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Self-powered and Self-configurable Active Rectifier Using Low Voltage Controller for Wide Output Range Energy Harvesters

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posted on 2025-08-01, 14:16 authored by Z Chew, Y Kuang, M Zhu
This paper presents a self-configurable and selfpowered active rectifier that operates from 0.25–20 V for energy harvesting applications. The proposed circuit self-startups from a low voltage using a charge pump and amplifies the voltage with a voltage doubler (VD) topology to provide succeeding circuits such as boost converters with a higher voltage. When the voltage of the energy harvester reaches a high threshold, the circuit switches its topology to a full-wave rectifier (FR) that does not amplify the voltage. The start-up circuit can limit its voltage intake to prevent boosting the high voltage, which may damage the whole circuit. Comparators with a maximum operating voltage of 5.5 V used in the implementation of the rectifier are protected by a diode and resistor based circuit. A piezoelectric energy harvester (PEH) that has a wide open-circuit voltage of 0.4–15 V under the acceleration of 0.04–0.3 g was used to test the circuit. The experiment results showed the rectifier can startup from 0.25 V and switch its topology according to the PEH voltage. The voltage and power conversion efficiencies are over 90% in most cases.

Funding

EP/S024840/1

Engineering and Physical Sciences Research Council (EPSRC)

INF\R2\202021

Royal Society

History

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Rights

© 2022 IEEE

Notes

This is the author accepted manuscript. The final version is available from IEEE via the DOI in this record Data availability: All data are provided in full in the results section of this paper.

Journal

IEEE Transactions on Power Electronics

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Version

  • Accepted Manuscript

Language

en

FCD date

2022-04-04T16:32:16Z

FOA date

2022-04-13T12:25:27Z

Citation

Published online 7 April 2022

Department

  • Engineering

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