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IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications

IEEE 802.11 is one of the most commonly used radio access technologies, being present in almost all handheld devices with networking capabilities. However, its energy-hungry communication modes are a challenge for the increased battery lifetime of such devices and are an obstacle for its use in batt...

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Autores principales: Lopez-Aguilera, Elena, Demirkol, Ilker, Garcia-Villegas, Eduard, Paradells, Josep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6983094/
https://www.ncbi.nlm.nih.gov/pubmed/31877691
http://dx.doi.org/10.3390/s20010066
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author Lopez-Aguilera, Elena
Demirkol, Ilker
Garcia-Villegas, Eduard
Paradells, Josep
author_facet Lopez-Aguilera, Elena
Demirkol, Ilker
Garcia-Villegas, Eduard
Paradells, Josep
author_sort Lopez-Aguilera, Elena
collection PubMed
description IEEE 802.11 is one of the most commonly used radio access technologies, being present in almost all handheld devices with networking capabilities. However, its energy-hungry communication modes are a challenge for the increased battery lifetime of such devices and are an obstacle for its use in battery-constrained devices such as the ones defined by many Internet of Things applications. Wake-up Radio (WuR) systems have appeared as a solution for increasing the energy efficiency of communication technologies by employing a secondary low-power radio interface, which is always in the active state and switches the primary transceiver (used for main data communication) from the energy-saving to the active operation mode. The high market penetration of IEEE 802.11 technology, together with the benefits that WuR systems can bring to this widespread technology, motivates this article’s focus on IEEE 802.11-based WuR solutions. More specifically, we elaborate on the feasibility of such IEEE 802.11-based WuR solutions, and introduce the latest standardization efforts in this IEEE 802.11-based WuR domain, IEEE 802.11ba, which is a forthcoming IEEE 802.11 amendment, discussing its main features and potential use cases. As a use case consisting of green Wi-Fi application, we provide a proof-of-concept smart plug system implemented by a WuR that is activated remotely using IEEE 802.11 devices, evaluate its monetary and energy savings, and compare it with commercially available smart plug solutions. Finally, we discuss novel applications beyond the wake-up functionality that IEEE 802.11-enabled WuR devices can offer using a secondary radio, as well as applications that have not yet been considered by IEEE 802.11ba. As a result, we argue that the IEEE 802.11-based WuR solution will support a wide range of devices and deployments, for both low-rate and low-power communications, as well as high-rate transmissions.
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spelling pubmed-69830942020-02-06 IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications Lopez-Aguilera, Elena Demirkol, Ilker Garcia-Villegas, Eduard Paradells, Josep Sensors (Basel) Article IEEE 802.11 is one of the most commonly used radio access technologies, being present in almost all handheld devices with networking capabilities. However, its energy-hungry communication modes are a challenge for the increased battery lifetime of such devices and are an obstacle for its use in battery-constrained devices such as the ones defined by many Internet of Things applications. Wake-up Radio (WuR) systems have appeared as a solution for increasing the energy efficiency of communication technologies by employing a secondary low-power radio interface, which is always in the active state and switches the primary transceiver (used for main data communication) from the energy-saving to the active operation mode. The high market penetration of IEEE 802.11 technology, together with the benefits that WuR systems can bring to this widespread technology, motivates this article’s focus on IEEE 802.11-based WuR solutions. More specifically, we elaborate on the feasibility of such IEEE 802.11-based WuR solutions, and introduce the latest standardization efforts in this IEEE 802.11-based WuR domain, IEEE 802.11ba, which is a forthcoming IEEE 802.11 amendment, discussing its main features and potential use cases. As a use case consisting of green Wi-Fi application, we provide a proof-of-concept smart plug system implemented by a WuR that is activated remotely using IEEE 802.11 devices, evaluate its monetary and energy savings, and compare it with commercially available smart plug solutions. Finally, we discuss novel applications beyond the wake-up functionality that IEEE 802.11-enabled WuR devices can offer using a secondary radio, as well as applications that have not yet been considered by IEEE 802.11ba. As a result, we argue that the IEEE 802.11-based WuR solution will support a wide range of devices and deployments, for both low-rate and low-power communications, as well as high-rate transmissions. MDPI 2019-12-21 /pmc/articles/PMC6983094/ /pubmed/31877691 http://dx.doi.org/10.3390/s20010066 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lopez-Aguilera, Elena
Demirkol, Ilker
Garcia-Villegas, Eduard
Paradells, Josep
IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title_full IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title_fullStr IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title_full_unstemmed IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title_short IEEE 802.11-Enabled Wake-Up Radio: Use Cases and Applications
title_sort ieee 802.11-enabled wake-up radio: use cases and applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6983094/
https://www.ncbi.nlm.nih.gov/pubmed/31877691
http://dx.doi.org/10.3390/s20010066
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