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Modeling and simulation of near-earth wireless sensor networks for agriculture based application using OMNeT++

机译:基于OMNeT ++的农业应用近地无线传感器网络建模与仿真

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摘要

In recent years, there have been a number of reported studies on the design of communication protocols using simulation platform. However, most of the reported works were evaluated using simple or idealistic wireless communication channel modeling. Experimental results have shown that the characterization and modeling of wireless communication channel is important to achieve a successful implementation of wireless sensor network (WSN) systems in agricultural based application. This paper investigates the impact of propagation model towards WSNs system under OMNeT++ simulation environment. Several realistic propagation models for WSNs are also reviewed. Several well known empirical vegetation models, namely MED Weissberger Model and ITU-Recommendation model are implemented in OMNeT++ simulation platform. It is observed that propagation model used gives significant impact towards the network performances. The results show that a combination of plain earth (PE) and vegetation model give more realistic result and can best describe the behavior of actual WSN systems when deployed in a real environment. Antenna heights and vegetation density are important parameters that affect communication network coverage and connectivity.
机译:近年来,已经有许多关于使用仿真平台设计通信协议的报道研究。但是,大多数报告的工作都是使用简单或理想的无线通信信道建模进行评估的。实验结果表明,无线通信信道的表征和建模对于在基于农业的应用中成功实现无线传感器网络(WSN)系统非常重要。本文研究了在OMNeT ++仿真环境下,传播模型对WSNs系统的影响。还回顾了WSN的几种现实传播模型。在OMNeT ++仿真平台中实现了几种著名的经验植被模型,即MED Weissberger模型和ITU-Recommendation模型。可以看出,所使用的传播模型对网络性能产生了重大影响。结果表明,平原(PE)和植被模型的组合给出了更真实的结果,并且可以最好地描述实际WSN系统在实际环境中部署时的行为。天线高度和植被密度是影响通信网络覆盖范围和连通性的重要参数。

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