期刊文献+

基于多自由度模型的汽车ASS与EPS集成控制研究 被引量:3

Research on Integrated Control of Automobile Active Suspension and Electrical Power Steering Systems Based on Multi-Degrees of Freedom Model
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摘要 为提高汽车转向行驶时的乘坐舒适性和操纵稳定性,建立了汽车电动助力转向系统(EPS)的多刚体动力学模型和多自由度的包含主动悬架系统(ASS)的整车动力学模型,根据转向和悬架两个系统之间的运动耦合关系,设计了EPS和ASS集成控制系统,对EPS采用了PID控制策略,ASS采用了预测控制策略。在MATLAB环境下的仿真结果表明:集成控制方法能够有效的改善车辆的操纵稳定性及平顺性,其控制效果优于单独控制。 In order to improve vehicle comfort and maneuverability when steering, a vehicle electricalpower steering system multibody dynamics model and a multi-degrees of freedom model of full vehicle including active suspension system were set up. An integrated control system was set up based on motion coupling relationship between steering and suspension systems. The P1D control strategy for the EPS and the MPC control strategy for the ASS were designed. Under Matlab, the simulation results show that the presented control scheme can achieve better vehicle maneuverability and ride comfort than separate control.
出处 《系统仿真学报》 CAS CSCD 北大核心 2009年第16期5130-5133,5137,共5页 Journal of System Simulation
基金 国家自然科学基金(50575064) 博士专项科研基金(20060359005)
关键词 多刚体动力学 主动悬架 电动助力转向 预测控制 集成控制 multibody dynamics active suspension system electrical power steering system predictive control integrated control
作者简介 王其东(1964-),男,安徽省阜南县人,教授,博导,研究方向为车辆系统动力学与控制; 秦炜华(1983-),男,安徽省池州市人,博士生,研究方向为车辆系统动力学与控制; 陈无畏(1951-),男,湖南省攸县人,教授,博导,研究方向为车辆系统动力学与控制。
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参考文献8

  • 1王其东,吴勃夫,陈无畏.基于预测控制的主动悬架与电动助力转向集成控制[J].农业机械学报,2007,38(1):1-5. 被引量:12
  • 2T Yoshimura, Y Emoto. Steering and suspension system of a full car model using fuzzy reasoning based on single input rule modules [J]. Int. J. Vehicle Autonomous Systems (S1474-6778), 2003, 1(2): 237-255.
  • 3H Ralmejat Muhi-body Dynamics--Vehicles, machines and mechanisms [M]. Pennsylvania, USA: Society of Automotive Engineers, 1998.
  • 4侯志祥,申群太,吴义虎.汽车主动悬架系统的单神经元自适应PID控制[J].系统仿真学报,2004,16(9):2107-2108. 被引量:10
  • 5王其东,杨孝剑,陈无畏,黄森仁.电动助力转向系统的建模及控制[J].农业机械学报,2004,35(5):1-4. 被引量:28
  • 6A Trachtler. Integrated vehicle dynamics control using active brake, steering and suspension systems [J]. International Journal of Vehicle Design (S0143-3369), 2004, 36(1): 1-2.
  • 7Sangbum Cho, N Harris McClamroch. Dynamics of Mutibody Vehicles and Their Formulation as Nonlinear Control Systems [C]// Proceedings of American Control Conference, Chicago, IL, USA, June 2000: 3908-3912.
  • 8喻凡.车辆动力学及其控制[M].北京:人民交通出版社,2005.

二级参考文献16

  • 1孙鹏远,陈虹,康健,郭孔辉.汽车主动悬架的约束预测控制[J].吉林大学学报(信息科学版),2002,20(2):47-53. 被引量:5
  • 2丁建新,马国新.汽车主动悬挂控制理论研究[J].兵工学报(坦克装甲车与发动机分册),2000(3):49-58. 被引量:6
  • 3王启瑞,刘立强,陈无畏.基于随机次优控制的汽车电动助力转向与主动悬架集成控制[J].中国机械工程,2005,16(8):743-747. 被引量:24
  • 4洪嘉振, 计算多体系统动力学. 北京:高等教育出版社, 1999.
  • 5余志生.汽车理论.北京:机械工业出版社,1990.
  • 6Chen J S. Control of electric power steering system. SAE Paper 981116,1998.
  • 7Masahiko Kurishige, Takayuki Kiful Noriyuki Inoue, Usumu Zeniya, et al. A control strategy to reduce steering torque for stationary vehicles equipped with EPS. SAE Paper 1999-01-0403,1999.
  • 8陶永华 尹怡欣 葛芦生.新型PID控制及其应用[M].北京:机械工业出版社,2000..
  • 9黄文梅.系统仿真分析与设计[M].湖南:国防科技大学出版社,2001..
  • 10刘金琨.先进PID控制及基MATLAB仿真[M].北京:电子工业出版社,2003..

共引文献48

同被引文献31

  • 1李静,李跃伟,张家财,李幼德,修鹏远.基于神经网络的车辆稳定性悬架阻尼控制仿真[J].系统仿真学报,2007,19(16):3813-3815. 被引量:1
  • 2March C, Shim T. Integrated Control of Suspension and Front Steering to Enhance Vehicle Handling [ J ]. Journal of Automobile Engineering, 2007,221 (4) : 337 - 391.
  • 3Mirza N, Hussain K, Day A J, et al. Investigation of the DynamicCharacteristics of Suspension Parameters on a Vehicle Experiencing Steering Drift During Braking[J]. Journal of Automobile Engineer- ing,2005,219 (12) : 1429 - 1441.
  • 4Pacejka H B, Sharp R S. Shear Force Development by Pneumatic Tyres in Steady State Conditions. A Review of Modelling Aspects[J]. Vehicle System Dynamics, 1991,20 ( 3 ) : 121 - 176.
  • 5Goda K, Hong H P, Lee C S. Probabi|istic Characteristics of Seis- mic Ductility Demand of SDOF Systems with Bouc-wen Hysteretie Behavior[ J]. ,Journal of Earthquake Engineering, 2009,13 ( 5 ) : 600 - 622.
  • 6KANNAN S,BASKAR S,MCCALLEY J, et al. Application of NSGA-II Algorithm to Generation Expansion Planning [ J 1. IEEE Transactions on Power Systems,2009,24( 1 ) :454 -461.
  • 7ROBERTSON D, DELAGRAMMATIKAS G J. The suspension system of the 2009 cooper union FSAE vehicle: a comprehensive design review [ J ]. SAE Paper, 2010, 2010 -01 -0311.
  • 8GE HAI WEN GE, SHI YU, REITZ R D, et al. Optimization of a HSDI diesel engine for passenger cars using a multi-objective genetic algorithm and multi-dimensional modeling [ J ]. SAE Paper, 2009,2009-01- 0715.
  • 9RAKHEJA S, STIHARU I. Influence of suspension k nematics and damper.asymmetry on the dynamic responses of a vehicle under bump and pothole excitations [ J ]. SAE Paper,2010,2010 - 01 - 1135.
  • 10MA Kai, PANG Shuyi. Interval optimization of uncertain suspension kinematics characteristic parameters [ J ]. SAE Paper,2011,2011 - 01 - 0730.

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