Predicting Ground Effects of Omnidirectional Antennas in Wireless Sensor Networks

J. Janek, Jeffrey J. Evans
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引用次数: 30

Abstract

Omnidirectional antennas are often used for radio frequency (RF) communication in wireless sensor networks (WSNs). Outside noise, electromagnetic interference (EMI), overloaded network traffic, large obstacles (vegetation and buildings), terrain and atmospheric composition, along with climate patterns can degrade signal quality in the form of data packet loss or reduced RF communication range. This paper explores the RF range reduction properties of a particular WSN designed to operate in agricultural crop fields to collect aggregate data composed of subsurface soil moisture and soil temperature. Our study, using simulation, anechoic and field measurements shows that the effect of antenna placement close to the ground (within 10 cm) signi?cantly changes the omnidirectional transmission pattern. We then develop and propose a prediction method that is more precise than current practices of using the Friis and Fresnel equations. Our prediction method takes into account environmental properties for RF communication range based on the height of nodes and gateways.
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无线传感器网络中全向天线的地面效应预测
在无线传感器网络(wsn)中,全向天线常用于射频通信。外部噪声、电磁干扰(EMI)、超负荷的网络流量、大型障碍物(植被和建筑物)、地形和大气成分以及气候模式都会以数据包丢失或射频通信范围缩小的形式降低信号质量。本文研究了一种用于农作物田间采集地下土壤湿度和土壤温度综合数据的无线传感器网络的射频距离缩减特性。我们的研究,使用模拟,消声和现场测量表明,天线放置在靠近地面(在10厘米以内)的信号的影响?Cantly改变了全向传输模式。然后,我们开发并提出了一种预测方法,比目前使用弗里斯和菲涅耳方程的做法更精确。我们的预测方法考虑了基于节点和网关高度的射频通信范围的环境特性。
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