A Robust Localization Framework To Handle Noisy Measurements in Wireless Sensor Networks

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Date

2009

Authors

Erten, Cesim
Karataş, Ömer

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Publisher

IEEE

Open Access Color

Green Open Access

Yes

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No
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Abstract

We construct a robust localization framework to handle noisy measurements in wireless sensor networks. Traditionally many approaches employ the distance information gathered from ranging devices of the sensor nodes to achieve localization. However the measurements of these devices may contain noise both as hardware noise and as environmental noise due to the employment conditions of the network. It Is necessary to provide a general framework that handles such a noise in data and yet still be applicable within several localization algorithms. In order to handle noise in distance measurements our framework utilizes convex constraints and confidence intervals of a random variable. At the end of the localization process nodes are assigned to a set of feasible regions with corresponding probabilities. The accuracy of the localization can be adjusted and the framework can easily be embedded to work within previously suggested localization algorithms.

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Keywords

Sensor networks, Optical noise, Noisy measurements, Information science, Sensor nodes, Weather forecasting, Hardware, Localization algorithm, Wireless telecommunication systems, Working environment noise, Convex constraints, Random variables, Telecommunication equipment, Distance measurement, Distance information, Robust localization framework, Confidence interval, Environmental noise, Random processes, Employment conditions, Wireless sensor networks, Algorithm, N/A, Process nodes, Global positioning system, Noise robustness, Feasible regions, Acoustic noise

Fields of Science

0209 industrial biotechnology, 02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

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Source

2009 24th International Symposium on Computer and Information Sciences

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Start Page

707

End Page

714
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