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Electromagnetic Modeling of RFID-Modulated Scattering Mechanism. Application to Tag Performance Evaluation

Identifieur interne : 007896 ( Main/Exploration ); précédent : 007895; suivant : 007897

Electromagnetic Modeling of RFID-Modulated Scattering Mechanism. Application to Tag Performance Evaluation

Auteurs : Jean Charles Bolomey [France] ; Santiago Capdevila [Espagne] ; Lluís Jofre [Espagne] ; Jordi Romeu [Espagne]

Source :

RBID : Pascal:10-0439532

Descripteurs français

English descriptors

Abstract

Radio-frequency identification (RFID) technology relies on the modulated scattering technique (MST) as a means to convey the information from the tag to the reader. The interaction mechanism between the reader and the tag is described in a physically meaningful way by the reciprocity theorem which is deeply rooted into Maxwell equations. This approach provides a simple and yet complete formulation that allows to fully describe the interaction between the reader and the tag, even in complex environments. From this formulation, a clear understanding is derived on how the different design tradeoffs affect system performance. Based on this approach, the paper is focused on several issues of practical relevance for antenna tag design such as maximum power transfer, maximum sensitivity, and nonlinearity effects.


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<term>Antennas</term>
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<term>Information transmission</term>
<term>Maxwell equations</term>
<term>Micromachine</term>
<term>Modelling</term>
<term>Modulation</term>
<term>Non linear effect</term>
<term>Non linear phenomenon</term>
<term>Performance evaluation</term>
<term>Power transmission</term>
<term>Radio frequency identification</term>
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<term>Electromagnétisme</term>
<term>Modélisation</term>
<term>Identification par radiofréquence</term>
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<term>Micromachine</term>
<term>Transmission information</term>
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<term>Principe réciprocité</term>
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<term>Transmission énergie</term>
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<div type="abstract" xml:lang="en">Radio-frequency identification (RF
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