Analysis of space labeling through binary fingerprinting

In the context of fingerprinting applications, this article presents the performance analysis of a type of space labeling based on the binary quantization of the received signal strength indicator. One of the common drawbacks of fingerprinting is the large data size and consequently the large search...

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Published in:International Journal of Distributed Sensor Networks
Main Authors: Marouan Mizmizi, Luca Reggiani
Format: Article
Language:English
Published: Wiley 2019-08-01
Online Access:https://doi.org/10.1177/1550147719862215
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author Marouan Mizmizi
Luca Reggiani
author_facet Marouan Mizmizi
Luca Reggiani
author_sort Marouan Mizmizi
collection DOAJ
container_title International Journal of Distributed Sensor Networks
description In the context of fingerprinting applications, this article presents the performance analysis of a type of space labeling based on the binary quantization of the received signal strength indicator. One of the common drawbacks of fingerprinting is the large data size and consequently the large search space and computational load as a result of either vastness of the positioning area or the finer resolution in the fingerprinting grid map. Our approach can be considered, for example, when we use very small, inexpensive beacons, like those based on bluetooth low energy technology, radio frequency identification, or in the future context of the Internet of Things. One of the interesting properties of this deployment is that it can be interpreted as a form of space labeling or encoding since space is divided into cells, and each cell is associated to a binary codeword with the corresponding scalability of the spatial resolution. Here, it developed the performance estimation, exploiting the association of this deployment to an error correcting code. The analysis and numerical and experimental results allow a deeper understanding of the impact of the proposed solution and show that it is robust and computationally efficient with respect to the traditional fingerprinting technique.
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spelling doaj-art-e977fcfbfc3f4156a67e5eebbfcd1d602025-08-20T02:22:06ZengWileyInternational Journal of Distributed Sensor Networks1550-14772019-08-011510.1177/1550147719862215Analysis of space labeling through binary fingerprintingMarouan MizmiziLuca ReggianiIn the context of fingerprinting applications, this article presents the performance analysis of a type of space labeling based on the binary quantization of the received signal strength indicator. One of the common drawbacks of fingerprinting is the large data size and consequently the large search space and computational load as a result of either vastness of the positioning area or the finer resolution in the fingerprinting grid map. Our approach can be considered, for example, when we use very small, inexpensive beacons, like those based on bluetooth low energy technology, radio frequency identification, or in the future context of the Internet of Things. One of the interesting properties of this deployment is that it can be interpreted as a form of space labeling or encoding since space is divided into cells, and each cell is associated to a binary codeword with the corresponding scalability of the spatial resolution. Here, it developed the performance estimation, exploiting the association of this deployment to an error correcting code. The analysis and numerical and experimental results allow a deeper understanding of the impact of the proposed solution and show that it is robust and computationally efficient with respect to the traditional fingerprinting technique.https://doi.org/10.1177/1550147719862215
spellingShingle Marouan Mizmizi
Luca Reggiani
Analysis of space labeling through binary fingerprinting
title Analysis of space labeling through binary fingerprinting
title_full Analysis of space labeling through binary fingerprinting
title_fullStr Analysis of space labeling through binary fingerprinting
title_full_unstemmed Analysis of space labeling through binary fingerprinting
title_short Analysis of space labeling through binary fingerprinting
title_sort analysis of space labeling through binary fingerprinting
url https://doi.org/10.1177/1550147719862215
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