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极限工况下主动前轮转向汽车稳定性控制 被引量:32

Stability Control of Vehicle with Active Front Steering Under Extreme Conditions
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摘要 轮胎对汽车稳定性有重要影响,研究和利用轮胎的非线性特性有助于扩展汽车的稳定域。本文基于非线性轮胎模型,提出一种改进型线性时变模型预测控制(LTV-MPC)方法。该方法能扩展主动前轮转向汽车的稳定范围,提高极限工况下主动前轮转向汽车的稳定性。仿真结果表明,该方法比传统的LTV-MPC方法具有更好的稳定性控制效果。 Tire has an important influence on vehicle stability.Studying and utilizing the nonlinear characteristics of tire is conducive to expanding the stability region of vehicle.In this paper,a modified linear time-varying model predictive control(LTV-MPC)method is proposed based on nonlinear tire model.The proposed method can expand the stability region of the vehicle with active front steering and enhance vehicle stability under extreme conditions.Simulation results show that the proposed method has better control effects than the traditional LTV-MPC.
作者 李绍松 郭孔辉 仇韬 陈虹 王国栋 崔高健 Li Shaosong;Guo Konghui;Qiu Tao;Chen Hong;Wang Guodong;Cui Gaojian(School of Mechatronic Engineering,Changchun University of Technology,Changchun 130012;KH Automotive Technologies(Changchun)Co.,Ltd.,Changchun 130000;Jilin University,State Key Laboratory of Automotive Simulation and Control,Changchun 130025)
出处 《汽车工程》 EI CSCD 北大核心 2020年第2期191-198,共8页 Automotive Engineering
基金 国家重点研发计划(2017YFB0103700) 吉林省重大科技攻关项目(20170201005GX)资助
关键词 车辆动力学 稳定性控制 主动前轮转向 模型预测控制 vehicle dynamics stability control active front steering model predictive control
作者简介 通信作者:郭孔辉,教授,中国工程院院士,E-mail:guokonghui@gmail.com。
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  • 1矫德余.四轮驱动车鲁棒轨迹跟踪控制器设计[J].吉林大学学报(工学版),2011,41(S2):301-305. 被引量:2
  • 2MANNING W J, CROLLA D A. A Review of Yaw Rate and Side- slip Controllers for Passenger Vehicles[J]. Transactions of the In- stitt~te of Measurement and Control,2007,29 ( 2 ) : 117- 135.
  • 3ABE M, KANO Y, SUZUKI K, et al. Side-slip Control to Stabi- lize Vehicle Lateral Motion by Direct Yaw Moment[J].ISAE Re- view,2001,22(4) :413-419.
  • 4ESMAILZADEH E, GOODARZI A, VOSSOUGHI G R. Optimal Yaw Moment Control Law for hnproved Vehicle Handling [ J ]. Mechatronics,2003,13 (7) :659-675.
  • 5PARK K, HEO S J, BAEK I. Controller Design for Improving Lat- eral Vehicle Dynamic Stability [ J ]. JSAE Review, 2001,22 ( 4 ) : 481-486.
  • 6GHIKE C, SHIM T, ASGARI J. Integrated Control of Wheel Drive- Brake Torque for Vehicle-handling Enhancement [ J ]. Proceedings of the Institution of Mechanical Engineers, Part D : Journal of Au- tomobile Engineering,2009,223 (4) :439-457.
  • 7CHUNG T, Yi K. Design and Evaluation of Side Slip Angle-based Vehicle Stability Control Scheme on a Virtual Test Track[ J]. Con- trol Systems Technology, IEEE Transactions on, 2006, 14 (2) : 224-234.
  • 8FALCONE P, BORRELLI F, ASGARI J, et al. Predictive Active Steering Control for Autonomous Vehicle Systems[ J ]. Control Sys- tems Technology, 1EEE Transactions on ,2007,15 ( 3 ) :566-580.
  • 9CHANG S, GORDON T J. A Flexible Hierarchical Model-based Control Methodology for Vehicle Active Safety Systems [ J ]. Vehi- cle System Dynamics,2008,46( S1 ) :63-75.
  • 10KATRINIOK A, ABEl., D. LTV-MPC Approach tbr lateral Vehi- cle Guidance by Front Steering at the Limits of Vehicle Dynamics [ C ]. Decision and Control and Eurupean Control Conference ( CDC-ECC ) , 2011 50th IEEE Conference on. IEEE, 2011 : 6828 -6833.

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