Vehicle height control of electronic air suspension system based on mixed logical dynamical modelling

被引:0
作者
SUN XiaoQiang [1 ]
CHEN Long [2 ]
WANG ShaoHua [1 ]
XU Xing [2 ]
机构
[1] School of Automotive and Traffic Engineering, Jiangsu University
[2] Automotive Engineering Research Institute, Jiangsu University
关键词
D O I
暂无
中图分类号
U463.33 [悬挂];
学科分类号
080204 ; 082304 ;
摘要
Due to the coexistence and coupling of continuous variables and discrete events, the vehicle height adjustment process of electronic air suspension system can be regarded as a typical hybrid system. Therefore, the hybrid system theory was applied to design a novel vehicle height control strategy in this paper. A nonlinear mechanism model of the vehicle height adjustment system was established based on vehicle system dynamics and thermodynamic theory for variable-mass gas charge/discharge system. In order to model both the continuous/discrete dynamics of vehicle height adjustment process and the on-off statuses switching of solenoid valves, the framework of mixed logical dynamical(MLD) modelling was used. On the basis of the vehicle height adjustment control strategy, the MLD model of the adjustment process was built by introducing auxiliary logical variables and auxiliary continuous variables. Then, the co-simulation of the nonlinear mechanism model and the MLD model was conducted based on the compiling of HYSDEL. The simulation and experimental results show that the proposed control strategy can not only adjust the vehicle height effectively, but also achieve the on-off statuses direct control of solenoid valves.
引用
收藏
页码:1894 / 1904
页数:11
相关论文
共 17 条
[1]  
Robust control of hand wheel torque for active front steering system[J] ZHAO WanZhong;LI YiJun;WANG ChunYan; Science China(Technological Sciences) 2015, 01
[2]  
Parameters optimum matching of pure electric vehicle dual-mode coupling drive system[J] ZHANG LiPeng;LI Liang;QI BingNan;WANG Chong;ZHANG YaHui;SONG Jian; Science China(Technological Sciences) 2014, 11
[3]   电控闭式空气悬架车高调节控制研究 [J].
窦辉 ;
陈龙 ;
汪少华 ;
眭忠 .
机械设计与制造, 2014, (09) :171-174
[4]  
Study on pneumatic-fuel hybrid system based on waste heat recovery from cooling water of internal combustion engine[J] FANG YiDong;LI DaoFei;FAN ZhiPeng;XU HuanXiang;WANG Lei;YU XiaoLi; Science China(Technological Sciences) 2013, 12
[5]  
The effects of EGR and ignition timing on emissions of GDI engine[J] ZHAO LiFeng;YU XiuMin;QIAN DingChao;DONG Wei;SUN Ping;HE Ling;YANG Song; Science China(Technological Sciences) 2013, 12
[6]  
The skinner automaton: A psychological model formalizing the theory of operant conditioning[J] RUAN XiaoGang;WU Xuan; Science China(Technological Sciences) 2013, 11
[7]  
Effect of driving conditions and suspension parameters on dynamic load-sharing of longitudinal-connected air suspensions[J] CHEN YiKai;HE Jie;KING Mark;CHEN WuWei;ZHANG WeiHua; Science China(Technological Sciences) 2013, 03
[8]   空气悬架大客车高度控制仿真与试验研究 [J].
张军 ;
雷帅 ;
段嗣盛 .
武汉理工大学学报, 2012, 34 (04) :123-126
[9]   Hybrid model predictive control for speed control of permanent magnet synchronous motor with saturation [J].
Dong L. ;
Dou L. ;
Chen J. ;
Xia Y. .
Journal of Control Theory and Applications, 2011, 9 (2) :251-255
[10]   ECAS客车车身高度的实时跟踪 [J].
徐兴 ;
陈照章 ;
全力 ;
李仲兴 ;
周孔亢 .
机械工程学报, 2011, 47 (02) :136-141