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Analysis of Radio Wave Propagation for ISM 2.4 GHz Wireless Sensor Networks in Inhomogeneous Vegetation Environments

机译:非均匀植被环境中ISM 2.4 GHz无线传感器网络的无线电波传播分析

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The use of wireless networks has experienced exponential growth due to the improvements in terms of battery life and low consumption of the devices. However, it is compulsory to conduct previous radio propagation analysis when deploying a wireless sensor network. These studies are necessary to perform an estimation of the range coverage, in order to optimize the distance between devices in an actual network deployment. In this work, the radio channel characterization for ISM 2.4 GHz Wireless Sensor Networks (WSNs) in an inhomogeneous vegetation environment has been analyzed. This analysis allows designing environment monitoring tools based on ZigBee and WiFi where WSN and smartphones cooperate, providing rich and customized monitoring information to users in a friendly manner. The impact of topology as well as morphology of the environment is assessed by means of an in-house developed 3D Ray Launching code, to emulate the realistic operation in the framework of the scenario. Experimental results gathered from a measurement campaign conducted by deploying a ZigBee Wireless Sensor Network, are analyzed and compared with simulations in this paper. The scenario where this network is intended to operate is a combination of buildings and diverse vegetation species. To gain insight in the effects of radio propagation, a simplified vegetation model has been developed, considering the material parameters and simplified geometry embedded in the simulation scenario. An initial location-based application has been implemented in a real scenario, to test the functionality within a context aware scenario. The use of deterministic tools can aid to know the impact of the topological influence in the deployment of the optimal Wireless Sensor Network in terms of capacity, coverage and energy consumption, making the use of these systems attractive for multiple applications in inhomogeneous vegetation environments.
机译:由于电池寿命和设备低消耗方面的改进,无线网络的使用经历了指数级增长。但是,在部署无线传感器网络时必须进行先前的无线电传播分析。这些研究对于估计范围覆盖率是必要的,以便在实际网络部署中优化设备之间的距离。在这项工作中,分析了不均匀植被环境中ISM 2.4 GHz无线传感器网络(WSN)的无线电信道特征。通过此分析,可以设计基于ZigBee和WiFi的环境监控工具,WSN和智能手机可以在此环境下进行协作,以友好的方式为用户提供丰富且自定义的监控信息。通过内部开发的3D射线发射代码来评估拓扑以及环境形态的影响,以模拟场景框架中的实际操作。本文分析了通过部署ZigBee无线传感器网络进行的测量活动获得的实验结果,并与仿真进行了比较。该网络旨在运行的场景是建筑物和多种植被的组合。为了深入了解无线电传播的影响,已经开发了简化的植被模型,其中考虑了模拟方案中嵌入的材料参数和简化的几何形状。最初的基于位置的应用程序已在实际场景中实现,以测试上下文感知场景中的功能。确定性工具的使用可以帮助您了解最佳无线传感器网络在容量,覆盖范围和能耗方面对最佳无线传感器网络部署的影响,从而使这些系统的使用对于非均质植被环境中的多种应用具有吸引力。

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