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Suresense: sustainable wireless rechargeable sensor networks for the smart grid

机译:Suresense:用于智能电网的可持续无线充电传感器网络

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摘要

The electrical power grid has recently been embracing the advances in Information and Communication Technologies (ICT) for the sake of improving efficiency, safety, reliability and sustainability of electrical services. For a reliable smart grid, accurate, robust monitoring and diagnosis tools are essential. Wireless Sensor Networks (WSNs) are promising candidates for monitoring the smart grid, given their capability to cover large geographic regions at low-cost. On the other hand, limited battery lifetime of the conventional WSNs may create a performance bottleneck for the long-lasting smart grid monitoring tasks, especially considering that the sensor nodes may be deployed in hard to reach, harsh environments. In this context, recent advances in Radio Frequency (RF)-based wireless energy transfer can increase sustainability of WSNs and make them operationally ready for smart grid monitoring missions. RF-based wireless energy transfer uses Electromagnetic (EM) waves and it operates in the same medium as the data communication protocols. In order to achieve timely and efficient charging of the sensor nodes, we propose the Sustainable wireless Rechargeable Sensor network (SuReSense). SuReSense employs mobile chargers that charge multiple sensors from several landmark locations. We propose an optimization model to select the minimum number of landmarks according to the locations and energy replenishment requirements of the sensors.
机译:为了提高电力服务的效率,安全性,可靠性和可持续性,电网最近一直在拥抱信息通信技术(ICT)的进步。对于可靠的智能电网,准确,强大的监视和诊断工具至关重要。无线传感器网络(WSN)具有以低成本覆盖大范围地理区域的能力,因此有望成为监视智能电网的候选者。另一方面,常规WSN的有限电池寿命可能会导致长期智能电网监控任务的性能瓶颈,特别是考虑到传感器节点可能部署在难以到达的恶劣环境中。在这种情况下,基于射频(RF)的无线能量传输的最新进展可以提高WSN的可持续性,并使它们在运营中为智能电网监控任务做好准备。基于RF的无线能量传输使用电磁(EM)波,并且在与数据通信协议相同的介质中运行。为了实现对传感器节点的及时有效充电,我们提出了可持续无线充电传感器网络(SuReSense)。 SuReSense使用移动充电器为来自多个地标位置的多个传感器充电。我们提出了一种优化模型,以根据传感器的位置和能量补充要求选择最少的地标数量。

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