控制理论(社会学)
稳健性(进化)
车辆动力学
电子稳定控制
非线性系统
主动转向
理论(学习稳定性)
工程类
相平面
计算机科学
控制工程
滑模控制
差速器(机械装置)
控制(管理)
汽车工程
人工智能
机器学习
物理
基因
航空航天工程
量子力学
化学
生物化学
作者
Carine Bardawil,Reine Talj,Clovis Francis,Ali Charara,Moustapha Doumiati
标识
DOI:10.1109/itsc.2014.6957710
摘要
This paper investigates several coordination strategies for the integrated use of active steering and differential braking control systems to improve vehicle's lateral stability. Each stand alone control system is developed to achieve a given objective; however, these systems are not designed to work in a cooperative way. By collaborating the work of these individual control systems, the overall performance of the vehicle's dynamics is enhanced by exploiting their advantages according to the driving phase and by minimizing their interaction. First, the stand alone controllers are synthesized using a second order sliding mode law by applying the super twisting algorithm known for its robustness and its reduction of the chattering phenomena. The coordination strategies are based on the stability index which is derived from the phase plane study of the vehicle's side-slip angle and its velocity to judge the vehicle's stability region. The analysis of these coordination strategies is done by simulation on a nonlinear seven degree of freedom four wheels vehicle model.
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