Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres
In the past two decades, automotive manufacturing has witnessed some advancements, especially for vehicle handling and active safety systems (ASSs). Progressively, more controllers have been designed to deal with linear and non-linear systems. However, studies and research on integral terms in linea...
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International Journal of Mechanical Engineering and Robotics Research
2019
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my.utem.eprints.242022020-07-30T08:40:35Z http://eprints.utem.edu.my/id/eprint/24202/ Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres Omar, Mohd Firdaus Ghazali, Rozaimi Aripin, Muhamad Khairi Soon, Chong Chee Saadon, Intan Mastura In the past two decades, automotive manufacturing has witnessed some advancements, especially for vehicle handling and active safety systems (ASSs). Progressively, more controllers have been designed to deal with linear and non-linear systems. However, studies and research on integral terms in linear quadratic regulators are scarce. In this paper, linear controllers, including the proportional integral derivative (PID) and linear quadratic integral (LQI) using direct yaw control (DYC), have been designed and compared. With the interference of external disturbances and variation of the friction coefficient, the result indicates that the LQI controller produces a significant improvement in the vehicle slalom manoeuvre system compared to the PID controller. International Journal of Mechanical Engineering and Robotics Research 2019-03 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/24202/2/2019_JOURNAL_SCOPUS_IJMERR_FIRDAUS.PDF Omar, Mohd Firdaus and Ghazali, Rozaimi and Aripin, Muhamad Khairi and Soon, Chong Chee and Saadon, Intan Mastura (2019) Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres. International Journal of Mechanical Engineering and Robotics Research, 8 (2). pp. 246-253. ISSN 2278-0149 http://www.ijmerr.com/uploadfile/2019/0222/20190222041749398.pdf 10.18178/ijmerr.8.2.246-253 |
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In the past two decades, automotive manufacturing has witnessed some advancements, especially for vehicle handling and active safety systems (ASSs). Progressively, more controllers have been designed to deal with linear and non-linear systems. However, studies and research on integral terms in linear quadratic regulators are scarce. In this paper, linear controllers, including the proportional integral derivative (PID) and linear quadratic integral (LQI) using direct yaw control (DYC), have been designed and compared. With the interference of external disturbances and variation of the friction coefficient, the result indicates that the LQI controller produces a significant improvement in the vehicle slalom manoeuvre system compared to the PID controller. |
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Article |
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Omar, Mohd Firdaus Ghazali, Rozaimi Aripin, Muhamad Khairi Soon, Chong Chee Saadon, Intan Mastura |
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Omar, Mohd Firdaus Ghazali, Rozaimi Aripin, Muhamad Khairi Soon, Chong Chee Saadon, Intan Mastura Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
author_facet |
Omar, Mohd Firdaus Ghazali, Rozaimi Aripin, Muhamad Khairi Soon, Chong Chee Saadon, Intan Mastura |
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Omar, Mohd Firdaus |
title |
Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
title_short |
Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
title_full |
Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
title_fullStr |
Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
title_full_unstemmed |
Analysis Of A Linear Design For A Sports Utility Vehicle In Slalom Manoeuvres |
title_sort |
analysis of a linear design for a sports utility vehicle in slalom manoeuvres |
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International Journal of Mechanical Engineering and Robotics Research |
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2019 |
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http://eprints.utem.edu.my/id/eprint/24202/2/2019_JOURNAL_SCOPUS_IJMERR_FIRDAUS.PDF http://eprints.utem.edu.my/id/eprint/24202/ http://www.ijmerr.com/uploadfile/2019/0222/20190222041749398.pdf |
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