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A Study on Vehicle Detection and Tracking Using Wireless Sensor Networks

机译:无线传感器网络的车辆检测与跟踪研究

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Wireless Sensor network (WSN) is an emerging technology and has great potential to be employed in critical situations. The development of wireless sensor networks was originally motivated by military applications like battlefield surveillance. However, Wireless Sensor Networks are also used in many areas such as Industrial, Civilian, Health, Habitat Monitoring, Environmental, Military, Home and Office application areas. Detection and tracking of targets (eg. animal, vehicle) as it moves through a sensor network has become an increasingly important application for sensor networks. The key advantage of WSN is that the network can be deployed on the fly and can operate unattended, without the need for any pre-existing infrastructure and with little maintenance. The system will estimate and track the target based on the spatial differences of the target signal strength detected by the sensors at different locations. Magnetic and acoustic sensors and the signals captured by these sensors are of present interest in the study. The system is made up of three components for detecting and tracking the moving objects. The first component consists of inexpensive off-the shelf wireless sensor devices, such as MicaZ motes, capable of measuring acoustic and magnetic signals generated by vehicles. The second component is responsible for the data aggregation. The third component of the system is responsible for data fusion algorithms. This paper inspects the sensors available in the market and its strengths and weakness and also some of the vehicle detection and tracking algorithms and their classification. This work focuses the overview of each algorithm for detection and tracking and compares them based on evaluation parameters.
机译:无线传感器网络(WSN)是新兴技术,在紧急情况下具有很大的潜力。无线传感器网络的发展最初是由诸如战场监视之类的军事应用推动的。但是,无线传感器网络也用于许多领域,例如工业,民用,健康,人居监控,环境,军事,家庭和办公室应用领域。当目标(例如动物,车辆)通过传感器网络移动时,对其的检测和跟踪已成为传感器网络越来越重要的应用。 WSN的主要优势在于,网络可以即时部署,并且可以在无人值守的情况下运行,而无需任何预先存在的基础架构,并且几乎不需要维护。系统将基于传感器在不同位置检测到的目标信号强度的空间差异来估计和跟踪目标。磁性和声学传感器以及由这些传感器捕获的信号在研究中受到关注。该系统由用于检测和跟踪运动物体的三个组件组成。第一部分由廉价的现成无线传感器设备组成,例如MicaZ微粒,能够测量车辆产生的声和磁信号。第二个组件负责数据聚合。系统的第三部分负责数据融合算法。本文检查了市场上可用的传感器及其优缺点,以及一些车辆检测和跟踪算法及其分类。这项工作着重介绍了每种用于检测和跟踪的算法,并根据评估参数对它们进行了比较。

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