<i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model

In underwater wireless sensor networks (UWSNs), localization and time synchronization are vital services that have been tackled independently. By combining localization and time synchronization, could save nodes energy and improve accuracy jointly. Therefore, it is of great significance to study joi...

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Main Authors: Rehan Shams, Pablo Otero, Muhammad Aamir, Fozia Hanif
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/24/7222
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spelling doaj-43a973aedbc04354bab6f1e5c54d41fb2020-12-18T00:00:37ZengMDPI AGSensors1424-82202020-12-01207222722210.3390/s20247222<i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing ModelRehan Shams0Pablo Otero1Muhammad Aamir2Fozia Hanif3Department of Telecommunication, Sir Syed University of Engineering and Technology, Karachi 75300, PakistanDepartment of Telecommunication, Universidad De Malaga, E-29071 Málaga, SpainDepartment of Telecommunication, Sir Syed University of Engineering and Technology, Karachi 75300, PakistanDepartment of Mathematics, University of Karachi, Karachi 75300, PakistanIn underwater wireless sensor networks (UWSNs), localization and time synchronization are vital services that have been tackled independently. By combining localization and time synchronization, could save nodes energy and improve accuracy jointly. Therefore, it is of great significance to study joint synchronization and localization of underwater sensors with low energy consumption. In this paper, we propose the energy-efficient joint framework of localization and time synchronization, in which the stratification effect is considered by using a ray-tracing approach. Based on Snell’s law, ray tracing is applied to compensate for the variation of sound speed, this is one of the contributions of this article. Another contribution of this article is the iteration process which is used to improve the accuracy of localization and time synchronization. Simulation results show that the proposed joint approach outperforms the existing approaches in both energy efficiency and accuracy. This study also calculates Cramer-Rao lower bound to prove the convergence of the proposed technique along with the calculation of complexity of the proposed algorithm to show that the provided study takes less running time compared to the existing techniques.https://www.mdpi.com/1424-8220/20/24/7222localizationtime synchronizationenergy efficiencyray tracingstratification effect
collection DOAJ
language English
format Article
sources DOAJ
author Rehan Shams
Pablo Otero
Muhammad Aamir
Fozia Hanif
spellingShingle Rehan Shams
Pablo Otero
Muhammad Aamir
Fozia Hanif
<i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
Sensors
localization
time synchronization
energy efficiency
ray tracing
stratification effect
author_facet Rehan Shams
Pablo Otero
Muhammad Aamir
Fozia Hanif
author_sort Rehan Shams
title <i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
title_short <i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
title_full <i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
title_fullStr <i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
title_full_unstemmed <i>E</i><sup>2</sup><i>JSL</i>: Energy Efficient Joint Time Synchronization and Localization Algorithm Using Ray Tracing Model
title_sort <i>e</i><sup>2</sup><i>jsl</i>: energy efficient joint time synchronization and localization algorithm using ray tracing model
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-12-01
description In underwater wireless sensor networks (UWSNs), localization and time synchronization are vital services that have been tackled independently. By combining localization and time synchronization, could save nodes energy and improve accuracy jointly. Therefore, it is of great significance to study joint synchronization and localization of underwater sensors with low energy consumption. In this paper, we propose the energy-efficient joint framework of localization and time synchronization, in which the stratification effect is considered by using a ray-tracing approach. Based on Snell’s law, ray tracing is applied to compensate for the variation of sound speed, this is one of the contributions of this article. Another contribution of this article is the iteration process which is used to improve the accuracy of localization and time synchronization. Simulation results show that the proposed joint approach outperforms the existing approaches in both energy efficiency and accuracy. This study also calculates Cramer-Rao lower bound to prove the convergence of the proposed technique along with the calculation of complexity of the proposed algorithm to show that the provided study takes less running time compared to the existing techniques.
topic localization
time synchronization
energy efficiency
ray tracing
stratification effect
url https://www.mdpi.com/1424-8220/20/24/7222
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