能量分布不均匀的无线传感器网络中能量空穴的避免

A. Demertzis, K. Oikonomou
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引用次数: 19

摘要

本文提出了能量空穴问题的非均匀解。该网络由大量的微型传感器组成,随机分布在一个圆形区域,接收器位于中心。传感器以相同的速率产生数据,数据以多跳方式从节点传输到接收器,使用最短路径路由。为了避免汇周围的能量空洞,其基本思想是为每个网络区域配备尽可能多的能量,作为该区域的流量负载。首先推导了流量负载的纯解析表达式,然后在此表达式的基础上,对一定数量的休眠节点提出了变表面密度的非均匀部署。每当活动节点耗尽电池电量时,一个接近休眠的节点就会活跃起来,并取代它的位置。与没有休眠节点的传统网络相比,所提出的策略将网络寿命提高了50倍,将能源利用率提高了6倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Avoiding energy holes in wireless sensor networks with non-uniform energy distribution
This paper proposes a non-uniform solution to the energy hole problem. The network is formed by a large number of tiny sensors, randomly scattered over a circular area and the sink positioned at the center. The sensors produce data with the same rate and the data travels from the nodes to the sink in a multi-hop fashion, using a shortest path routing. The basic idea, in order to avoid the energy hole around the sink, is to equip each network area with so much energy as the traffic load of that area. Firstly, a pure analytical expression for the traffic load is derived and then, based on this expression, a non-uniform deployment is proposed, with variable surface density, for a certain number of dormant nodes. Each time an active node exhaust its battery, a near dormant node becomes active and takes its place. The proposed strategy improves the network lifetime by a factor of 50 and the energy utilization by a factor of 6, compared to a conventional network without dormant nodes.
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