吉林大学学报(工学版) ›› 2014, Vol. 44 ›› Issue (2): 311-317.doi: 10.13229/j.cnki.jdxbgxb201402006

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Design and validation of control strategy for Dual-mode Electro-mechanical Transmission

ZHENG Hai-liang, XIANG Chang-le, WANG Wei-da, HAN Li-jin, ZHANG Dong-hao   

  1. School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China
  • Received:2012-10-17 Online:2014-02-01 Published:2014-02-01

Abstract:

In order to achieve the energy management and control of the dual-mode electro-mechanical transmission system, a comprehensive control strategy is studied. After the analysis of the structural characteristics of the dual-mode electro-mechanical transmission system, a control strategy for improving the fuel economy is proposed. This strategy can realize the operating mode judgment of transmission system and the coordinated control between the different energy sources. Based on dSPACE system, the hardware-in-loop simulation platform is developed to evaluate the control strategy of the dual-mode electro-mechanical transmission. The simulation results indicate that the proposed control strategy can realize the energy management and control of hybrid vehicles, the optimization of the engine operating point and the improvement of the vehicle fuel economy.

Key words: vehicle engineering, dual-mode, electro-mechanical transmission, control strategy, hardware-in-the-loop simulation

CLC Number: 

  • U469.72

[1] Chan C C. The state of the art of electric and hybrid vehicles[J]. Proceedings of IEEE, 2002, 90(2): 247-275.

[2] Tate E, Harpster M, Savagian P. The electrification of the automobile: from conventional hybrid, to plug-in hybrid, to extended-range electric vehicles[C]//SAE Paper, 2008-01-0458.

[3] Liu J M, Peng H. Modeling and control of a power-split hybrid vehicle[J]. IEEE Transactions on Control Systems Technology, 2008, 16(6):1242-1251.

[4] Conlon B. Comparative analysis of single and combined hybrid electrically variable transmission operating modes[C]//SAE Paper, 2005-01-1162.

[5] Kim N, Kim J, Kim H. Control strategy for a dual-mode electro-mechanical, infinitely variable transmission for hybrid electric vehicles[J]. Journal of Automobile Engineering, 2008, 222(9):1587-1601.

[6] Michal R, Donald K. Two-mode, compound-split, vehicular transmission having both enhanced speed and enhanced tractive power[P]. USA:6090005, 2000-07-18.

[7] Alan G, Michael R. Hybrid electric powertrain including a two-mode electrically variable transmission[P]. USA:6478705B1, 2002-11-12.

[8] 韩立金, 项昌乐, 刘辉, 等. 双模式混合驱动装置电机参数匹配[J]. 吉林大学学报:工学版, 2011, 41(6):1527-1531. Han Li-jin, Xiang Chang-le, Liu Hui, et al. Motor matching of the dual-mode hybrid transmission[J]. Journal of Jilin University (Engineering and Technology Edition), 2011, 41(6): 1527-1531.

[9] Jeongmin K, Talchol K, Byungsoon M, et al. Mode control strategy for a two-mode hybrid electric vehicle using electrically variable transmission (EVT) and fixed-gear mode[J]. IEEE Transaction on Vehicular Technology, 2011, 60(3):793-803.

[10] 王伟达, 项昌乐, 刘辉, 等. 混联式混合动力系统多能源综合控制策略[J]. 哈尔滨工业大学学报, 2012, 44(1):138-143. Wang Wei-da, Xiang Chang-le, Liu Hui, et al. Design and validation of hybrid control strategy for parallel-series HEV[J]. Journal of Harbin Institute of Technology, 2012, 44(1):138-143.

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