Performance analysis of predictive functional control for automobile adaptive cruise control system
This paper presents the performance analysis of Predictive Functional Control (PFC) forAdaptive Cruise Control (ACC) application. To cope with multiple driving objectives of modernACC systemssuch as passenger comfort, safe distancing,and fast time response, an advanced optim...
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my.iium.irep.1030312024-01-24T08:35:39Z http://irep.iium.edu.my/103031/ Performance analysis of predictive functional control for automobile adaptive cruise control system Zainuddin, Mohamed Al-Sideque Abdullah, Muhammad Ahmad, Salmiah Uzair, Mohd Suhaimi Ahmad Baidowi, Zaid Mujaiyid Putra TJ212 Control engineering This paper presents the performance analysis of Predictive Functional Control (PFC) forAdaptive Cruise Control (ACC) application. To cope with multiple driving objectives of modernACC systemssuch as passenger comfort, safe distancing,and fast time response, an advanced optimal controller such as Model Predictive Control (MPC) is often used. Nevertheless, MPCrequires a high computation load due to its complex formulation and may overload the processing power of a microcontroller. Thus, the prime objective of this work is to propose a PFCalgorithm as an alternative controller, while providing a formal comparisonbetweenMPCand the traditional Proportional Integral (PI) controller. A standard kinematic model for vehicle longitudinal dynamics was modelledandused to derive the control law of PFC. Since the open-loop dynamic of the derived transfer function is not stable, the second objective is to propose a pre-stabilized loopor cascade PFC structurefor the system. A complete tuning procedure and analysis were presented. The simulation result shows that although MPC performance is the best for the ACC application with Root Mean Square Error (RMSE) of 1.4873, PFC has shown a promising response with RMSEof 1.5501, which is better compared to the PI controller with RMSE of 1.6219. All the imposed driving constraints, such as maximum acceleration, maximum deceleration and safe distance, were satisfied in the car following application. Thus, the findings from this work can become a good initial motivation to explore further the capability of the PFC algorithm for future ACC development. IIUM Press 2023-01 Article PeerReviewed application/pdf en http://irep.iium.edu.my/103031/1/2023_Peformance%20Analysis%20of%20PFC%20for%20automobile%20ACC%20system.pdf application/pdf en http://irep.iium.edu.my/103031/7/103031_PERFORMANCE%20ANALYSIS%20OF%20PREDICTIVE%20FUNCTIONAL%20CONTROL%20FOR%20AUTOMOBILE%20ADAPTIVE_Scopus.pdf Zainuddin, Mohamed Al-Sideque and Abdullah, Muhammad and Ahmad, Salmiah and Uzair, Mohd Suhaimi and Ahmad Baidowi, Zaid Mujaiyid Putra (2023) Performance analysis of predictive functional control for automobile adaptive cruise control system. IIUM Engineering Journal, 24 (1). pp. 213-225. ISSN 1511-758X E-ISSN 2289-7860 https://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/2341/894 10.31436/iiumej.v24i1.2341 |
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TJ212 Control engineering Zainuddin, Mohamed Al-Sideque Abdullah, Muhammad Ahmad, Salmiah Uzair, Mohd Suhaimi Ahmad Baidowi, Zaid Mujaiyid Putra Performance analysis of predictive functional control for automobile adaptive cruise control system |
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This paper presents the performance analysis of Predictive Functional Control (PFC) forAdaptive Cruise Control (ACC) application. To cope with multiple driving objectives of modernACC systemssuch as passenger comfort, safe distancing,and fast time response, an advanced optimal controller such as Model Predictive Control (MPC) is often used. Nevertheless, MPCrequires a high computation load due to its complex formulation and may overload the processing power of a microcontroller. Thus, the prime objective of this work is to propose a PFCalgorithm as an alternative controller, while providing a formal comparisonbetweenMPCand the traditional Proportional Integral (PI) controller. A standard kinematic model for vehicle longitudinal dynamics was modelledandused to derive the control law of PFC. Since the open-loop dynamic of the derived transfer function is not stable, the second objective is to propose a pre-stabilized loopor cascade PFC structurefor the system. A complete tuning procedure and analysis were presented. The simulation result shows that although MPC performance is the best for the ACC application with Root Mean Square Error (RMSE) of 1.4873, PFC has shown a promising response with RMSEof 1.5501, which is better compared to the PI controller with RMSE of 1.6219. All the imposed driving constraints, such as maximum acceleration, maximum deceleration and safe distance, were satisfied in the car following application. Thus, the findings from this work can become a good initial motivation to explore further the capability of the PFC algorithm for future ACC development. |
format |
Article |
author |
Zainuddin, Mohamed Al-Sideque Abdullah, Muhammad Ahmad, Salmiah Uzair, Mohd Suhaimi Ahmad Baidowi, Zaid Mujaiyid Putra |
author_facet |
Zainuddin, Mohamed Al-Sideque Abdullah, Muhammad Ahmad, Salmiah Uzair, Mohd Suhaimi Ahmad Baidowi, Zaid Mujaiyid Putra |
author_sort |
Zainuddin, Mohamed Al-Sideque |
title |
Performance analysis of predictive functional control for automobile adaptive cruise control system |
title_short |
Performance analysis of predictive functional control for automobile adaptive cruise control system |
title_full |
Performance analysis of predictive functional control for automobile adaptive cruise control system |
title_fullStr |
Performance analysis of predictive functional control for automobile adaptive cruise control system |
title_full_unstemmed |
Performance analysis of predictive functional control for automobile adaptive cruise control system |
title_sort |
performance analysis of predictive functional control for automobile adaptive cruise control system |
publisher |
IIUM Press |
publishDate |
2023 |
url |
http://irep.iium.edu.my/103031/1/2023_Peformance%20Analysis%20of%20PFC%20for%20automobile%20ACC%20system.pdf http://irep.iium.edu.my/103031/7/103031_PERFORMANCE%20ANALYSIS%20OF%20PREDICTIVE%20FUNCTIONAL%20CONTROL%20FOR%20AUTOMOBILE%20ADAPTIVE_Scopus.pdf http://irep.iium.edu.my/103031/ https://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/2341/894 |
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