Detection of critical situations for vehicle longitudinal dynamics

Sebastien Varrier, D. Koenig, J. Martínez, B. d'Andréa-Novel
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Abstract

The objective of this paper is to design a new integrated methodology for the detection of a critical situation in vehicle longitudinal dynamics. In classical modern vehicle, the ABS - anti-lock braking system - (during bracking) and anti-skid (during accelerations) modules are acting separately. This paper presents an innovative methodology for the detection of longitudinal critical situations that can be used as an information for both ABS and anti-skid programs. The approach is based on the non-linear tire modeling that consists of three operating zones : normal zone, critical and skidding. The normal zone can be approximated by a linear representation of the tire force while this modeling is no longer acceptable in the other regions. Based on this statement, a robust fault detection methodology allows to detect the non-linear characteristics of the tire force representing the critical situation. Applicative results have been implemented on a 1/5th scale vehicle developed in the framework of the French national ANR INOVE project.
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车辆纵向动力学关键情况的检测
本文的目的是设计一种新的综合方法来检测车辆纵向动力学中的临界情况。在经典的现代汽车中,ABS(防抱死制动系统)(在制动过程中)和防滑(在加速过程中)模块分别起作用。本文提出了一种创新的方法来检测纵向临界情况,可以作为ABS和防滑程序的信息。该方法基于非线性轮胎建模,包括三个操作区域:正常区域、临界区域和打滑区域。正常区域可以用轮胎力的线性表示来近似,而这种建模在其他区域不再被接受。基于这种说法,一种鲁棒的故障检测方法允许检测代表临界情况的轮胎力的非线性特征。应用结果已在法国国家ANR INOVE项目框架下开发的1/5比例车辆上实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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