战术多网关无线传感器网络的高能效跨层负载均衡

Kevin A. White, P. Thulasiraman
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引用次数: 13

摘要

战术无线传感器网络(WSN)是一种分布式网络,便于在感兴趣的区域内进行无线信息收集。无线传感器网络部署的一个挑战是每个传感器节点的电池电量有限。这对网络的使用寿命有很大的影响。为了提高网络的寿命,必须采用使用有效路由机制的负载平衡技术,以便在传感器节点和网关之间分配流量。在本文中,我们从跨层的角度研究负载均衡,特别是考虑到能源效率。我们研究了部署单个和多个网关对以下已建立的能量感知负载均衡路由技术的影响:直接路由、最小传输能量、低能量自适应簇头路由和区域集群。基于这些算法观察到的节点死亡统计,我们开发了一种新的,节能的区域聚类算法,称为EZone。通过使用MATLAB进行大量仿真,我们分析了这些算法在单网关和多网关场景下对网络性能的有效性,并表明EZone算法最大化了网络寿命和服务区域覆盖。
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Energy efficient cross layer load balancing in tactical multigateway wireless sensor networks
A tactical wireless sensor network (WSN) is a distributed network that facilitates wireless information gathering within a region of interest. A challenge in the deployment of WSNs is the limited battery power of each sensor node. This has a significant impact on the service life of the network. In order to improve the lifespan of the network, load balancing techniques using efficient routing mechanisms must be employed such that traffic is distributed between sensor nodes and gateway(s). In this paper, we study load balancing from a cross-layer point of view, specifically considering energy efficiency. We investigate the impact of deploying single and multiple gateways on the following established energy aware load balancing routing techniques: direct routing, minimum transmission energy, low energy adaptive cluster head routing, and zone clustering. Based on the node die out statistics observed with these algorithms, we develop a novel, energy efficient zone clustering algorithm called EZone. Via extensive simulations using MATLAB, we analyze the effectiveness of these algorithms on network performance for single and multiple gateway scenarios and show that the EZone algorithm maximizes network lifetime and service area coverage.
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