LAPSE:2023.23395
Published Article
LAPSE:2023.23395
A Thermoelectric Energy Harvesting Scheme with Passive Cooling for Outdoor IoT Sensors
March 27, 2023
Abstract
This paper presents an energetically autonomous IoT sensor powered via thermoelectric harvesting. The operation of thermal harvesting is based on maintaining a temperature gradient of at least 26.31 K between the thermoelectric-generator sides. While the hot side employs a metal plate, the cold side is attached with a phase-change material acting as an effective passive dissipative material. The desired temperature gradient allows claiming power conversion efficiencies of about 26.43%, without efficiency reductions associated with heating and soiling. This work presents the characterization of a low-cost off-the-shelf thermoelectric generator that allows estimating the production of at least 407.3 mW corresponding to 2.44 Wh of available energy considering specific operation hours—determined statistically for a given geographic location. Then, the energy production is experimentally verified with the construction of an outdoor IoT sensor powered by a passively-cooled thermoelectric generator. The prototype contains a low-power microcontroller, environmental sensors, and a low-power radio to report selected environmental variables to a central node. This work shows that the proposed supply mechanism provides sufficient energy for continuous operation even during times with no solar resource through an on-board Li-Po battery. Such a battery can be recharged once the solar radiation is available without compromising sensor operation.
Keywords
internet of things, outdoor sensor, passive cooling, phase change material, thermoelectric energy harvesting, thermoelectric generator
Subject
Suggested Citation
Charris D, Gomez D, Ortega AR, Carmona M, Pardo M. A Thermoelectric Energy Harvesting Scheme with Passive Cooling for Outdoor IoT Sensors. (2023). LAPSE:2023.23395
Author Affiliations
Charris D: Robotics and Intelligent Systems Research Group from Universidad Del Norte, Barranquilla, Atlántico 8600, Colombia [ORCID]
Gomez D: Robotics and Intelligent Systems Research Group from Universidad Del Norte, Barranquilla, Atlántico 8600, Colombia [ORCID]
Ortega AR: Rational Use of Energy and Environment Preservation Research Group from Universidad del Norte, Barranquilla, Atlántico 8600, Colombia [ORCID]
Carmona M: Rational Use of Energy and Environment Preservation Research Group from Universidad del Norte, Barranquilla, Atlántico 8600, Colombia
Pardo M: Robotics and Intelligent Systems Research Group from Universidad Del Norte, Barranquilla, Atlántico 8600, Colombia [ORCID]
Journal Name
Energies
Volume
13
Issue
11
Article Number
E2782
Year
2020
Publication Date
2020-06-01
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en13112782, Publication Type: Journal Article
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LAPSE:2023.23395
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https://doi.org/10.3390/en13112782
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Mar 27, 2023
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CC BY 4.0
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Mar 27, 2023
 
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