2024
DOI: 10.24084/repqj20.249
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A novel Design Approach of a Micro Thermoelectric Generator for High Power Density for Ambient Heat Energy Scavenging Applications.

Abstract: Thermoelectric generators (TEGs) have become an excellent candidate for autonomously powering wearable and implantable microelectronics, and wireless sensor networks in the Internet of Things (IoT) systems. This paper presents a doublelayer double-circuit planar TEG with high power output. The impact of the different geometric terms on the device performance is investigated by the use of an electrical model. By studying the impact of the width of the TE films, the number of pairs is optimized to give the optim… Show more

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“…To overcome these constraints, researchers believe that developing a self-powered electrical energy harvesting system with high biocompatibility and durability would be a novel solution. Several energy scavenging techniques have been researched including piezoelectric [ 11 , 12 ], triboelectric [ 13 ], and thermoelectric(TE) [ 14 , 15 ]. Energy harvesting is an exciting field that has the potential to unlock a new source of renewable energy and contribute to a more sustainable future [ 16 ].…”
Section: Introductionmentioning
confidence: 99%
“…To overcome these constraints, researchers believe that developing a self-powered electrical energy harvesting system with high biocompatibility and durability would be a novel solution. Several energy scavenging techniques have been researched including piezoelectric [ 11 , 12 ], triboelectric [ 13 ], and thermoelectric(TE) [ 14 , 15 ]. Energy harvesting is an exciting field that has the potential to unlock a new source of renewable energy and contribute to a more sustainable future [ 16 ].…”
Section: Introductionmentioning
confidence: 99%