Vibration control of vehicle active suspension system using a new robust neural network control system

被引:135
作者
Eski, Ikbal [1 ]
Yidirim, Sahin [1 ]
机构
[1] Erciyes Univ, Fac Engn, Dept Mech Engn, TR-38039 Kayseri, Turkey
关键词
PID controller; Neural networks; Whole vehicle's suspension; Robust controller; SEMIACTIVE SUSPENSION; SEAT VIBRATIONS; MODEL; DESIGN; CAR;
D O I
10.1016/j.simpat.2009.01.004
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The main problem of vehicle vibration comes from road roughness. For that reason, it is necessary to control vibration of vehicle's suspension by using a robust artificial neural network control system scheme. Neural network based robust control system is designed to control vibration of vehicle's suspensions for full suspension system. Moreover. the full vehicle system has seven degrees of freedom on the vertical direction of vehicle's chassis, on the angular variation around X-axis and on the angular variation around Y-axis. The proposed control system is consisted of a robust controller, a neural controller, a model neural network of vehicle's suspension system. On the other hand, standard PID controller is also used to control whole vehicle's suspension system for comparison. Consequently, random road roughnesses are used as disturbance of control system. The simulation results are indicated that the proposed control system has superior performance at adapting random road disturbance for vehicle's suspension. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:778 / 793
页数:16
相关论文
共 15 条
[1]   Design of an active suspension to suppress the horizontal vibrations of a spray boom [J].
Anthonis, J ;
Ramon, H .
JOURNAL OF SOUND AND VIBRATION, 2003, 266 (03) :573-583
[2]   Fuzzy control for active suspensions [J].
D'Amato, FJ ;
Viassolo, DE .
MECHATRONICS, 2000, 10 (08) :897-920
[3]   Non-fragile output feedback H∞ vehicle suspension control using genetic algorithm [J].
Du, HP ;
Lam, J ;
Sze, KY .
ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 2003, 16 (7-8) :667-680
[4]   Multi-objective control of vehicle active suspension systems via load-dependent controllers [J].
Gao, HJ ;
Lam, J ;
Wang, CH .
JOURNAL OF SOUND AND VIBRATION, 2006, 290 (3-5) :654-675
[5]   Fuzzy logic control of seat vibrations of a non-linear full vehicle model [J].
Guclu, R .
NONLINEAR DYNAMICS, 2005, 40 (01) :21-34
[6]   Neural network control of seat vibrations of a non-linear full vehicle model using PMSM [J].
Guclu, Rahmi ;
Gulez, Kayhan .
MATHEMATICAL AND COMPUTER MODELLING, 2008, 47 (11-12) :1356-1371
[7]   Multidisciplinary design optimization of mechatronic vehicles with active suspensions [J].
He, YP ;
McPhee, J .
JOURNAL OF SOUND AND VIBRATION, 2005, 283 (1-2) :217-241
[8]   Adaptive sliding controller with self-tuning fuzzy compensation for vehicle suspension control [J].
Huang, Shiuh-Jer ;
Chen, Hung-Yi .
MECHATRONICS, 2006, 16 (10) :607-622
[9]   Development of a heavy truck semi-active suspension control [J].
Ieluzzi, M ;
Turco, P ;
Montiglio, M .
CONTROL ENGINEERING PRACTICE, 2006, 14 (03) :305-312
[10]   Design of a non-linear hybrid car suspension system using neural networks [J].
Spentzas, K ;
Kanarachos, SA .
MATHEMATICS AND COMPUTERS IN SIMULATION, 2002, 60 (3-5) :369-378