Positioning Control Of Ball Screw System Driven By DC Motor

This paper presents the comparison of positioning control between conventional PID controller and fuzzy PID controller. The controllers are applying into the ball screw system driven by DC motor to observe and analyze the change of the positioning output responses. The DC motor is used because it is...

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Main Authors: Chong, Shin Horng, Ting, Tze Ter, Sakthi Velu, Vasanthan
Format: Article
Language:English
Published: Trans Tech Publications 2015
Subjects:
Online Access:http://eprints.utem.edu.my/id/eprint/21175/2/%5B2015T_IDECON%5D%20Positioning%20Control%20of%20Ball%20Screw%20System%20Driven%20by%20DC%20Motor.pdf
http://eprints.utem.edu.my/id/eprint/21175/
https://www.scientific.net/AMM.761.142
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Institution: Universiti Teknikal Malaysia Melaka
Language: English
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spelling my.utem.eprints.211752021-07-13T23:29:53Z http://eprints.utem.edu.my/id/eprint/21175/ Positioning Control Of Ball Screw System Driven By DC Motor Chong, Shin Horng Ting, Tze Ter Sakthi Velu, Vasanthan T Technology (General) TJ Mechanical engineering and machinery This paper presents the comparison of positioning control between conventional PID controller and fuzzy PID controller. The controllers are applying into the ball screw system driven by DC motor to observe and analyze the change of the positioning output responses. The DC motor is used because it is easy to setup and control, has precise rotation and most importantly is low cost. As for ball screw mechanism itself, has smooth motion, not easy to wear out and high mechanical efficiency. The problem is arise when the used of conventional PID controller in the ball screw system driven by DC motor shows less adaptability to the changes of system parameter. Therefore, the objective of this project is to design an adaptive fuzzy PID controller to overcome the limitation of conventional PID controller. The performances between the conventional PID controller and fuzzy PID controller will be compared in order to validate the robustness of the fuzzy PID controller. So this project is to compare the robustness of two proposed controllers by comparing the results of ball screw table position when the parameter mass of load is set to vary. The experiment is started with designing the algorithms of fuzzy PID control and conventional PID controller, then the designed algorithm is applied onto the experimental that has been setup. The performances especially the transient response and steady state error between the controllers will be collected and compared by conducting the point to point positioning, tracking and variation of load weight experiments. Trans Tech Publications 2015 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/21175/2/%5B2015T_IDECON%5D%20Positioning%20Control%20of%20Ball%20Screw%20System%20Driven%20by%20DC%20Motor.pdf Chong, Shin Horng and Ting, Tze Ter and Sakthi Velu, Vasanthan (2015) Positioning Control Of Ball Screw System Driven By DC Motor. Applied Mechanics And Materials, 761. pp. 142-147. ISSN 1662-7482 https://www.scientific.net/AMM.761.142 10.4028/www.scientific.net/AMM.761.142
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic T Technology (General)
TJ Mechanical engineering and machinery
spellingShingle T Technology (General)
TJ Mechanical engineering and machinery
Chong, Shin Horng
Ting, Tze Ter
Sakthi Velu, Vasanthan
Positioning Control Of Ball Screw System Driven By DC Motor
description This paper presents the comparison of positioning control between conventional PID controller and fuzzy PID controller. The controllers are applying into the ball screw system driven by DC motor to observe and analyze the change of the positioning output responses. The DC motor is used because it is easy to setup and control, has precise rotation and most importantly is low cost. As for ball screw mechanism itself, has smooth motion, not easy to wear out and high mechanical efficiency. The problem is arise when the used of conventional PID controller in the ball screw system driven by DC motor shows less adaptability to the changes of system parameter. Therefore, the objective of this project is to design an adaptive fuzzy PID controller to overcome the limitation of conventional PID controller. The performances between the conventional PID controller and fuzzy PID controller will be compared in order to validate the robustness of the fuzzy PID controller. So this project is to compare the robustness of two proposed controllers by comparing the results of ball screw table position when the parameter mass of load is set to vary. The experiment is started with designing the algorithms of fuzzy PID control and conventional PID controller, then the designed algorithm is applied onto the experimental that has been setup. The performances especially the transient response and steady state error between the controllers will be collected and compared by conducting the point to point positioning, tracking and variation of load weight experiments.
format Article
author Chong, Shin Horng
Ting, Tze Ter
Sakthi Velu, Vasanthan
author_facet Chong, Shin Horng
Ting, Tze Ter
Sakthi Velu, Vasanthan
author_sort Chong, Shin Horng
title Positioning Control Of Ball Screw System Driven By DC Motor
title_short Positioning Control Of Ball Screw System Driven By DC Motor
title_full Positioning Control Of Ball Screw System Driven By DC Motor
title_fullStr Positioning Control Of Ball Screw System Driven By DC Motor
title_full_unstemmed Positioning Control Of Ball Screw System Driven By DC Motor
title_sort positioning control of ball screw system driven by dc motor
publisher Trans Tech Publications
publishDate 2015
url http://eprints.utem.edu.my/id/eprint/21175/2/%5B2015T_IDECON%5D%20Positioning%20Control%20of%20Ball%20Screw%20System%20Driven%20by%20DC%20Motor.pdf
http://eprints.utem.edu.my/id/eprint/21175/
https://www.scientific.net/AMM.761.142
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