Abstract
This paper presents an acceleration slip regulation (ASR) system for four-wheel drive (4WD) electric vehicles, which are driven by the front and rear axles simultaneously. The ASR control strategy includes three control modes: average distribution of inter-axle torque, optimal distribution of inter-axle torque and independent control of optimal slip rate, respectively, which are designed based on the torque adaptive principle of inter-axle differential and sliding mode control theory. Furthermore, in order to accurately describe the longitudinal tyre force characteristic, a slip rate calculation formula in the form of a state equation was used for solving the numerical problem posed by the traditional way. A simulation was carried out with the MATLAB/Simulink software. The simulation results show that the proposed ASR system can fully use the road friction condition, inhibit the drive-wheels from slipping, and improve the vehicle longitudinal driving stability.
Original language | English |
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Pages (from-to) | 3748-3763 |
Number of pages | 16 |
Journal | Energies |
Volume | 7 |
Issue number | 6 |
DOIs | |
Publication status | Published - Jun 2014 |
Keywords
- Acceleration slip regulation (ASR)
- Electric vehicle
- Four-wheel drive (4WD)
- Sliding mode control