Channel modeling and analysis with mineralogy based spectroscopic dielectric model in wireless underground sensor networks

K. A. Nethravathi, S. Shankar
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引用次数: 2

Abstract

This paper develops, a channel model forpropagation in Wireless Underground Sensor Network (WUSN) under three different communication scenarios viz: UG-UG, UG-AG and AG-UG, using Mineralogy Based Spectroscopic Dielectric Model (MBSDM). This is preferred over the Peplinski Soil Dielectric model for calculating the values of Complex Dielectric Constant (CDC) for a given soil type based on various parameters inherent to the soil. The path loss captures the effects of environment parameters such as sand or clay content, horizontal distance between two sensor nodes under consideration, burial depth and Volumetric Water Content (VWC) of the soil sample, including system parameters such as the operating frequency of the transmitted signal. This study allows us to realize the path loss and received power varies with the given set of parameters. The propagation characteristics between the sensor nodes are investigated in MATLAB environment.
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无线地下传感器网络中基于矿物学的光谱介质模型信道建模与分析
利用基于矿物学的光谱介电模型(MBSDM),建立了地下无线传感器网络(WUSN)在UG-UG、UG-AG和AG-UG三种不同通信场景下的信道传播模型。对于基于土壤固有的各种参数计算给定土壤类型的复介电常数(CDC)值,这优于Peplinski土壤介电模型。路径损耗捕获环境参数的影响,如沙子或粘土含量、考虑的两个传感器节点之间的水平距离、土壤样品的埋深和体积含水量(VWC),包括系统参数,如传输信号的工作频率。这一研究使我们能够实现路径损耗和接收功率随给定参数集的变化。在MATLAB环境下研究了传感器节点间的传播特性。
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