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DMC-PID串级控制在CVT速比控制系统中的应用
引用本文:刘金刚,周云山,邹乃威,蔡源春,苏建业.DMC-PID串级控制在CVT速比控制系统中的应用[J].湖南大学学报(自然科学版),2007,34(10):44-48.
作者姓名:刘金刚  周云山  邹乃威  蔡源春  苏建业
作者单位:1. 湖南大学,汽车车身先进设计制造国家重点实验室,湖南,长沙,410082
2. 吉林大学汽车工程学院,吉林,长春,130025
摘    要:通过分析CVT速比控制系统的结构及基本控制原理,确定该系统具有时滞弱非线性特性,论述了常规PID控制算法以及单一的DMC控制算法应用于该系统的局限性.针对这一问题,设计了DMC-PID串级预测控制算法,该算法将经过PID校正的速比控制系统作为广义的控制对象,用DMC预测算法在线滚动优化控制参数,在优化过程中利用实测信息不断进行反馈校正,充分发挥DMC算法的超前预测性和强鲁棒性以及PID控制算法的抗干扰能力.台架实验结果表明,与常规的PID算法相比,该算法能有效减小速比跟踪过程中的波动,超调量由14%下降为4%,过渡时间由6 s缩短为4.5 s,提高了系统的动静态性能.

关 键 词:串级控制  无级变速器  速比控制系统
文章编号:1000-2472(2007)10-0044-05
修稿时间:2007-05-10

Application of DMC-PID Cascade Control in CVT Speed Ratio Control System
LIU Jin-gang,ZHOU Yun-shan,ZOU Nai-wei,CAI Yuan-chun,SUN Jian-ye.Application of DMC-PID Cascade Control in CVT Speed Ratio Control System[J].Journal of Hunan University(Naturnal Science),2007,34(10):44-48.
Authors:LIU Jin-gang  ZHOU Yun-shan  ZOU Nai-wei  CAI Yuan-chun  SUN Jian-ye
Institution:1. State Key Laboratory of Advanced Design and Manufacture for Vehicle Body, Hunan Univ, Changsha,Hunan 410082,China; 2. College of Automobile Engineering,Jilin Univ, Changchun,Jilin 130025,China
Abstract:The structure and the basic working principle of CVT speed ratio control system were analyzed,and the analysis results showed that the system performed a feeble nonlinear characteristic with pure time-delay.The disadvantages of the general PID control algorithm and the pure DMC control algorithm were explained one by one when they were applied in this system.Therefore,a DMC-PID cascade prediction control algorithm was designed for CVT speed ratio control,which regarded the speed ratio control system adjusted by PID as the generalized object,made use of DMC prediction algorithm to optimize the control input on line,and utilized the feedback adjustment to correct the prediction model using real-time output information.The proposed control algorithm took advantage of the strong robustness and predictability of DMC,and the strong anti-jamming ability of PID.It has been shown from the bench test that the proposed control algorithm accomplishes better steady and dynamic performances than general PID: the fluctuation reduces in ramp tracking,the overshoot decreases from 14% to 4%,and the transition time decreases from 6s to 4.5 s approximately.
Keywords:cascade control  continuously variable transmission(CVT)  speed ratio control system
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