Process estimation through a self-organizing collaborative wireless sensor network

R. Verdone, A. Conti, D. Sangiorgi, D. Dardari
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引用次数: 14

Abstract

An analytical framework for the performance evaluation of a dense energy-efficient wireless sensor network (WSN), enabling distributed collaborative environment monitoring, is developed. We address the estimation of a target multidimensional process by means of samples captured by nodes randomly and uniformly distributed and transmitted to a collector through a self-organizing clustered network. The estimation in the presence and in the absence of collaborative signal processing with different types of data interpolators are compared in terms of both process estimation error and network life-time. Our analytical model, aimed at providing useful information for WSN design, takes many aspects into account, such as distance-dependent path loss and shadowing, energy consumption, information routing, process estimation quality, node density, transmission protocol and system parameters. As an example result, fixing requirements on estimation errors and network life-time, the node density is found as a function of the system/protocol parameters.
基于自组织协同无线传感器网络的过程估计
提出了一种基于分布式协同环境监测的密集节能无线传感器网络(WSN)性能评估分析框架。我们通过随机均匀分布的节点捕获样本,并通过自组织聚类网络传输到收集器,解决了目标多维过程的估计问题。从过程估计误差和网络寿命两方面比较了不同类型的数据插值器在存在和不存在协同信号处理时的估计。我们的分析模型考虑了距离相关的路径损失和阴影、能量消耗、信息路由、过程估计质量、节点密度、传输协议和系统参数等多个方面,旨在为WSN设计提供有用的信息。作为一个示例结果,确定了对估计误差和网络生命周期的要求,发现节点密度是系统/协议参数的函数。
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