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Q3 2026

Demonstrating Internal Characteristics for Thermoelectric Generator (TEG) Reliability

Mohammed Slimane Moulay Omar · Mourad Lounis · Mohamed Mankour · Adel Ilyas Saada
10.54966/jreen.v29i1.1439 387 Views 0 Citations
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Abstract

Thermocouple-based thermoelectric generators (TEGs) offer a promising pathway for converting waste heat into electrical power without moving parts. This study combines experimental characterization and MATLAB/Simulink modelling of Type E (chromel/constantan) and Type K (chromel/alumel) thermocouples configured in series and parallel topologies to quantify voltage, current, and power generation characteristics. An equivalent electrical circuit model, parameterized using NIST ITS-90 thermocouple coefficients and validated against laboratory measurements, demonstrates close agreement between simulation and experimental results. The quantitative comparison reveals that the proposed TEG model accurately predicts output voltages within 2% mean absolute percentage error and load voltages/currents within sub-millivolt and sub-milliampere root mean square error ranges. These findings validate the modeling methodology and provide practical insights for optimizing thermocouple-based TEG configurations in waste heat recovery applications.

Cite this Article (APA)
Mohammed, S. M. O., Mourad, L., Mohamed, M., Adel, I. S. (2026). Demonstrating Internal Characteristics for Thermoelectric Generator (TEG) Reliability. Journal of Renewable Energies. https://doi.org/10.54966/jreen.v29i1.1439
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Published in
ISSN 1112-2242
Quartile Q3
AMS Score 84
Field Engineering & Technology
Publisher Renewable Energy Development Center
Country 🇩🇿 Algeria
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Authors
Publication Details
Year 2026
Language English
Added 01 Aug 2026