Integrated control design for vehicle semi-active suspension system with variable stiffness stabilizer

被引:0
作者
Kosemura R. [1 ]
Suzuki T. [1 ]
Takahashi M. [1 ]
机构
[1] Department of System Design Engineering, Keio University, Yokohama-shi, Kanagawa, 223-8522, 3-14-1 Hiyoshi, Kohoku-ku
来源
Nihon Kikai Gakkai Ronbunshu, C Hen/Transactions of the Japan Society of Mechanical Engineers, Part C | 2010年 / 76卷 / 761期
关键词
Automobile; Bilinear control; Disturbance accommodation; H∞; control; Semi-active suspension; Variable stiffness stabilizer; Vibration control;
D O I
10.1299/kikaic.76.84
中图分类号
学科分类号
摘要
There is a trade-off between ride comfort and driving stability in passive suspensions for vehicles. Many studies have been done on improving ride comfort and driving stability. Semi-active suspension systems with variable dampers and variable stiffness stabilizers have attracted much attention recently due to their low cost, low energy use, and safety. Several systems have been put into practical use so far. However there is a possibility that these devices interfere in each other, because these devices are separately controlled. Therefore, it is desirable that variable dampers and variable stiffness stabilizers are controlled by an integrated control design method for suspension system. This study aims at establishing the integrated control design method for the semi-active suspension system which consists of variable dampers and variable stiffness stabilizers in order to improve ride comfort and driving stability. The computer simulations weree carried out to verify the availability of the proposed control.
引用
收藏
页码:84 / 92
页数:8
相关论文
共 12 条
[1]  
Karnopp D.C., Crosby M.J., Harwood R.A., Vibration control using semi-active force generators, Transactions of the ASME Journals of Engineering for Industry, 94, pp. 619-626, (1974)
[2]  
Lu J., Multiobjective optimal suspension control to achieve integrated ride and handling performances, IEEE Transaction in Control System Technology, 10, 6, pp. 807-821, (2002)
[3]  
Osaku S., Sampei M., Shimizu E., Tomita K., Nonlinear h-infinity control for semi-active controlled suspension, Journal of the Society of Instrument and Control Engineers, 39, 2, pp. 126-129, (2000)
[4]  
Weser M., Nissing D., Thomas G., Babala M., Application of integrated sensor module for active roll control systems, SAE 2006-01-1465, (2006)
[5]  
Buma S., Urababa S., Suzuki S., Ohkuma Y., Cho J., Fukino T., Active E., System S.S., Journal of Society of Automotive Engineers of Japan, 60, 7, pp. 32-37, (2006)
[6]  
Kang S., Yoshida K., Criterion functions and control characteristics in active vibration control, Journal of the Japan Society of Mechanical Engineers, 58, 552 C, pp. 2373-2380, (1994)
[7]  
Nonami K., Hirata M., Nishimura H., Control System Design by MATLAB, pp. 69-74, (1998)
[8]  
Okamoto B., Yoshida K., Bilinear disturbance -accommodating optimal control of semi-active suspension for automobiles, Journal of the Japan Society of Mechanical Engineers, 66, 650, pp. 3297-3304, (2000)
[9]  
Imura J., Sugie T., Yoshikawa T., H∞ control of nonlinear systems based on the Hamilton-Jacobi inequalities, Proceedings of Instrament and Control Engineering, 36, (1993)
[10]  
Umehara R., Ootsuki M., Yoshida K., Bilinear robust control method and its application to semi-active suspension for railway vehicle, Journal of the Japan Society of Mechanical Engineers, 71, 701 C, pp. 129-136, (2005)