Energy-efficient analog sensing for large-scale, high-density persistent wireless monitoring

Vidyasagar Sadhu, Xueyuan Zhao, D. Pompili
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引用次数: 13

Abstract

The research challenge of current Wireless Sensor Networks (WSNs) is to design energy-efficient, low-cost, high-accuracy, self-healing, and scalable systems for applications such as environmental monitoring. Traditional WSNs consist of low density, power-hungry digital motes that are expensive and cannot remain functional for long periods on a single charge. In order to address these challenges, a dumb-sensing and smart-processing architecture that splits sensing and computation capabilities among tiers is proposed. Tier-1 consists of dumb sensors that only sense and transmit, while the nodes in Tier-2 do all the smart processing on Tier-1 sensor data. A low-power and low-cost solution for Tier-1 sensors has been proposed using Analog Joint Source Channel Coding (AJSCC). An analog circuit that realizes the rectangular type of AJSCC has been proposed and realized on a Printed Circuit Board for feasibility analysis. A prototype consisting of three Tier-1 sensors (sensing temperature and humidity) communicating to a Tier-2 Cluster Head has been demonstrated to verify the proposed approach. Results show that our framework is indeed feasible to support large scale high density and persistent WSN deployment.
节能模拟传感大规模,高密度的持久无线监测
当前无线传感器网络(WSNs)的研究挑战是为环境监测等应用设计节能、低成本、高精度、自修复和可扩展的系统。传统的无线传感器网络由低密度、耗电的数字微球组成,这些微球价格昂贵,而且一次充电不能长时间保持功能。为了解决这些问题,提出了一种将感知和计算能力分层的哑感知和智能处理体系结构。Tier-1由仅感知和传输的哑传感器组成,而Tier-2中的节点对Tier-1传感器数据进行所有智能处理。提出了一种基于模拟联合源信道编码(AJSCC)的低功耗低成本Tier-1传感器解决方案。提出了一种实现矩形型AJSCC的模拟电路,并在印刷电路板上实现,进行了可行性分析。一个由三个一级传感器(传感温度和湿度)组成的原型与一个二级簇头通信,以验证所提出的方法。结果表明,该框架能够支持大规模、高密度、持久的WSN部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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