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Delay-Constrained Optimal Data Aggregation in Hierarchical Wireless Sensor Networks

机译:分层无线传感器网络中的时延约束最优数据聚合

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摘要

A lot of realistic applications with wireless sensor networks adopt hierarchical architecture in which sensor nodes are grouped into clusters, with each cluster relying on a gateway node for local data aggregation and long-distance radio transmission. Compared to normal sensor nodes, the gateway nodes, also called application nodes (ANs), are equipped with relatively powerful transceivers and have more energy. Nevertheless, since an AN is the main gateway for sensor nodes within its clusters, its energy may be depleted more quickly than normal sensor nodes. As such, it is important to find methods to save energy for ANs. This paperrnpresents a Delay-Constrained Optimal Data Aggregation (DeCODA) framework that considers the unique feature of traffic patterns and information processing at ANs for energy saving. Mathematical models and analytical results are provided, and simulation studies are performed to verify the effectiveness of the DeCODA framework.
机译:无线传感器网络的许多实际应用都采用分层体系结构,其中将传感器节点分组为群集,每个群集都依赖网关节点进行本地数据聚合和长距离无线电传输。与普通传感器节点相比,网关节点(也称为应用程序节点(AN))配备了功能相对强大的收发器,并且具有更多的能量。但是,由于AN是其群集内传感器节点的主要网关,因此其能量消耗可能比普通传感器节点更快。因此,找到为AN节省能源的方法很重要。本文提出了一种延迟约束的最佳数据聚合(DeCODA)框架,该框架考虑了AN处交通模式和信息处理的独特功能,以实现节能。提供了数学模型和分析结果,并进行了仿真研究以验证DeCODA框架的有效性。

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