首页> 外文会议>DSC-vol.75-1; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20061105-10; Chicago,IL(US) >ON-BOARD ROAD CONDITION MONITORING SYSTEM USING SLIP-BASED TIRE-ROAD FRICTION ESTIMATION AND WHEEL SPEED SIGNAL ANALYSIS
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ON-BOARD ROAD CONDITION MONITORING SYSTEM USING SLIP-BASED TIRE-ROAD FRICTION ESTIMATION AND WHEEL SPEED SIGNAL ANALYSIS

机译:基于滑行轮胎摩擦力估计和车轮速度信号分析的车载路况监测系统

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This paper presents an on-board road condition monitoring system developed for the safety application in Vehicle Infrastructure Integration (VII) project. The system equipped on the so-called probe vehicle is able to continuously evaluate road surface in terms of slipperiness and coarseness. Road surface is classified into four grades using stock mobile sensors and GPS speed-based measurements. The task of distinguishing slippery extents of road surfaces was treated as a "pattern-recognition" problem based on experimental results such that road surfaces can be classified into three slip levels, normal (v_(max) ≥ 0.5), slippery (0.3 ≤ μ_(max) < 0.5), and very slippery (μ_(max) < 0.3) provided enough excitation. To distinguish rough road surfaces like gravel roads from normal asphalt roads, a separate classifier making use of a filterbank for analyzing wheel speed signal was implemented. Experimental results demonstrate the feasibility of this road condition monitoring system for detecting slippery and rough road surfaces in close to real-time. Once a slippery road condition is detected by the probe vehicle, a warning message with accurate GPS position can be transmitted from the probe vehicle to road side equipment (RSE) and further be relayed to following vehicles as well as traffic management center (TMC) via Dedicated Short Range Communication (DSRC); hence the safety of road users can be improved with the aid of this cooperative or VII active safety system.
机译:本文提出了一种针对车辆基础设施集成(VII)项目中的安全应用而开发的车载道路状况监视系统。装备在所谓的探查车上的系统能够连续地评估路面的光滑度和粗糙度。使用常规移动传感器和基于GPS速度的测量,将路面分为四个等级。根据实验结果,区分路面打滑程度的任务被视为“模式识别”问题,因此路面可分为三个滑移级别,即正常(v_(max)≥0.5),打滑(0.3≤μ_ (最大)<0.5),非常滑(μ_(最大)<0.3)提供了足够的激励。为了区分诸如砾石路之类的粗糙路面与正常的柏油路,实施了一个单独的分类器,该分类器利用滤波器​​组来分析轮速信号。实验结果表明,该路况监测系统可用于实时检测湿滑和粗糙路面的可行性。探测车辆检测到湿滑的道路状况后,可以将具有准确GPS位置的警告消息从探测车辆传输到路边设备(RSE),然后通过以下方式中继到后续车辆以及交通管理中心(TMC):专用短程通信(DSRC);因此,借助该合作社或VII主动安全系统可以改善道路使用者的安全。

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