ALWadHA Localization Algorithm: Yet More Energy Efficient

Many wireless sensor networks (WSNs) applications, techniques, and algorithms require the position of the sensor nodes. Sensor nodes mainly rely on localization algorithms to determine their own physical location. Usually, these sensor nodes are equipped with a limited power source. Therefore, a loc...

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Main Authors: Adnan M. Abu-Mahfouz, Gerhard P. Hancke
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
WSN
Online Access:https://ieeexplore.ieee.org/document/7886306/
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spelling doaj-9c8f75e1c6254f1b891dc97bcfc7b7e92021-03-29T20:09:49ZengIEEEIEEE Access2169-35362017-01-0156661666710.1109/ACCESS.2017.26876197886306ALWadHA Localization Algorithm: Yet More Energy EfficientAdnan M. Abu-Mahfouz0https://orcid.org/0000-0002-6413-3924Gerhard P. Hancke1Meraka Institute, Council for Scientific and Industrial Research, Pretoria, South AfricaDepartment of Computer Science, City University of Hong Kong, Hong KongMany wireless sensor networks (WSNs) applications, techniques, and algorithms require the position of the sensor nodes. Sensor nodes mainly rely on localization algorithms to determine their own physical location. Usually, these sensor nodes are equipped with a limited power source. Therefore, a localization algorithm used by a WSN should be an energy-aware algorithm. One of the energy efficient localization algorithms that has been proposed recently is an efficient localization algorithm for wireless ad hoc sensor networks with high accuracy (ALWadHA). In this paper, we investigate the impact of using three techniques by ALWadHA in improving the energy efficiency of ALWadHA: first, a single-estimation approach whereby a node estimates its position only once; second, dynamic power control whereby reference nodes reduce their transmission power based on their distance to the node that broadcasts the location request; and third an incremental and exponential requesting rate approach, which controls the frequency rate of sending the location request. Simulation results show that the final approach reduces the energy consumption of ALWadHA by 51.5%, without compromising the accuracy of the position estimation.https://ieeexplore.ieee.org/document/7886306/Localization algorithmenergy efficiencyWSNALWadHAposition estimationdynamic power control
collection DOAJ
language English
format Article
sources DOAJ
author Adnan M. Abu-Mahfouz
Gerhard P. Hancke
spellingShingle Adnan M. Abu-Mahfouz
Gerhard P. Hancke
ALWadHA Localization Algorithm: Yet More Energy Efficient
IEEE Access
Localization algorithm
energy efficiency
WSN
ALWadHA
position estimation
dynamic power control
author_facet Adnan M. Abu-Mahfouz
Gerhard P. Hancke
author_sort Adnan M. Abu-Mahfouz
title ALWadHA Localization Algorithm: Yet More Energy Efficient
title_short ALWadHA Localization Algorithm: Yet More Energy Efficient
title_full ALWadHA Localization Algorithm: Yet More Energy Efficient
title_fullStr ALWadHA Localization Algorithm: Yet More Energy Efficient
title_full_unstemmed ALWadHA Localization Algorithm: Yet More Energy Efficient
title_sort alwadha localization algorithm: yet more energy efficient
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description Many wireless sensor networks (WSNs) applications, techniques, and algorithms require the position of the sensor nodes. Sensor nodes mainly rely on localization algorithms to determine their own physical location. Usually, these sensor nodes are equipped with a limited power source. Therefore, a localization algorithm used by a WSN should be an energy-aware algorithm. One of the energy efficient localization algorithms that has been proposed recently is an efficient localization algorithm for wireless ad hoc sensor networks with high accuracy (ALWadHA). In this paper, we investigate the impact of using three techniques by ALWadHA in improving the energy efficiency of ALWadHA: first, a single-estimation approach whereby a node estimates its position only once; second, dynamic power control whereby reference nodes reduce their transmission power based on their distance to the node that broadcasts the location request; and third an incremental and exponential requesting rate approach, which controls the frequency rate of sending the location request. Simulation results show that the final approach reduces the energy consumption of ALWadHA by 51.5%, without compromising the accuracy of the position estimation.
topic Localization algorithm
energy efficiency
WSN
ALWadHA
position estimation
dynamic power control
url https://ieeexplore.ieee.org/document/7886306/
work_keys_str_mv AT adnanmabumahfouz alwadhalocalizationalgorithmyetmoreenergyefficient
AT gerhardphancke alwadhalocalizationalgorithmyetmoreenergyefficient
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