Autonomous Localization in 3D Surface Wireless Sensor Networks

<p> Location awareness is imperative for a variety of sensing applications and network operations. Although a diversity of GPS-less and GPS-free solutions have been developed recently for autonomous localization in wireless sensor networks, they primarily target at 2D planar or 3D volumetric s...

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Main Author: Zhao, Yao
Language:EN
Published: University of Louisiana at Lafayette 2014
Subjects:
Online Access:http://pqdtopen.proquest.com/#viewpdf?dispub=3622968
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spelling ndltd-PROQUEST-oai-pqdtoai.proquest.com-36229682014-08-14T04:13:05Z Autonomous Localization in 3D Surface Wireless Sensor Networks Zhao, Yao Computer Science <p> Location awareness is imperative for a variety of sensing applications and network operations. Although a diversity of GPS-less and GPS-free solutions have been developed recently for autonomous localization in wireless sensor networks, they primarily target at 2D planar or 3D volumetric settings. There exists unique and fundamental hardness to extend them to 3D surfaces.</p><p> The contributions of this work are twofold. First, it proposes a theoretically-proven algorithm for the 3D surface localization problem. Seeing the challenges to localize general 3D surface networks and the solvability of the localization problem on single-value (SV) surface, this work proposes the cut-and-sew algorithm that takes a divide-and-conquer approach by partitioning a general 3D surface network into SV patches, which are localized individually and then merged into a unified coordinates system. The algorithm is optimized by discovering the minimum SV partition, an optimal partition that creates a minimum set of SV patches.</p><p> Second, it develops practically-viable solutions for real-world sensor network settings where the inputs are often noisy. The proposed algorithm is implemented and evaluated via simulations and experiments in an indoor testbed. The results demonstrate that the proposed cut-and-sew algorithm achieves perfect 100% localization rate and the desired robustness against measurement errors.</p> University of Louisiana at Lafayette 2014-08-08 00:00:00.0 thesis http://pqdtopen.proquest.com/#viewpdf?dispub=3622968 EN
collection NDLTD
language EN
sources NDLTD
topic Computer Science
spellingShingle Computer Science
Zhao, Yao
Autonomous Localization in 3D Surface Wireless Sensor Networks
description <p> Location awareness is imperative for a variety of sensing applications and network operations. Although a diversity of GPS-less and GPS-free solutions have been developed recently for autonomous localization in wireless sensor networks, they primarily target at 2D planar or 3D volumetric settings. There exists unique and fundamental hardness to extend them to 3D surfaces.</p><p> The contributions of this work are twofold. First, it proposes a theoretically-proven algorithm for the 3D surface localization problem. Seeing the challenges to localize general 3D surface networks and the solvability of the localization problem on single-value (SV) surface, this work proposes the cut-and-sew algorithm that takes a divide-and-conquer approach by partitioning a general 3D surface network into SV patches, which are localized individually and then merged into a unified coordinates system. The algorithm is optimized by discovering the minimum SV partition, an optimal partition that creates a minimum set of SV patches.</p><p> Second, it develops practically-viable solutions for real-world sensor network settings where the inputs are often noisy. The proposed algorithm is implemented and evaluated via simulations and experiments in an indoor testbed. The results demonstrate that the proposed cut-and-sew algorithm achieves perfect 100% localization rate and the desired robustness against measurement errors.</p>
author Zhao, Yao
author_facet Zhao, Yao
author_sort Zhao, Yao
title Autonomous Localization in 3D Surface Wireless Sensor Networks
title_short Autonomous Localization in 3D Surface Wireless Sensor Networks
title_full Autonomous Localization in 3D Surface Wireless Sensor Networks
title_fullStr Autonomous Localization in 3D Surface Wireless Sensor Networks
title_full_unstemmed Autonomous Localization in 3D Surface Wireless Sensor Networks
title_sort autonomous localization in 3d surface wireless sensor networks
publisher University of Louisiana at Lafayette
publishDate 2014
url http://pqdtopen.proquest.com/#viewpdf?dispub=3622968
work_keys_str_mv AT zhaoyao autonomouslocalizationin3dsurfacewirelesssensornetworks
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