Design of Archimedean Spiral Antenna for Wireless Underground Sensor Network

Ashish K Adiga, Nethravathi K A, Bhishm Tripathi
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Abstract

In this paper, the antenna suitable for a wire-less underground sensor network is designed in Ansys High Frequency Structure Simulator (HFSS). The dielectric properties viz. dielectric constant and loss tangent of four different types of soil with different clay contents and different volumetric water contents are found from the Mineralogy Based Soil Dielectric Model (MBSDM). These dielectric properties are then used to simulate the different types of soil by creating a mud box to emulate the underground soil scenario. One antenna is kept 6cm above the ground and another antenna is kept 28cm below the ground inside the mud box. The simulation is performed for four different soil types to determine the attenuation between the two antennas caused by the different types of soil using HFSS. The gain of the antennas above and below the ground is observed and tabulated for different types of soil. An Archimedean Spiral Antenna is designed and simulated to determine the attenuation between the antenna 6cm above the ground and the antenna 28cm below the ground. The attenuation is found to be within 15dB - 30dB for all four types of soil. This range of attenuation is acceptable for a precision agriculture wireless underground sensor network application. The return loss and gain of the antenna are found to vary when used in different soil types based on the clay content and volumetric water content of the soil.
地下无线传感器网络中阿基米德螺旋天线的设计
本文在Ansys高频结构模拟器(HFSS)中设计了适用于无线地下传感器网络的天线。利用基于矿物学的土壤介电模型(MBSDM)计算了不同粘土含量和不同体积含水量的4种不同类型土壤的介电常数和损耗正切。这些介电特性然后被用来模拟不同类型的土壤,通过创建一个泥盒来模拟地下土壤的情况。一根天线保持在离地6cm处,另一根天线保持在离地28cm处。利用HFSS对四种不同的土壤类型进行了模拟,以确定不同土壤类型对两根天线之间的衰减。对地面上和地下天线的增益进行了观察,并针对不同类型的土壤制作了表格。设计并仿真了一种阿基米德螺旋天线,以确定天线在地面上方6cm处和地面下方28cm处的衰减。四种土壤的衰减都在15dB ~ 30dB之间。这种衰减范围对于精确农业无线地下传感器网络应用是可以接受的。天线的回波损耗和增益根据土壤的粘土含量和体积含水量在不同的土壤类型中使用时是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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