Annoyance Rate Evaluation Method on Ride Comfort of Vehicle Suspension System

被引:0
作者
TANG Chuanyin [1 ]
ZHANG Yimin [1 ]
ZHAO Guangyao [1 ]
MA Yan [2 ]
机构
[1] School of Mechanical Engineering and Automation, Northeastern University
[2] Shenyang Academy of Instrumentation Science
基金
中国国家自然科学基金;
关键词
evaluation method; ride comfort; annoyance rate; genetic algorithm; neural network;
D O I
暂无
中图分类号
U463.33 [悬挂]; U461.4 [汽车平顺性和舒适性];
学科分类号
080204 ; 082304 ;
摘要
The existing researches of the evaluation method of ride comfort of vehicle mainly focus on the level of human feelings to vibration. The level of human feelings to vibration is influenced by many factors, however, the ride comfort according to the common principle of probability and statistics and simple binary logic is unable to reflect these uncertainties. The random fuzzy evaluation model from people subjective response to vibration is adopted in the paper, these uncertainties are analyzed from the angle of psychological physics. Discussing the traditional evaluation of ride comfort during vehicle vibration, a fuzzily random evaluation model on the basis of annoyance rate is proposed for the human body’s subjective response to vibration, with relevant fuzzy membership function and probability distribution given. A half-car four degrees of freedom suspension vibration model is described, subject to irregular excitations from the road surface, with the aid of software Matlab/Simulink. A new kind of evaluation method for ride comfort of vehicles is proposed in the paper, i.e., the annoyance rate evaluation method. The genetic algorithm and neural network control theory are used to control the system. Simulation results are obtained, such as the comparison of comfort reaction to vibration environments between before and after control, relationship of annoyance rate to vibration frequency and weighted acceleration, based on ISO2631/1(1982), ISO 2631–1(1997) and annoyance rate evaluation method, respectively. Simulated assessment results indicate that the proposed active suspension systems prove to be effective in the vibration isolation of the suspension system, and the subjective response of human being can be promoted from very uncomfortable to a little uncomfortable. Furthermore, the novel evaluation method based on annoyance rate can further estimate quantitatively the number of passengers who feel discomfort due to vibration. A new analysis method of vehicle comfort is presented.
引用
收藏
页码:296 / 303
页数:8
相关论文
共 12 条
[1]   行走作用下梁板结构振动舒适度的烦恼率分析 [J].
宋志刚 ;
金伟良 .
振动工程学报, 2005, (03) :288-292
[2]   基于海冰区划的平台结构振动舒适度设计——容许加速度限值 [J].
宋志刚 ;
金伟良 .
海洋工程, 2005, (02) :61-65
[3]   人对振动主观反应的模糊随机评价模型 [J].
宋志刚 ;
金伟良 .
应用基础与工程科学学报, 2002, (03) :287-294
[4]   环境振动主观评价规律初探 [J].
涂瑞和 ;
战嘉恺 ;
孙家其 ;
方丹群 .
环境科学, 1990, (03) :70-73+97
[5]  
Effects of frequency, magnitude, damping, and direction on the discomfort of vertical whole-body mechanical shocks [J] . Se-Jin Ahn,Michael J. Griffin.&nbsp&nbspJournal of Sound and Vibration . 2007 (1)
[6]  
Evaluation of subjective responses to whole-body vibration exposure: Effect of frequency content [J] . Setsuo Maeda,Neil J. Mansfield,Nobuyuki Shibata.&nbsp&nbspInternational Journal of Industrial Ergonomics . 2007 (5)
[7]  
Safety and comfort analysis of a 3-D vehicle model with optimal non-linear active seat suspension [J] . M. Bouazara,M.J. Richard,S. Rakheja.&nbsp&nbspJournal of Terramechanics . 2004 (2)
[8]  
Prediction of vehicle discomfort from transient vibrations [J] . &nbsp&nbspJournal of Sound and Vibration . 2004 (3)
[9]   Evaluation of driver discomfort during long-duration car driving [J].
El Falou, W ;
Duchêne, J ;
Grabisch, M ;
Hewson, D ;
Langeron, Y ;
Lino, F .
APPLIED ERGONOMICS, 2003, 34 (03) :249-255
[10]   Evaluation of whole-body vibration in vehicles [J].
Paddan, GS ;
Griffin, MJ .
JOURNAL OF SOUND AND VIBRATION, 2002, 253 (01) :195-213