Load Balancing Based on Multimedia Task Division for Reactive WSNs: Case Study for Pest Management

Weslen Souza, L. Brisolara, P. Ferreira
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Abstract

Wireless Sensor Networks have been widely used for monitoring and data collection. Technological advances allowed the integration of multimedia devices into these networks, giving rise to new possible applications. The nodes that make up these networks are commonly located in external environments where they are exclusively powered by batteries, thus the network lifetime depends on the charge of these batteries. To maximize the useful life of the network as a whole, load balancing techniques are proposed with the aim of promoting a more homogeneous energy consumption by all the nodes, preventing only a few nodes from working in excess and dying prematurely. Most of the studies identified in the literature for reactive WSN only address networks with overlapping sensing, making the decision of which of the nodes that detected this same event should process it. In this work, networks without sensing overlap are addressed, where a load balancing strategy based on task division is proposed. An event is split into several smaller multimedia processing subtasks, which are distributed to neighboring nodes that are able to perform the processing. Through experiments, we show the improvements of around 29% achieved by the proposed approach, when compared to a WSN that does not use any load balancing technique.
基于多媒体任务划分的响应式wsn负载均衡:害虫管理案例研究
无线传感器网络已广泛应用于监测和数据采集。技术的进步使多媒体设备能够集成到这些网络中,从而产生了新的可能的应用。组成这些网络的节点通常位于外部环境中,它们完全由电池供电,因此网络寿命取决于这些电池的电量。为了使整个网络的使用寿命最大化,提出了负载均衡技术,目的是促进所有节点的更均匀的能量消耗,防止只有少数节点过度工作和过早死亡。文献中发现的大多数针对响应式WSN的研究只针对具有重叠感知的网络,并决定检测到同一事件的哪个节点应该处理它。针对无感知重叠的网络,提出了一种基于任务划分的负载均衡策略。事件被分成几个较小的多媒体处理子任务,这些子任务被分发到能够执行处理的相邻节点。通过实验,我们表明,与不使用任何负载平衡技术的WSN相比,所提出的方法实现了约29%的改进。
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