its hovering capability. The completed PH-UAV prototype will be a good basis for further studies. This Final Year Report presents a PH-UAV design approach by first analyzing the theoretical aerodynamic properties followed by stability characteristics. The aerodynamic properties are analyzed through various programs and aerodynamic empirical models. These set the airfoil profile, aspect ratios, airfoil sweep and many other parameters through the comparison of lift, drag and moment coefficients. The power required also verifies the findings. These will be the basis for the structural design ideal for the hover flight for the PH-UAV. The stability analysis under hover flight condition is significantly different from that of horizontal flight in conventional aircraft, in which Euler angles involved in the transformations would give erroneous results. Thus, the stability of the PH-UAV are derived from the fundamental equations and manipulated differently for hover flight analysis. In between, assumptions relevant to hovering are applied. The set of stability modes, frequencies and roots derived are indicative of the stability of the PH-UAV. A clear understanding of stability theory and the mode of flight are required to perform various transformations correctly and the proper use of assumptions. The stability study determines the possible placements of CG and is a prediction of the likely stability behavior of the PH-UAV. After the Well detailed study in aerodynamics and stability, the PH-UAV is then fabricated in the lab. Hardware knowledge is required to put the various electronic systems together, such as the motors and transmitter-receiver system. Hands on technical skills are also needed to machine and fabricate various parts/mounts to attach the hardware on the structure. Practical technical knowledge is applied to determine the various positions of linkages and mounts such that these attachments required for remote operation do not affect the design of the prototype aerodynamically. Further work in the future will involve detailed analysis of the flight properties displayed during tests and how it deviates from the theoretical expectation. The theoretical model can be further modified to incorporate terms such that the actual behavior of the PH-UAV can be better reflected. Improvement on aerodynamic and stability properties can be made to enhance performance and endurance limits. Further hardware additions will be the integration of a control feedback system, an autonomous system and a camera system such that the prototype achieves good autonomous control with added surveillance ability.
author2 Chen Chang
author_facet Chen Chang
Lee, Yuan Sheng.
format Final Year Project
author Lee, Yuan Sheng.
author_sort Lee, Yuan Sheng.
title Design and development of a prop-hanging mini aerial vehicle
title_short Design and development of a prop-hanging mini aerial vehicle
title_full Design and development of a prop-hanging mini aerial vehicle
title_fullStr Design and development of a prop-hanging mini aerial vehicle
title_full_unstemmed Design and development of a prop-hanging mini aerial vehicle
title_sort design and development of a prop-hanging mini aerial vehicle
publishDate 2009
url http://hdl.handle.net/10356/16137
_version_ 1759856049344479232