Comparative Study of Various Wireless Sensor Network (WSN) Topology Construction Protocols

L. McLauchlan, Soumya Saha, C. Montiel, R. Challoo
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引用次数: 2

Abstract

As the cost for wireless sensors and wireless sensor networks (WSNs) have decreased, they have become more ubiquitous; they are increasingly being used in many applications such as security, structural monitoring and environmental monitoring. Many WSN applications employ a random sensor deployment to provide sensor coverage. The choice of the Topology Construction (TC) and Topology Maintenance (TM) protocols will affect WSN lifetime. In this paper, two new load balancing TC protocols, SWST (Simple Weighted Spanning Tree), EAST (Energy Aware Spanning Tree) as well as three well known TC protocols, Simple Tree, Random Nearest Neighbor Tree (Random NNT) and Euclidean Minimum Spanning Tree (Euclidian MST), are studied using MATLAB and TC protocols such as A3 (A tree), A3 Coverage, Connected Dominating Set under Rule K (CDS Rule K), Energy Efficient Connected Dominating Set (EECDS), Simple Tree and K Neighbor (KNeigh) Tree, are simulated using Atarraya. Comparisons are performed between many of the TC protocols.
各种无线传感器网络(WSN)拓扑构建协议的比较研究
随着无线传感器和无线传感器网络(WSNs)成本的降低,它们变得越来越普遍;它们越来越多地用于安全、结构监测和环境监测等许多应用中。许多WSN应用采用随机传感器部署来提供传感器覆盖。拓扑构建(TC)协议和拓扑维护(TM)协议的选择将影响WSN的生命周期。本文利用MATLAB对两种新的负载均衡TC协议——简单加权生成树(SWST)、能量感知生成树(EAST)以及简单树、随机近邻树(Random NNT)和欧氏最小生成树(Euclidian MST)三种常见的负载均衡TC协议以及A3 (A树)、A3覆盖、规则K下的连通支配集(CDS规则K)、节能连通支配集(EECDS)、简单树和K邻居(KNeigh)树、使用Atarraya进行模拟。在许多TC协议之间进行了比较。
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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