Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band

A simultaneous wireless information and power transfer system employing separated frequency bands for energy and data, dubbed dual-band SWIPT, is investigated. Elementary circuit elements are optimized numerically. An experimental testbed based on a gallium nitride (GaN) full-bridge converter demons...

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Main Authors: Placzek, J. Maximilian, Hoeher, Peter A., Prasobhu, Pramod K., Liserre, Marco, Buticchi, Giampaolo
Format: Conference or Workshop Item
Language:English
Published: 2018
Subjects:
Online Access:https://eprints.nottingham.ac.uk/56709/
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author Placzek, J. Maximilian
Hoeher, Peter A.
Prasobhu, Pramod K.
Liserre, Marco
Buticchi, Giampaolo
author_facet Placzek, J. Maximilian
Hoeher, Peter A.
Prasobhu, Pramod K.
Liserre, Marco
Buticchi, Giampaolo
author_sort Placzek, J. Maximilian
building Nottingham Research Data Repository
collection Online Access
description A simultaneous wireless information and power transfer system employing separated frequency bands for energy and data, dubbed dual-band SWIPT, is investigated. Elementary circuit elements are optimized numerically. An experimental testbed based on a gallium nitride (GaN) full-bridge converter demonstrates data rates in excess of 450 kbps employing onoff keying in conjunction with a simple diode detector for data recovery.
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format Conference or Workshop Item
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institution University of Nottingham Malaysia Campus
institution_category Local University
language English
last_indexed 2025-11-14T20:34:34Z
publishDate 2018
recordtype eprints
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spelling nottingham-567092019-05-14T02:53:12Z https://eprints.nottingham.ac.uk/56709/ Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band Placzek, J. Maximilian Hoeher, Peter A. Prasobhu, Pramod K. Liserre, Marco Buticchi, Giampaolo A simultaneous wireless information and power transfer system employing separated frequency bands for energy and data, dubbed dual-band SWIPT, is investigated. Elementary circuit elements are optimized numerically. An experimental testbed based on a gallium nitride (GaN) full-bridge converter demonstrates data rates in excess of 450 kbps employing onoff keying in conjunction with a simple diode detector for data recovery. 2018-12-31 Conference or Workshop Item PeerReviewed application/pdf en https://eprints.nottingham.ac.uk/56709/1/Simultaneous%20wireless%20information%20and%20GaN-based%20power%20transfer%20exploiting%20a%20dual%20frequency%20band.pdf Placzek, J. Maximilian, Hoeher, Peter A., Prasobhu, Pramod K., Liserre, Marco and Buticchi, Giampaolo (2018) Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band. In: IECON 2018: 44th Annual Conference of the IEEE Industrial Electronics Society, 21-23 Oct. 2018, Washington DC, USA. Coils; Resonant frequency; Optimization; Resistance; Channel capacity; Couplings; Modulation http://dx.doi.org/10.1109/IECON.2018.8591208 10.1109/IECON.2018.8591208 10.1109/IECON.2018.8591208 10.1109/IECON.2018.8591208
spellingShingle Coils; Resonant frequency; Optimization; Resistance; Channel capacity; Couplings; Modulation
Placzek, J. Maximilian
Hoeher, Peter A.
Prasobhu, Pramod K.
Liserre, Marco
Buticchi, Giampaolo
Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title_full Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title_fullStr Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title_full_unstemmed Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title_short Simultaneous wireless information and GaN-based power transfer exploiting a dual frequency band
title_sort simultaneous wireless information and gan-based power transfer exploiting a dual frequency band
topic Coils; Resonant frequency; Optimization; Resistance; Channel capacity; Couplings; Modulation
url https://eprints.nottingham.ac.uk/56709/
https://eprints.nottingham.ac.uk/56709/
https://eprints.nottingham.ac.uk/56709/