• CN:11-2187/TH
  • ISSN:0577-6686

›› 2007, Vol. 43 ›› Issue (4): 125-131.

• 论文 • 上一篇    下一篇

混联式混合动力车多能源动力控制系统的开发

周磊;罗禹贡;杨殿阁;李克强;连小珉   

  1. 清华大学汽车安全与节能国家重点实验室
  • 发布日期:2007-04-15

DEVELOPMENT OF HYBRID POWERTRAIN CONTROL SYSTEM FOR PARRALLEL-SERIES HYBRID ELECTRIC VEHICLE

ZHOU Lei;LUO Yugong;YANG Diange;LI Keqiang;LIAN Xiaomin   

  1. State Key Laboratory of Automotive Safety and Energy, Tsinghua University
  • Published:2007-04-15

摘要: 提出一种混联式混合动力车的控制系统,它在结构上有以下特点:双电动机方案、动力在自动变速箱后端耦合、基于CAN网络的整车控制系统。在能量管理策略方面采用基于最优动力系统效率的优化ICE曲线控制策略,用“九点定义法”确定驱动需求转矩,在自动变速换挡过程中的采用动力协调控制策略,并在制动能量回收控制中考虑了滑行制动和强制制动两种控制模式。在此基础上开发多能源动力控制系统,并进行硬件在环仿真测试和实车匹配调试。实车测试结果表明,该多能源动力总成控制器能有效地实现对多能源动力的控制,使车辆的经济性和动力性都有很大提高。

关键词: 多能源动力控制系统, 换挡协调控制, 混联式混合动力车, 控制策略, 磁流变抛光, 动态磁场, 法向力, 扭矩, 抛光垫

Abstract: The powertrain of the parallel-series hybrid electric vehicle(PSHEV) is discussed for its features of dual-motor structure in which powers from the engine and the tractive mo-tor are coupled at the output shaft of the transmission instead of the input shaft. Control strategies based on ICE optimal oper-ating schedule are utilized to improve the powertrain efficiency and reduce fuel consumption. To identify the power demand of the driver, a new “nine-point-definition method” is proposed. Special attention is given to the combination control of differ-ent power sources during gear shifting. Regenerative braking is divided into the braking mode and the coasting mode and dif-ferent control methods are applied for each mode. A hybrid powertrain controller (HCU) based on CAN network is devel-oped to implement these strategies, which is proved to be able to work efficiently and stably by hardware-in-loop experiment and on-board test. Test results show that under the coordination of HCU the vehicle achieves 35% reduction in fuel consump-tion and improvement in acceleration performance.

Key words: Control strategy, Gear shift combination control, Hybrid powertrain, ontroller, Parallel-series hybrid electric vehicle, Dynamic magnetic field, Magnetorheological finishing, Normal force, Polishing pad, Torque

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