Modeling and Torque Tracking Control of Permanent Magnet Synchronous Motor (PMSM) for Hybrid Electric Vehicle

Authors

  • Mohd Sabirin Rahmat
  • Fauzi Ahmad
  • Ahmad Kamal Mat Yamin
  • Vimal Rau Aparow
  • Noreffendy Tamaldin

DOI:

https://doi.org/10.15282/ijame.7.2012.12.0077

Keywords:

Modelling; permanent magnet synchronous motor; torque tracking control; Adaptive PID; PID controller

Abstract

This paper presents a detailed derivation of a permanent magnet synchronous motor, which may be used as the electric power train for the simulation of a hybrid electric vehicle. A torque tracking control of the permanent magnet synchronous motor is developed by using an adaptive proportional-integral-derivative controller. Several tests such as step function, saw tooth function, sine wave function and square wave function were used in order to examine the performance of the proposed control structure. The  effectiveness of the proposed controller was verified and compared with the same system under a PID controller and the desired control. The result of the observations shows that the proposed control structure proves to be effective in tracking the desired torque with a good response. The findings of this study will be considered in the design, optimisation and experimentation of series hybrid electric vehicle.

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Published

2022-12-09

How to Cite

[1]
Mohd Sabirin Rahmat, Fauzi Ahmad, Ahmad Kamal Mat Yamin, Vimal Rau Aparow, and Noreffendy Tamaldin, “Modeling and Torque Tracking Control of Permanent Magnet Synchronous Motor (PMSM) for Hybrid Electric Vehicle”, Int. J. Automot. Mech. Eng., vol. 7, pp. 955–967, Dec. 2022.

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