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一种用于设计可靠低功耗无线传感器网络的系统级方法。

A System-Level Methodology for the Design of Reliable Low-Power Wireless Sensor Networks.

作者信息

Brini Oussama, Deslandes Dominic, Nabki Frederic

机构信息

Department of Electrical Engineering, École de Technologie Supérieure, 1100 rue Notre-Dame Ouest, Montréal, QC H3C 1K3, Canada.

出版信息

Sensors (Basel). 2019 Apr 15;19(8):1800. doi: 10.3390/s19081800.

Abstract

Innovative Internet of Things (IoT) applications with strict performance and energy consumption requirements and where the agile collection of data is paramount are arising. Wireless sensor networks (WSNs) represent a promising solution as they can be easily deployed to sense, process, and forward data. The large number of Sensor Nodes (SNs) composing a WSN are expected to be autonomous, with a node's lifetime dictated by the battery's size. As the form factor of the SN is critical in various use cases, minimizing energy consumption while ensuring availability becomes a priority. Moreover, energy harvesting techniques are increasingly considered as a viable solution for building an entirely green SN and prolonging its lifetime. In the process of building a SN and in the absence of a clear and well-rounded methodology, the designer can easily make unfounded and suboptimal decisions about the right hardware components, their configuration, and reliable data communication techniques, such as automatic repeat request (ARQ) and forward error correction (FEC). In this paper, a methodology to design, configure, and deploy a reliable ultra-low power WSNs is proposed. A comprehensive energy model and a realistic path-loss (PL) model of the sensor node are also established. Through estimations and field measurements it is proven that, following the proposed methodology, the designer can thoroughly explore the design space and the make most favorable decisions when choosing commercial off-the-shelf (COTS) components, configuring the node, and deploying a reliable and energy-efficient WSN.

摘要

具有严格性能和能耗要求且数据的敏捷收集至关重要的创新性物联网(IoT)应用正在兴起。无线传感器网络(WSN)是一种很有前景的解决方案,因为它们可以轻松部署以感知、处理和转发数据。构成WSN的大量传感器节点(SN)预计将是自主的,节点的寿命由电池大小决定。由于SN的外形因素在各种用例中都很关键,在确保可用性的同时最小化能耗成为首要任务。此外,能量收集技术越来越被视为构建完全绿色SN并延长其寿命的可行解决方案。在构建SN的过程中,如果没有清晰全面的方法,设计人员很容易在正确的硬件组件、其配置以及可靠的数据通信技术(如自动重传请求(ARQ)和前向纠错(FEC))方面做出毫无根据的次优决策。本文提出了一种设计、配置和部署可靠的超低功耗WSN的方法。还建立了传感器节点的综合能量模型和实际路径损耗(PL)模型。通过估计和现场测量证明,遵循所提出的方法,设计人员在选择商用现货(COTS)组件、配置节点以及部署可靠且节能的WSN时,可以全面探索设计空间并做出最有利的决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cb4/6514601/3d291942264b/sensors-19-01800-g001.jpg

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