Energy efficient fault tolerant topology scheme for precision agriculture using wireless sensor network

M. Usha Rani, S. Kamalesh
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引用次数: 8

Abstract

This paper describes best fault tolerant topology design to develop the wireless sensor network efficiently. Here deploy the sensors on the agriculture field in the form of mesh topology because is the efficient and best one to form the wireless sensor network, which satisfies all the characteristics that depends to improve the efficiency and the quality of service. Implement a novel algorithm to detect the fault and how to recover the fault to reform the network without any distortion. In real time also we have create wireless sensor network. Here Mote is the combination of Arduino Microcontroller, Zigbee and the grove moisture sensor. They are placed in the agricultural field in the form of mesh topology is responsible to sense the moisture content available in the soil. Here use the Connected Dominating Set (CDS) algorithm to find out the sink node from the set of nodes based on the mesh topology to increase the efficiency. Real time deployment of sensors on the sensor field and make a communication using the zigbee. Based on the novel algorithm to increase the efficiency to recover the network from the faults when the number of nodes increases.
基于无线传感器网络的精准农业节能容错拓扑方案
为了有效地开发无线传感器网络,本文提出了最佳容错拓扑设计。本文将传感器以网状拓扑的形式部署在农业现场,因为网状拓扑是组成无线传感器网络的最有效和最佳的方式,它满足了提高效率和服务质量所依赖的所有特征。实现了一种新的故障检测算法以及如何在不失真的情况下恢复故障来改造网络。我们还创建了实时无线传感器网络。这里Mote是Arduino微控制器,Zigbee和grove湿度传感器的组合。它们以网格拓扑的形式放置在农业领域,负责感知土壤中可用的水分含量。本文采用连接支配集(CDS)算法,根据网格拓扑结构从节点集中找出汇聚节点,以提高效率。实时部署传感器在传感器现场,并使用zigbee进行通信。在此基础上,提高了节点数量增加时网络故障恢复的效率。
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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