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A novel routing metric for environmentally-powered sensors with Hybrid Energy Storage Systems

机译:具有混合能源存储系统的环境传感器的新型路由度量

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摘要

Sustainable wireless sensor networks (WSNs) are potential candidates for remote patient monitoring, monitoring the health of civil structures (e.g. bridges, office buildings, pipelines), environmental monitoring, industrial monitoring and surveillance. However, limited battery life has been a barrier for widespread deployment of such networks. This paper proposes the novel communication using hybrid energy storage system (CHESS) routing metric for networks such that each node has an hybrid energy storage system (HESS). An HESS is composed of a supercapacitor (SC) and a rechargeable battery (RB). SCs and RBs have quite different characteristics, the most important for WSNs being that RBs can be recharged 100 s of times, while SCs can be recharged on the order of a million times before failing. While HESS architectures have been used for wireless devices, no routing algorithm has considered how to exploit these two storage mechanisms to maximize network life. CHESS also allows control of the depth of discharge of the RB.
机译:可持续的无线传感器网络(WSN)是远程患者监测,监测民用建筑(例如桥梁,办公楼,管道)的健康,环境监测,工业监测和监视的潜在候选者。但是,有限的电池寿命一直是此类网络广泛部署的障碍。本文针对网络提出了一种使用混合储能系统(CHESS)路由度量的新型通信,使得每个节点都具有一个混合储能系统(HESS)。 HESS由超级电容器(SC)和可充电电池(RB)组成。 SC和RB具有完全不同的特性,对于WSN而言,最重要的是RB可以充电100 s次,而SC可以在失败前充电一百万次。尽管HESS体系结构已用于无线设备,但没有路由算法考虑过如何利用这两种存储机制来最大化网络寿命。 CHESS还可以控制RB的放电深度。

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