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用于监测野生动物通道的无线传感器网络部署。

Wireless Sensor Network deployment for monitoring wildlife passages.

机构信息

Department of Information and Communication Technologies, Technical University of Cartagena, Campus Muralla del Mar, E-30202, Cartagena, Spain.

出版信息

Sensors (Basel). 2010;10(8):7236-62. doi: 10.3390/s100807236. Epub 2010 Aug 3.

Abstract

Wireless Sensor Networks (WSNs) are being deployed in very diverse application scenarios, including rural and forest environments. In these particular contexts, specimen protection and conservation is a challenge, especially in natural reserves, dangerous locations or hot spots of these reserves (i.e., roads, railways, and other civil infrastructures). This paper proposes and studies a WSN based system for generic target (animal) tracking in the surrounding area of wildlife passages built to establish safe ways for animals to cross transportation infrastructures. In addition, it allows target identification through the use of video sensors connected to strategically deployed nodes. This deployment is designed on the basis of the IEEE 802.15.4 standard, but it increases the lifetime of the nodes through an appropriate scheduling. The system has been evaluated for the particular scenario of wildlife monitoring in passages across roads. For this purpose, different schemes have been simulated in order to find the most appropriate network operational parameters. Moreover, a novel prototype, provided with motion detector sensors, has also been developed and its design feasibility demonstrated. Original software modules providing new functionalities have been implemented and included in this prototype. Finally, main performance evaluation results of the whole system are presented and discussed in depth.

摘要

无线传感器网络(WSNs)正在被部署在非常多样化的应用场景中,包括农村和森林环境。在这些特定的环境中,样本保护和保存是一个挑战,特别是在自然保护区、危险地点或这些保护区的热点地区(即道路、铁路和其他民用基础设施)。本文提出并研究了一种基于 WSN 的系统,用于在野生动物通道周围区域对通用目标(动物)进行跟踪,这些通道是为动物安全穿越交通基础设施而建立的。此外,它还允许通过连接到战略部署节点的视频传感器进行目标识别。这种部署是基于 IEEE 802.15.4 标准进行的,但通过适当的调度增加了节点的寿命。该系统已经针对道路交叉口野生动物监测的特定场景进行了评估。为此,模拟了不同的方案,以找到最合适的网络操作参数。此外,还开发了一个具有运动探测器传感器的新型原型,并证明了其设计的可行性。提供新功能的原始软件模块已被实现并包含在这个原型中。最后,展示并深入讨论了整个系统的主要性能评估结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ea/3231152/d6d0fe94fa55/sensors-10-07236f1.jpg

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