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Vehicle modeling for the analysis of the response of detectors based on inductive loops

机译:基于电感环的探测器响应分析车辆建模

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Magnetic loops are one of the most popular and used traffic sensors because of their widely extended technology and simple mode of operation. Nevertheless, very simple models have been traditionally used to simulate the effect of the passage of vehicles on these loops. In general, vehicles have been considered simple rectangular metal plates located parallel to the ground plane at a certain height close to the vehicle chassis. However, with such a simple model, it is not possible to carry out a rigorous study to assess the performance of different models of vehicles with the aim of obtaining basic parameters such as the vehicle type, its speed or its direction in traffic. For this reason and because computer simulation and analysis have emerged as a priority in intelligent transportation systems (ITS), this paper aims to present a more complex vehicle model capable of characterizing vehicles as multiple metal plates of different sizes and heights, which will provide better results in virtual simulation environments. This type of modeling will be useful when reproducing the actual behavior of systems installed on roads based on inductive loops and will also facilitate vehicle classification and the extraction of basic traffic parameters.
机译:磁环是最受欢迎和使用的交通传感器之一,因为它们广泛的技术和简单的操作模式。尽管如此,非常简单的模型传统上用于模拟车辆通过这些环的效果。通常,车辆被认为是在靠近车辆底盘的一定高度的平行于地面平行于接地平面的简单矩形金属板被认为是平行的。然而,利用如此简单的模型,不可能进行严格的研究,以评估不同车辆的性能,目的是获得诸如车辆类型,其速度或其交通方向的基本参数。出于这个原因,因为计算机仿真和分析作为智能交通系统的优先级(其),本文旨在提供一种更复杂的车型,能够将车辆作为不同尺寸和高度的多金属板表征,这将提供更好的导致虚拟仿真环境。这种类型的建模在基于电感环路上安装的道路上安装的系统的实际行为,还将促进车辆分类和基本交通参数的提取。

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