A compact and efficient graphene FET based RF energy harvester for green communication

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2020

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Elsevier GmbH

Abstract

This paper presents a graphene field effect transistor (FET) based rectenna with substrate-integrated waveguide (SIW) broadband approach for RF energy harvesting application. The proposed structure of integrated rectenna consists of a graphene FET rectifier and an SIW antenna operating in the (S<inf>11</inf> < ?10 dB) range of 29–46 GHz. The peak gain of the SIW antenna observed is 8.12 dBi. In addition, a new matched circuit consisting of microstrip line and butterfly stub (without using any lumped elements) is designed. The matched circuit provides a miniaturized block by reducing the size and eliminating parasitic reactance in the integrated rectenna. The proposed rectenna is implemented and fabricated using two superimposed layers: RT/duroid 5880 and graphene substrate with a compatible approach. A measured conversion efficiency of 80.32% is obtained. The dimensions of the proposed antenna and rectifier are 3.2 × 3.2 × 0.4 mm3 and 3.2 × 10 × 0.4 mm3, respectively. The proposed rectenna covers Ka- and Q-band applications and could be a potential candidate for contemporary energy harvesting systems. © 2019 Elsevier GmbH

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Keywords

Antennas, Bismuth compounds, Energy harvesting, Field effect transistors, Graphene, Graphene transistors, Microwave antennas, Rectifying circuits, Substrate integrated waveguides, Energy harvesting systems, Graphene field effect transistor (FET), Green communications, Green energy, Parasitic reactance, Rectenna, Rf energy harvesters, RF energy harvesting, Rectennas

Citation

AEU - International Journal of Electronics and Communications, 2020, 115, , pp. -

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