The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System
This study presents the modeling of two dimensional mathematical model of wiper system using Newtonian Law. Two dimensional mathematical models in x- and y-axis is found in differential equation form. The dynamics behavior of wiper system has a good response which instantaneously agreed which input...
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2012
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الوصول للمادة أونلاين: | http://eprints.utem.edu.my/id/eprint/7039/1/IEEE_-_RVF_-_2012_-_M.A.Salim.pdf http://eprints.utem.edu.my/id/eprint/7039/ |
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my.utem.eprints.70392015-05-28T03:46:39Z http://eprints.utem.edu.my/id/eprint/7039/ The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System Salim, Mohd Azli Noordin, Aminurrashid Abd Munir, Fudhail Mat Nuri, Nur Rashid TJ Mechanical engineering and machinery This study presents the modeling of two dimensional mathematical model of wiper system using Newtonian Law. Two dimensional mathematical models in x- and y-axis is found in differential equation form. The dynamics behavior of wiper system has a good response which instantaneously agreed which input or a disturbance happen during the operation of the system. Besides, in this study also investigated the effect of contact angle response in the flexible wiper assembly for forward and vice versa direction. The control scheme known as input shaping was applied to suppress the reversal noises and vibrations level in system. At the end of this study, the unwanted noise and vibration is reduced more than 25 percent compare with baseline result. 2012 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/7039/1/IEEE_-_RVF_-_2012_-_M.A.Salim.pdf Salim, Mohd Azli and Noordin, Aminurrashid and Abd Munir, Fudhail and Mat Nuri, Nur Rashid (2012) The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System. In: 2012 IEEE RIVF International Conference on Computing & Communication Technologies, Research, Innovation, and Vision for the Future, March 2012, Ho Chi Minh City, Vietnam. |
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TJ Mechanical engineering and machinery Salim, Mohd Azli Noordin, Aminurrashid Abd Munir, Fudhail Mat Nuri, Nur Rashid The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
description |
This study presents the modeling of two dimensional mathematical model of wiper system using Newtonian Law. Two dimensional mathematical models in x- and y-axis is found in differential equation form. The dynamics behavior of wiper system has a good response which instantaneously agreed which input or a disturbance happen during the operation of the system. Besides, in this study also investigated the effect of contact angle response in the flexible wiper assembly for forward and vice versa direction. The control scheme known as input shaping was applied to suppress the reversal noises and vibrations level in system. At the end of this study, the unwanted noise and vibration is reduced more than 25 percent compare with baseline result. |
format |
Conference or Workshop Item |
author |
Salim, Mohd Azli Noordin, Aminurrashid Abd Munir, Fudhail Mat Nuri, Nur Rashid |
author_facet |
Salim, Mohd Azli Noordin, Aminurrashid Abd Munir, Fudhail Mat Nuri, Nur Rashid |
author_sort |
Salim, Mohd Azli |
title |
The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
title_short |
The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
title_full |
The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
title_fullStr |
The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
title_full_unstemmed |
The Relationship of Contact Angle and Input Shaping Scheme in Automotive Wiper System |
title_sort |
relationship of contact angle and input shaping scheme in automotive wiper system |
publishDate |
2012 |
url |
http://eprints.utem.edu.my/id/eprint/7039/1/IEEE_-_RVF_-_2012_-_M.A.Salim.pdf http://eprints.utem.edu.my/id/eprint/7039/ |
_version_ |
1665905341010804736 |
score |
13.251813 |