Universiti Teknologi Malaysia Institutional Repository

Simulation of electro-mechanical friction clutch control using proportional derivative plus conditional integral control scheme for automotive application

Kob, M. S. C. and Mazali, I. I. and Daud, Z. H. C. and Asus, Z. and Darus, I. Z. M. (2021) Simulation of electro-mechanical friction clutch control using proportional derivative plus conditional integral control scheme for automotive application. International Journal of Advanced Mechatronic Systems, 9 (1). pp. 38-44. ISSN 1756-8412

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Abstract

This paper explains simulation works carried out to evaluate the performance of proportional-integral-derivative-based (PID-based) controls in controlling the electro-mechanical friction clutch (EMFC) for engagement and disengagement. The EMFC model is developed in Matlab/Simulink comprising DC motor s model and power screw mechanism s model. Four controls; proportional-integral (PI), proportional-integral-derivative (PID), proportional (P) and proportional derivative (PD), are applied on the model using 6 mm as the set point for the power screw s position. Among them, PD control performs the best with 0% overshoot, 0.041 mm steady state error and about 1.3 seconds settling time. Next, the PD control is updated with a conditional integral controller (PDPCI), resulting in approximately zero steady state error and only 0.68% overshoot, while settling time stays at 1.3 seconds. Subsequently, both PD and PDPCI controls are simulated to achieve EMFC s full engagement and disengagement. The final results show that PDPCI control performs the best with minimum overshoot.

Item Type:Article
Uncontrolled Keywords:clutch control, conditional integral control, electro-mechanical
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:94736
Deposited By: Narimah Nawil
Deposited On:31 Mar 2022 15:14
Last Modified:31 Mar 2022 15:14

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