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Fiber optic vs. wireless sensors in energy-efficient integrated FiWi smart grid networks: An energy-delay and TCO comparison

机译:高效节能的FiWi智能电网中的光纤传感器与无线传感器:能耗和总拥有成本的比较

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This paper aims at designing an ecoconscious future-proof sensor enhanced fiber-wireless (SFiWi) network based on EPON, WLAN, wireless sensor (WS), and fiber optic sensor (FOS) technologies as a shared communications infrastructure for broadband access and smart grids. A total cost of ownership (TCO) model is developed to help utilities decide whether to deploy WSs or FOSs in different scenarios and estimate sensor-related costs. To prolong battery life of wireless devices and maximize the overall energy efficiency, a novel energy conservation scheme for SFiWi networks (ECO-SFiWi) is proposed. ECO-SFiWi designs the whole network in three TDMA layers to enhance network performance, while scheduling network components to sleep outside their transmission slots. A comprehensive energy saving model accounting for both optical backhaul and wireless front-end components and a delay analysis based on M/G/1 queuing are presented. Results reveal that with their extremely long lifetime and ability to sustain in harsh environments, FOSs are superior to WSs when advanced interrogation techniques are deployed to reduce their total cost. ECO-SFiWi achieves more than 89% of energy savings, while maintaining low delay for both broadband and smart grid traffic in typical scenarios. FPGA hardware emulation and analytical results match well verifying the effectiveness of ECO-SFiWi.
机译:本文旨在基于EPON,WLAN,无线传感器(WS)和光纤传感器(FOS)技术设计一种环保型,面向未来的传感器增强型光纤无线(SFiWi)网络,作为宽带接入和智能电网的共享通信基础架构。开发了总拥有成本(TCO)模型,以帮助公用事业部门决定在不同情况下部署WS还是FOS并估算与传感器相关的成本。为了延长无线设备的电池寿命并最大化整体能效,提出了一种用于SFiWi网络的新型节能方案(ECO-SFiWi)。 ECO-SFiWi在三个TDMA层中设计整个网络,以增强网络性能,同时安排网络组件在其传输时隙之外休眠。提出了同时考虑光回程和无线前端组件的综合节能模型以及基于M / G / 1排队的延迟分析。结果表明,由于FOS具有极长的使用寿命以及在恶劣环境下的承受能力,因此在部署先进的询问技术以降低总成本时,它们比WS更好。 ECO-SFiWi可以节省89%以上的能源,同时在典型情况下,宽带和智能电网流量的延迟保持较低。 FPGA硬件仿真和分析结果很好地证明了ECO-SFiWi的有效性。

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