Wireless Sensor Networks for smart grid applications

M. Erol-Kantarci, H. Mouftah
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引用次数: 46

Abstract

Electrical power grid is among the critical infrastructures of a nation. In the past several years, the power grids have experienced several major failures which have caused large financial losses in various countries around the globe. In a close future, the imbalance between the growing demand and the diminishing fossil fuels, aging equipments, and lack of communications are anticipated to negatively impact the operation of the power grids. For this reason, governments and utilities have recently started working on renovating the power grid to meet the power quality and power availability demands of the 21st century. The opportunities that have become available with the advances in Information and Communications Technology (ICT) have paved the way to this modernization. The new grid empowered by ICT is called as the smart grid. The natural extension of the smart grid applications to the consumer premises can be through Wireless Sensor Networks (WSNs) which are able to provide pervasive communications and control capabilities at low cost. WSNs have broad range of applications in the smart grid. In this paper we discuss the application of the WSNs in the home energy management services. We evaluate the performance of WSNs in terms of delivery ratio, delay and Packet Delay Variance (PDV) for varying interarrival times and varying network sizes. We also provide numerical results on the reduced cost, load and carbon emissions by our home energy management application.
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用于智能电网应用的无线传感器网络
电网是一个国家的关键基础设施之一。在过去的几年里,电网经历了几次重大故障,给全球许多国家造成了巨大的经济损失。在不久的将来,日益增长的需求与日益减少的化石燃料之间的不平衡、设备老化以及通信不足预计将对电网的运行产生负面影响。出于这个原因,政府和公用事业公司最近开始着手改造电网,以满足21世纪的电力质量和电力供应需求。信息和通信技术(ICT)的进步所带来的机会为这种现代化铺平了道路。由信息通信技术支持的新电网被称为智能电网。智能电网应用的自然扩展到消费者场所可以通过无线传感器网络(wsn),它能够以低成本提供无处不在的通信和控制能力。无线传感器网络在智能电网中有着广泛的应用。本文讨论了无线传感器网络在家庭能源管理服务中的应用。在不同的到达间隔时间和不同的网络规模下,我们根据传输比、延迟和分组延迟方差(PDV)来评估WSNs的性能。我们还提供了通过我们的家庭能源管理应用程序降低成本,负荷和碳排放的数值结果。
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