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A single element piezoelectric sensor for vehicle classification using the ratio of track width to length

机译:使用履带宽度与长度之比的用于车辆分类的单元件压电传感器

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Accurate vehicle count and classification reporting is a principal application of intelligent transportation system. United States Departments of Transportation (DOTs) use this information to design safe, suitable roadways. A wide variety of classification systems are currently employed. Regardless of type, an optimal system must be cost effective, require minimal maintenance, cause limited pavement damage during installation, and provide accurate information. Currently, the most widely used systems combine inductive loops and piezoelectric sensors. Most cause severe pavement damage during installation and fail to provide accurate classification for a variety of classes-class 1 motorcycles in particular. This paper introduces a vehicle classification system that employs a single element piezoelectric sensor placed diagonally across a traffic lane. The system is able to accurately classify 13 Federal Highway Administration vehicle classes, including class 1 motorcycles. The novel classification method utilizes the ratio of vehicle track width-to-length (w/l) as well as a traditional axle-spacing scheme to classify vehicles. The singleelement system is cost effective and reduces pavement damage primarily because it utilizes only a single sensor. Two highway test deployments found the system capable of achieving classification accuracy of up to 98.8% when employing the (w/l) method and 84.4% when employing the axle-spacing method.
机译:准确的车辆计数和分类报告是智能运输系统的主要应用。美国的交通部门(DOTS)使用这些信息来设计安全,合适的道路。目前采用各种分类系统。无论类型,最佳系统必须具有成本效益,需要最小的维护,在安装过程中导致有限的路面损坏,并提供准确的信息。目前,最广泛使用的系统组合了电感环和压电传感器。在安装过程中大多数原因严重的路面损坏,并且特别为各种课程1辆摩托车提供准确的分类。本文介绍了一种车辆分类系统,采用单个元件压电传感器沿交通车道对角线放置。该系统能够准确地分类13个联邦公路管理车型,包括1级摩托车。新颖的分类方法利用车辆轨道宽度至长度(W / L)的比率以及传统的轴间隔方案来分类车辆。单元素系统具有成本效益,主要原因损坏主要是因为它仅利用单个传感器。两条高速公路测试部署发现,当采用轴间距方法时,在使用(W / L)方法和84.4%时,该系统能够实现高达98.8%的分类精度。

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