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Advantages offered by the double magnetic loops versus the conventional single ones

机译:双磁环与传统单磁环相比具有的优势

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摘要

Due to their simplicity and operating mode, magnetic loops are one of the most used traffic sensors in Intelligent Transportation Systems (ITS). However, at this moment, their potential is not being fully exploited, as neither the speed nor the length of the vehicles can be surely ascertained with the use of a single magnetic loop. In this way, nowadays the vast majority of them are only being used to measure traffic flow and count vehicles on urban and interurban roads. This is the reason why we presented in a previous paper the double magnetic loop, capable of improving the features and functionalities of the conventional single loop without increasing the cost or introducing additional complexity. In that paper, it was introduced their design and peculiarities, how to calculate their magnetic field and three different methods to calculate their inductance. Therefore, with the purpose of improving the existing infrastructure and providing it with greater potential and reliability, this paper will focus on justifying and demonstrating the advantages offered by these double loops versus the conventional ones. This will involve analyzing the magnetic profiles generated by the passage of vehicles over double loops and comparing them with those already known. Moreover, it will be shown how the vehicle speed, the traffic direction and many other data can be obtained more easily and with less margin of error by using these new inductance signatures.
机译:由于其简单性和操作模式,磁环是智能交通系统(ITS)中最常用的交通传感器之一。但是,由于使用单个磁环无法确定车辆的速度和长度,因此目前尚未充分发挥其潜力。这样,如今,它们中的绝大多数仅用于测量交通流量并计算城市和城市间道路上的车辆。这就是为什么我们在先前的论文中介绍了双磁环,它能够在不增加成本或不增加额外复杂性的情况下改善常规单环的特性和功能。在该论文中,介绍了它们的设计和特性,如何计算它们的磁场以及三种不同的方法来计算它们的电感。因此,为了改善现有基础架构并为其提供更大的潜力和可靠性,本文将着重于论证和演示这些双循环与传统双循环相比所提供的优势。这将涉及分析由车辆通过双环而产生的磁分布,并将其与已知的磁分布进行比较。此外,将显示如何通过使用这些新的电感信号来更容易地以较低的误差范围获得车速,交通方向和许多其他数据。

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