高空平台无线传感器网络低能量自适应聚类分层路由协议评价

Veronica Windha Mahyastuty, Iskandar, Hendrawan
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摘要

目前,无线传感器网络(WSN)被应用于工业厂房、安防、医疗以及天气和环境监测等诸多领域。无线传感器网络使用的约束是每个传感器节点的功率有限,这意味着能耗效率是无线传感器网络的一个重要问题。路由是无线传感器网络中消耗大量能量的功能。低能量自适应聚类层次(LEACH)是提高无线传感器网络能量效率的路由协议之一。本研究利用MATLAB仿真对LEACH的能耗和死节点数进行了评估。结果表明,仰角和簇数对能量消耗和死节点数有影响。采用聚类拓扑的HAP-WSN系统可以降低能耗,减少死节点数量。从一组仿真可以看出,0°时的能耗大于10°时的能耗。还可以看出,在两个仰角下,最优簇的个数都是4。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of low energy adaptive clustering hierarchy routing protocol for wireless sensor network over high altitude plaftform
Curently, Wireless Sensor Network (WSN) is applied in many fields such as industrial plants, security, medical, as well as weather and environmental monitoring. The constraint of the use of WSN is the limited power of each sensor node, which means energy consumption efficiency is an important issue in WSN. Routing is a function in WSN which consumes a considerable amount of energy. One of the routing protocol that can increase the energy efficiency of WSN is Low Energy Adaptive Clustering Hierarchy (LEACH). In this research, energy consumption and the number of dead nodes of LEACH are evaluated using MATLAB simulation. The results show that elevation angle and number of clusters affect the energy consumption and number of dead nodes. HAP-WSN system with clustering topology will reduce energy consumption and minimize the number of dead nodes. From a set of simulations, it can be seen that energy consumption for 0° is greater than energy consumption for 10°. It can be also seen that the number of optimum cluster is 4 for both elevation angels.
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