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Journal of Applied Sciences

Year: 2013 | Volume: 13 | Issue: 22 | Page No.: 5356-5362
DOI: 10.3923/jas.2013.5356.5362
Control Strategy for Starting and Acceleration of Pure Electric Vehicle
J.J Hu, Y. Ji and R. Du

Abstract: In order to solve the problems such as smoothness, slipping backward on a slope and acceleration performance which are crucial issues during the starting process of the Pure Electric Vehicle (PEV), the integrated output characteristics of the engine and torque converter was studied in the starting and acceleration process of vehicle equipped with automatic transmission and the characteristics of driving motor, power battery pack and power train system of PEV were comprehensively considered. Furthermore, a control strategy for starting and acceleration of pure electric vehicle was proposed. With the MATLAB/Simulink software platform, the starting and acceleration performance of pure electric vehicle using the proposed control strategy was analyzed. The results show that the starting performance of pure electric vehicle is very smoothness at different accelerator opening by using the proposed control strategy and the acceleration performance has been effectively improved.

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How to cite this article
J.J Hu, Y. Ji and R. Du, 2013. Control Strategy for Starting and Acceleration of Pure Electric Vehicle. Journal of Applied Sciences, 13: 5356-5362.

Keywords: Pure electric vehicle, starting and acceleration, automatic transmission, control strategy and simulation

REFERENCES

  • Chen, X.P. and G.L. Kong, 2011. A method of AMT starting control with constant engine speed. Proceedings of the International Conference on Consumer Electronics, Communications and Networks, April 16-18, 2011, XianNing, China, pp: 17-21.


  • Dou, G.W., F. Liu and H. Chen, 2010. Drive control strategy development and practice of pure electric vehicle. Shanghai Automotive, 5: 8-11, 31.


  • Jeong, Y.S. and J.Y. Lee, 2011. Parameter identification of an induction motor drive with magnetic saturation for electric vehicle. J. Power Electron., 11: 418-423.
    Direct Link    


  • Katsumi, K., I. Hiroshi, N. Shinya and Y. Kenichi, 1995. Torque converter clutch slip control system. SAE Technical Paper Series No. 950672.


  • Kulkarni, M., T. Shim and Y. Zhang, 2007. Shift dynamics and control of dual-clutch transmissions. Mech. Mach. Theory, 42: 168-182.
    CrossRef    Direct Link    


  • He, L., L. Li, L.Y. Yu and J. Song, 2011. Multi-state control strategy of starting for a wet friction clutch via a fuzzy logic algorithm. Int. J. Automotive Technol., 12: 537-544.
    CrossRef    Direct Link    


  • Mckay, D., G. Nichols and B. Schreurs, 2000. Delphi electronic throttle control systems for model year 2000: Driver features, system security and OEM benefits. ETC for the mass market. SAE Technical Paper 2000-01-0556. http://papers.sae.org/2000-01-0556/.


  • She, J.G. and S.Y. Wan, 2003. A study on the control of starting and acceleration for EV motor. J. Hubei Automotive Ind. Inst., 17: 1-3, 8.


  • Wang, G.P., J. Ma and P.P. Yang, 2009. Dynamic modeling and simulation of starting and acceleration for electric vehicle. J. Changan Univ., 29: 98-102.


  • Wang, J., J.Z. Yang and Z.B. Cai, 2009. The optimum control strategy of battery electric car based on fuzzy control. Automotive Eng., 31: 362-365.


  • Wang, L.G., 2009. Pure electric bus's powertrain control strategy. M.Sc. Thesis, Jilin University, Jilin, China.


  • Yu, Z.S., 2010. Automobile Theory. 5th Edn., China Machine Press, China


  • Zhu, Y., H.H. Sun and Y.G. Tian, 2005. Study on control system of fuel cell bus. Automotive Eng., 27: 136-140.

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