Thermal energy harvesting to power a battery-less node of a wireless sensor network

Boselli, Sofía - Gaudio, Romina - Grilli, María Pía - Silveira, Fernando - Siniscalchi, Mariana

Resumen:

A commercial Peltier cell is experimentally characterized working as a thermoelectric generator for small temperature differences between 1°C and 4∘C . The method proposed, consisting of simple experiments together with the model used, can be applied to characterize other thermoelectric generators for similar applications. The measurement results of the output voltage of the Peltier cell for a given resistive load, aid the designer of the energy harvesting circuit to fulfill the specifications of the particular application. A system is implemented to show the feasibility of having a small wearable Peltier cell as the only source of power for a wireless sensor node. The node is IEEE 802.15.4 compliant and transmits three messages every 10min . In order to adapt the voltage level provided by the Peltier cell to supply the node, an energy harvesting circuit is built based on an off-the-shelf DC-DC converter.

Detalles Bibliográficos
2023
Los autores agradecen a CSIC de la Universidad de la República de Uruguay por su apoyo financiero.
TEG
Wireless sensor
DC-DC converter
Harvesting circuit
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/54660
Acceso abierto
Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
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author Boselli, Sofía
author2 Gaudio, Romina
Grilli, María Pía
Silveira, Fernando
Siniscalchi, Mariana
author2_role author
author
author
author
author_facet Boselli, Sofía
Gaudio, Romina
Grilli, María Pía
Silveira, Fernando
Siniscalchi, Mariana
author_role author
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dc.contributor.filiacion.none.fl_str_mv Boselli Sofía, Universidad de la República (Uruguay). Facultad de Ingeniería.
Gaudio Romina, Universidad de la República (Uruguay). Facultad de Ingeniería.
Grilli María Pía, Universidad de la República (Uruguay). Facultad de Ingeniería.
Silveira Fernando, Universidad de la República (Uruguay). Facultad de Ingeniería.
Siniscalchi Mariana, Universidad de la República (Uruguay). Facultad de Ingeniería.
dc.creator.none.fl_str_mv Boselli, Sofía
Gaudio, Romina
Grilli, María Pía
Silveira, Fernando
Siniscalchi, Mariana
dc.date.accessioned.none.fl_str_mv 2026-04-29T13:25:06Z
dc.date.available.none.fl_str_mv 2026-04-29T13:25:06Z
dc.date.issued.none.fl_str_mv 2023
dc.description.abstract.none.fl_txt_mv A commercial Peltier cell is experimentally characterized working as a thermoelectric generator for small temperature differences between 1°C and 4∘C . The method proposed, consisting of simple experiments together with the model used, can be applied to characterize other thermoelectric generators for similar applications. The measurement results of the output voltage of the Peltier cell for a given resistive load, aid the designer of the energy harvesting circuit to fulfill the specifications of the particular application. A system is implemented to show the feasibility of having a small wearable Peltier cell as the only source of power for a wireless sensor node. The node is IEEE 802.15.4 compliant and transmits three messages every 10min . In order to adapt the voltage level provided by the Peltier cell to supply the node, an energy harvesting circuit is built based on an off-the-shelf DC-DC converter.
dc.description.sponsorship.none.fl_txt_mv Los autores agradecen a CSIC de la Universidad de la República de Uruguay por su apoyo financiero.
dc.format.extent.es.fl_str_mv 4 p.
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dc.identifier.citation.es.fl_str_mv Boselli, S., Gaudio, R., Grilli, M. y otros. Thermal energy harvesting to power a battery-less node of a wireless sensor network [en línea]. EN: 2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS), Quito, Ecuador, 28 feb. - 03 mar. 2023, pp. 1-4.
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/54660
dc.language.iso.none.fl_str_mv en
eng
dc.relation.none.fl_str_mv 2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS), Quito, Ecuador, 28 feb. - 03 mar. 2023, pp. 1-4.
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.subject.es.fl_str_mv TEG
Wireless sensor
DC-DC converter
Harvesting circuit
dc.title.none.fl_str_mv Thermal energy harvesting to power a battery-less node of a wireless sensor network
dc.type.es.fl_str_mv Ponencia
dc.type.none.fl_str_mv info:eu-repo/semantics/conferenceObject
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description A commercial Peltier cell is experimentally characterized working as a thermoelectric generator for small temperature differences between 1°C and 4∘C . The method proposed, consisting of simple experiments together with the model used, can be applied to characterize other thermoelectric generators for similar applications. The measurement results of the output voltage of the Peltier cell for a given resistive load, aid the designer of the energy harvesting circuit to fulfill the specifications of the particular application. A system is implemented to show the feasibility of having a small wearable Peltier cell as the only source of power for a wireless sensor node. The node is IEEE 802.15.4 compliant and transmits three messages every 10min . In order to adapt the voltage level provided by the Peltier cell to supply the node, an energy harvesting circuit is built based on an off-the-shelf DC-DC converter.
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identifier_str_mv Boselli, S., Gaudio, R., Grilli, M. y otros. Thermal energy harvesting to power a battery-less node of a wireless sensor network [en línea]. EN: 2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS), Quito, Ecuador, 28 feb. - 03 mar. 2023, pp. 1-4.
instacron_str Universidad de la República
institution Universidad de la República
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language eng
language_invalid_str_mv en
network_acronym_str COLIBRI
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publishDate 2023
reponame_str COLIBRI
repository.mail.fl_str_mv karina.camps@seciu.edu.uy
repository.name.fl_str_mv COLIBRI - Universidad de la República
repository_id_str 4771
rights_invalid_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
spelling Boselli Sofía, Universidad de la República (Uruguay). Facultad de Ingeniería.Gaudio Romina, Universidad de la República (Uruguay). Facultad de Ingeniería.Grilli María Pía, Universidad de la República (Uruguay). Facultad de Ingeniería.Silveira Fernando, Universidad de la República (Uruguay). Facultad de Ingeniería.Siniscalchi Mariana, Universidad de la República (Uruguay). Facultad de Ingeniería.2026-04-29T13:25:06Z2026-04-29T13:25:06Z2023Boselli, S., Gaudio, R., Grilli, M. y otros. Thermal energy harvesting to power a battery-less node of a wireless sensor network [en línea]. EN: 2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS), Quito, Ecuador, 28 feb. - 03 mar. 2023, pp. 1-4.https://hdl.handle.net/20.500.12008/54660A commercial Peltier cell is experimentally characterized working as a thermoelectric generator for small temperature differences between 1°C and 4∘C . The method proposed, consisting of simple experiments together with the model used, can be applied to characterize other thermoelectric generators for similar applications. The measurement results of the output voltage of the Peltier cell for a given resistive load, aid the designer of the energy harvesting circuit to fulfill the specifications of the particular application. A system is implemented to show the feasibility of having a small wearable Peltier cell as the only source of power for a wireless sensor node. The node is IEEE 802.15.4 compliant and transmits three messages every 10min . In order to adapt the voltage level provided by the Peltier cell to supply the node, an energy harvesting circuit is built based on an off-the-shelf DC-DC converter.Submitted by Ribeiro Jorge (jribeiro@fing.edu.uy) on 2026-04-28T21:24:32Z No. of bitstreams: 2 license_rdf: 27293 bytes, checksum: d62648cf14c1e37917d392ac87012955 (MD5) BGGSS23.pdf: 2085334 bytes, checksum: 53253a9dd4d468f9c6c81077da9e71d2 (MD5)Approved for entry into archive by Machado Jimena (jmachado@fing.edu.uy) on 2026-04-29T13:02:13Z (GMT) No. of bitstreams: 2 license_rdf: 27293 bytes, checksum: d62648cf14c1e37917d392ac87012955 (MD5) BGGSS23.pdf: 2085334 bytes, checksum: 53253a9dd4d468f9c6c81077da9e71d2 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2026-04-29T13:25:06Z (GMT). No. of bitstreams: 2 license_rdf: 27293 bytes, checksum: d62648cf14c1e37917d392ac87012955 (MD5) BGGSS23.pdf: 2085334 bytes, checksum: 53253a9dd4d468f9c6c81077da9e71d2 (MD5) Previous issue date: 2023Los autores agradecen a CSIC de la Universidad de la República de Uruguay por su apoyo financiero.4 p.application/pdfeneng2023 IEEE 14th Latin America Symposium on Circuits and Systems (LASCAS), Quito, Ecuador, 28 feb. - 03 mar. 2023, pp. 1-4.Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. 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spellingShingle Thermal energy harvesting to power a battery-less node of a wireless sensor network
Boselli, Sofía
TEG
Wireless sensor
DC-DC converter
Harvesting circuit
status_str publishedVersion
title Thermal energy harvesting to power a battery-less node of a wireless sensor network
title_full Thermal energy harvesting to power a battery-less node of a wireless sensor network
title_fullStr Thermal energy harvesting to power a battery-less node of a wireless sensor network
title_full_unstemmed Thermal energy harvesting to power a battery-less node of a wireless sensor network
title_short Thermal energy harvesting to power a battery-less node of a wireless sensor network
title_sort Thermal energy harvesting to power a battery-less node of a wireless sensor network
topic TEG
Wireless sensor
DC-DC converter
Harvesting circuit
url https://hdl.handle.net/20.500.12008/54660