Intelligent control of an UAV
This project entailed design and testing of an autonomous indoor quad rotor UAV. The project will take part 2015 Singapore Amazing Flying competition which will be held in March 2015. The challenge in this competition is make an autonomous UAV to cross obstacles, recon and drop payloads at target ar...
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sg-ntu-dr.10356-635922023-07-07T16:00:02Z Intelligent control of an UAV Chong, Abel Weng Lok Er Meng Joo School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Computer hardware, software and systems This project entailed design and testing of an autonomous indoor quad rotor UAV. The project will take part 2015 Singapore Amazing Flying competition which will be held in March 2015. The challenge in this competition is make an autonomous UAV to cross obstacles, recon and drop payloads at target area. The quad-copter has multiple degrees of freedom, rotation ability and multiple add-on functions. The propulsion system produces 4kg of thrust using 14" propellers. The UAV carries a variety of sensors such as a laser rangefinder, sonar and infrared sensors. These sensors are interfaced to on-board processors, which send high-level commands to a low-level flight controller. Flight tests were conducted to demonstrate the flight control and sensor operation of the UAV. Bachelor of Engineering 2015-05-15T06:36:34Z 2015-05-15T06:36:34Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/63592 en Nanyang Technological University 66 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Computer hardware, software and systems Chong, Abel Weng Lok Intelligent control of an UAV |
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This project entailed design and testing of an autonomous indoor quad rotor UAV. The project will take part 2015 Singapore Amazing Flying competition which will be held in March 2015. The challenge in this competition is make an autonomous UAV to cross obstacles, recon and drop payloads at target area. The quad-copter has multiple degrees of freedom, rotation ability and multiple add-on functions. The propulsion system produces 4kg of thrust using 14" propellers. The UAV carries a variety of sensors such as a laser rangefinder, sonar and infrared sensors. These sensors are interfaced to on-board processors, which send high-level commands to a low-level flight controller. Flight tests were conducted to demonstrate the flight control and sensor operation of the UAV. |
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Er Meng Joo |
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Er Meng Joo Chong, Abel Weng Lok |
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Final Year Project |
author |
Chong, Abel Weng Lok |
author_sort |
Chong, Abel Weng Lok |
title |
Intelligent control of an UAV |
title_short |
Intelligent control of an UAV |
title_full |
Intelligent control of an UAV |
title_fullStr |
Intelligent control of an UAV |
title_full_unstemmed |
Intelligent control of an UAV |
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intelligent control of an uav |
publishDate |
2015 |
url |
http://hdl.handle.net/10356/63592 |
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1772825232607805440 |