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Formal Description of Inductive Air Interfaces Using Thévenin's Theorem and Numerical Analysis

  • With the development of new integrated circuits to interface radio frequency identification protocols, inductive air interfaces have become more and more important. Near field communication is not only able to communicate, but also possible to transfer power wirelessly and to build up passive devices for logistical and medical applications. In this way, the power management on the transponderWith the development of new integrated circuits to interface radio frequency identification protocols, inductive air interfaces have become more and more important. Near field communication is not only able to communicate, but also possible to transfer power wirelessly and to build up passive devices for logistical and medical applications. In this way, the power management on the transponder becomes more and more relevant. A designer has to optimize power consumption as well as energy harvesting from the magnetic field. This paper discusses a model with simple equations to improve transponder antenna matching. Furthermore, a new numerical analysis technique is presented to calculate the coupling factors, inductions, and magnetic fields of multiantenna systems.show moreshow less

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Metadaten
Author:Tobias VolkGND, Mayukh BhattacharyyaORCiDGND, Waldemar GrünwaldORCiDGND, Leonhard Michael Reindl, Dirk JansenGND
Creating Corporation:IEEE
Year of Publication:2014
Language:English
GND Keyword:Antenne; Applikation; Formale Beschreibung; Integrierte Schaltung; Schnittstelle
Parent Title (English):IEEE Transactions on Magnetics
Volume:50
Issue:6
ISSN:0018-9464
First Page:1
Last Page:9
Document Type:Article (unreviewed)
Open Access:Frei zugänglich
Institutes:Bibliografie
Release Date:2017/10/25
Licence (German):License LogoEs gilt das UrhG
URL:https://www.researchgate.net/publication/264582805_Formal_Description_of_Inductive_Air_Interfaces_Using_Thevenin's_Theorem_and_Numerical_Analysis
DOI:https://doi.org/10.1109/TMAG.2014.2300042