Cargando…

A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring

Wireless sensor nodes (WSNs) are the fundamental part of an Internet of Things (IoT) system for detecting and transmitting data to a master node for processing. Several research studies reveal that one of the disadvantages of conventional, battery-powered WSNs, however, is that they typically requir...

Descripción completa

Detalles Bibliográficos
Autores principales: Panayanthatta, Namanu, Clementi, Giacomo, Ouhabaz, Merieme, Costanza, Mario, Margueron, Samuel, Bartasyte, Ausrine, Basrour, Skandar, Bano, Edwige, Montes, Laurent, Dehollain, Catherine, La Rosa, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618968/
https://www.ncbi.nlm.nih.gov/pubmed/34833578
http://dx.doi.org/10.3390/s21227503
_version_ 1784604876084346880
author Panayanthatta, Namanu
Clementi, Giacomo
Ouhabaz, Merieme
Costanza, Mario
Margueron, Samuel
Bartasyte, Ausrine
Basrour, Skandar
Bano, Edwige
Montes, Laurent
Dehollain, Catherine
La Rosa, Roberto
author_facet Panayanthatta, Namanu
Clementi, Giacomo
Ouhabaz, Merieme
Costanza, Mario
Margueron, Samuel
Bartasyte, Ausrine
Basrour, Skandar
Bano, Edwige
Montes, Laurent
Dehollain, Catherine
La Rosa, Roberto
author_sort Panayanthatta, Namanu
collection PubMed
description Wireless sensor nodes (WSNs) are the fundamental part of an Internet of Things (IoT) system for detecting and transmitting data to a master node for processing. Several research studies reveal that one of the disadvantages of conventional, battery-powered WSNs, however, is that they typically require periodic maintenance. This paper aims to contribute to existing research studies on this issue by exploring a new energy-autonomous and battery-free WSN concept for monitor vibrations. The node is self-powered from the conversion of ambient mechanical vibration energy into electrical energy through a piezoelectric transducer implemented with lead-free lithium niobate piezoelectric material to also explore solutions that go towards a greener and more sustainable IoT. Instead of implementing any particular sensors, the vibration measurement system exploits the proportionality between the mechanical power generated by a piezoelectric transducer and the time taken to store it as electrical energy in a capacitor. This helps reduce the component count with respect to conventional WSNs, as well as energy consumption and production costs, while optimizing the overall node size and weight. The readout is therefore a function of the time it takes for the energy storage capacitor to charge between two constant voltage levels. The result of this work is a system that includes a specially designed lead-free piezoelectric vibrational transducer and a battery-less sensor platform with Bluetooth low energy (BLE) connectivity. The system can harvest energy in the acceleration range [0.5 g–1.2 g] and measure vibrations with a limit of detection (LoD) of 0.6 g.
format Online
Article
Text
id pubmed-8618968
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-86189682021-11-27 A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring Panayanthatta, Namanu Clementi, Giacomo Ouhabaz, Merieme Costanza, Mario Margueron, Samuel Bartasyte, Ausrine Basrour, Skandar Bano, Edwige Montes, Laurent Dehollain, Catherine La Rosa, Roberto Sensors (Basel) Article Wireless sensor nodes (WSNs) are the fundamental part of an Internet of Things (IoT) system for detecting and transmitting data to a master node for processing. Several research studies reveal that one of the disadvantages of conventional, battery-powered WSNs, however, is that they typically require periodic maintenance. This paper aims to contribute to existing research studies on this issue by exploring a new energy-autonomous and battery-free WSN concept for monitor vibrations. The node is self-powered from the conversion of ambient mechanical vibration energy into electrical energy through a piezoelectric transducer implemented with lead-free lithium niobate piezoelectric material to also explore solutions that go towards a greener and more sustainable IoT. Instead of implementing any particular sensors, the vibration measurement system exploits the proportionality between the mechanical power generated by a piezoelectric transducer and the time taken to store it as electrical energy in a capacitor. This helps reduce the component count with respect to conventional WSNs, as well as energy consumption and production costs, while optimizing the overall node size and weight. The readout is therefore a function of the time it takes for the energy storage capacitor to charge between two constant voltage levels. The result of this work is a system that includes a specially designed lead-free piezoelectric vibrational transducer and a battery-less sensor platform with Bluetooth low energy (BLE) connectivity. The system can harvest energy in the acceleration range [0.5 g–1.2 g] and measure vibrations with a limit of detection (LoD) of 0.6 g. MDPI 2021-11-11 /pmc/articles/PMC8618968/ /pubmed/34833578 http://dx.doi.org/10.3390/s21227503 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Panayanthatta, Namanu
Clementi, Giacomo
Ouhabaz, Merieme
Costanza, Mario
Margueron, Samuel
Bartasyte, Ausrine
Basrour, Skandar
Bano, Edwige
Montes, Laurent
Dehollain, Catherine
La Rosa, Roberto
A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title_full A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title_fullStr A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title_full_unstemmed A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title_short A Self-Powered and Battery-Free Vibrational Energy to Time Converter for Wireless Vibration Monitoring
title_sort self-powered and battery-free vibrational energy to time converter for wireless vibration monitoring
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618968/
https://www.ncbi.nlm.nih.gov/pubmed/34833578
http://dx.doi.org/10.3390/s21227503
work_keys_str_mv AT panayanthattanamanu aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT clementigiacomo aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT ouhabazmerieme aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT costanzamario aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT margueronsamuel aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT bartasyteausrine aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT basrourskandar aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT banoedwige aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT monteslaurent aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT dehollaincatherine aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT larosaroberto aselfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT panayanthattanamanu selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT clementigiacomo selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT ouhabazmerieme selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT costanzamario selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT margueronsamuel selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT bartasyteausrine selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT basrourskandar selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT banoedwige selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT monteslaurent selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT dehollaincatherine selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring
AT larosaroberto selfpoweredandbatteryfreevibrationalenergytotimeconverterforwirelessvibrationmonitoring