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Relative location estimation in wireless sensor networks

IEEE Transactions on Signal Processing · 2003 · Vol. 51(8) · pp. 2137–2148
Neal PatwariAlfred O. HeroMatt PerkinsN.S. CorrealR.J. O'Dea

Abstract

Self-configuration in wireless sensor networks is a general class of estimation problems that we study via the Cramer-Rao bound (CRB). Specifically, we consider sensor location estimation when sensors measure received signal strength (RSS) or time-of-arrival (TOA) between themselves and neighboring sensors. A small fraction of sensors in the network have a known location, whereas the remaining locations must be estimated. We derive CRBs and maximum-likelihood estimators (MLEs) under Gaussian and log-normal models for the TOA and RSS measurements, respectively. An extensive TOA and RSS measurement campaign in an indoor office area illustrates MLE performance. Finally, relative location estimation algorithms are implemented in a wireless sensor network testbed and deployed in indoor and outdoor environments. The measurements and testbed experiments demonstrate 1-m RMS location errors using TOA, and 1- to 2-m RMS location errors using RSS.

Indoor and Outdoor Localization TechnologiesTarget Tracking and Data Fusion in Sensor NetworksEnergy Efficient Wireless Sensor NetworksRSSTestbedWireless sensor networkTime of arrivalEstimatorComputer scienceReal-time computingCramér–Rao boundWireless networkWireless
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References
The indoor radio propagation channel
Proceedings of the IEEE · 1993 · 1,724 citations
A statistical model of urban multipath propagation
IEEE Transactions on Vehicular Technology · 1972 · 720 citations
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