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An Evaluation of SC-FDMA Signal Transmission in Radio over Fiber Mobile Fronthaul

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dc.contributor.author Fito, Herminawan en
dc.contributor.author Higashino, Takeshi en
dc.contributor.author Okada, Minoru en
dc.date.accessioned 2020-08-26T08:35:05Z en
dc.date.available 2020-08-26T08:35:05Z en
dc.date.issued 2020-05-22 en
dc.identifier.uri http://hdl.handle.net/10061/14034 en
dc.description 2020 14th International Symposium on Medical Information Communication Technology (ISMICT)Nara, Japan en
dc.description.abstract This paper investigates a transmission efficiency dependent on location of a receiver for large-scale wireless power transfer (WPT) system using parallel line feeder. Many researches usually employ electromagnetic field simulation and equivalent circuit analysis, for circuit analysis. However, when the size of transmitter is enlarged in order to widen feeding area, circuit model is required to be also converted as distributed constant circuit because of uneven current density distribution in transmission line. Therefore, in this paper, we newly build a circuit model for large parallel line feeder coupled with a receiver as a combination of concentrated and distributed constant circuit, and investigate transmission efficiency imbalance according to a receiver position in large transmitter using that model. Proposal method is experimentally demonstrated. en
dc.language.iso en en
dc.publisher IEEE en
dc.rights © 2020, IEEE ja
dc.rights 出版社許諾条件により、本文は2021年8月1日以降に公開 ja
dc.subject Impedance en
dc.subject Receivers en
dc.subject Transmitters en
dc.subject Integrated circuit modeling en
dc.subject Inductance en
dc.subject Equivalent circuits en
dc.subject Wireless power transfer en
dc.title An Evaluation of SC-FDMA Signal Transmission in Radio over Fiber Mobile Fronthaul en
dc.type.nii Conference Paper en
dc.contributor.transcription ヒガシノ, タケシ ja
dc.contributor.transcription オカダ, ミノル ja
dc.contributor.alternative 東野, 武史 ja
dc.contributor.alternative 岡田, 実 ja
dc.textversion author en
dc.identifier.eissn 2326-8301 en
dc.relation.doi 10.1109/ISMICT48699.2020.9152650 en
dc.identifier.NAIST-ID 73298671 en
dc.identifier.NAIST-ID 73292468 en

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