Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications
The uses of brushless DC motor in quad copter application gives rise to a new demand. Quad copter drone usually uses brushless DC motor due to high performance, high efficiency and small volume. The function of brushless DC motor in quad copter is for positioning and velocity of the drone itself....
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Format: | Monograph |
Language: | English |
Published: |
Universiti Sains Malaysia
2021
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Online Access: | http://eprints.usm.my/54545/1/Black-Box%20Modelling%20For%20Brushless%20Dc%20Motor%20And%20Control%20Strategy%20For%20Quadcopter%20Applications.pdf |
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author | Nor, Muhammad Haziq Mohamed |
author_facet | Nor, Muhammad Haziq Mohamed |
author_sort | Nor, Muhammad Haziq Mohamed |
collection | USM |
description | The uses of brushless DC motor in quad copter application gives rise to a new
demand. Quad copter drone usually uses brushless DC motor due to high performance,
high efficiency and small volume. The function of brushless DC motor in quad copter is
for positioning and velocity of the drone itself. Surely brushless DC motor gives more
efficiency and effectiveness compared to brush motor. In order to analyse the responses
of the brushless DC motor and control strategy for quad copter applications, black box
modelling is invent. Black box or known as experimental modelling is a method for the
development of process database of the models. Since physical simulation cost so much
times, black box modelling is a common way to gain the overall behaviour process input
and output. Typically, the built model used for estimation of potential process values or
in application for process management. Important aspects in black box modelling which
is system analysis, data conditioning, key variable analysis, model structure design,
model identification and model evaluation. Software that been used is MATLAB and
Simulink. The MATLAB and Simulink software used to demonstrate and measure the
effective performance of the concept. The software helps in designing and identification
of the system of the quad copter. Usually, the performances of different linearity of the
models give different results of the models. Surely, linear transfer function models gives
the best result for the simulation. |
first_indexed | 2024-03-06T15:59:23Z |
format | Monograph |
id | usm.eprints-54545 |
institution | Universiti Sains Malaysia |
language | English |
last_indexed | 2024-03-06T15:59:23Z |
publishDate | 2021 |
publisher | Universiti Sains Malaysia |
record_format | dspace |
spelling | usm.eprints-545452022-09-08T04:11:18Z http://eprints.usm.my/54545/ Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications Nor, Muhammad Haziq Mohamed T Technology The uses of brushless DC motor in quad copter application gives rise to a new demand. Quad copter drone usually uses brushless DC motor due to high performance, high efficiency and small volume. The function of brushless DC motor in quad copter is for positioning and velocity of the drone itself. Surely brushless DC motor gives more efficiency and effectiveness compared to brush motor. In order to analyse the responses of the brushless DC motor and control strategy for quad copter applications, black box modelling is invent. Black box or known as experimental modelling is a method for the development of process database of the models. Since physical simulation cost so much times, black box modelling is a common way to gain the overall behaviour process input and output. Typically, the built model used for estimation of potential process values or in application for process management. Important aspects in black box modelling which is system analysis, data conditioning, key variable analysis, model structure design, model identification and model evaluation. Software that been used is MATLAB and Simulink. The MATLAB and Simulink software used to demonstrate and measure the effective performance of the concept. The software helps in designing and identification of the system of the quad copter. Usually, the performances of different linearity of the models give different results of the models. Surely, linear transfer function models gives the best result for the simulation. Universiti Sains Malaysia 2021-07-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/54545/1/Black-Box%20Modelling%20For%20Brushless%20Dc%20Motor%20And%20Control%20Strategy%20For%20Quadcopter%20Applications.pdf Nor, Muhammad Haziq Mohamed (2021) Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Aeroangkasa. (Submitted) |
spellingShingle | T Technology Nor, Muhammad Haziq Mohamed Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title | Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title_full | Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title_fullStr | Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title_full_unstemmed | Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title_short | Black-Box Modelling For Brushless Dc Motor And Control Strategy For Quadcopter Applications |
title_sort | black box modelling for brushless dc motor and control strategy for quadcopter applications |
topic | T Technology |
url | http://eprints.usm.my/54545/1/Black-Box%20Modelling%20For%20Brushless%20Dc%20Motor%20And%20Control%20Strategy%20For%20Quadcopter%20Applications.pdf |
work_keys_str_mv | AT normuhammadhaziqmohamed blackboxmodellingforbrushlessdcmotorandcontrolstrategyforquadcopterapplications |