The efficient setup and deployment of modern radio frequency identification (RF-ID) systems operating at 13.56 MHz require an accurate knowledge of the reading range associated to the reader unit. To evaluate the reading range, an efficient simulative approach is analyzed in this paper, based on the evaluation of scattering parameters and a computer aided design (CAD) modeling. In particular, a two-port numerical model is considered and the parameter S2,1 analyzed. The purpose is to propose an efficient and original approach, based on S-parameters, in order to characterize an RF-ID system at 13.56 MHz in terms of reading range. Some key working conditions of RF-ID systems are also analyzed in terms of inductive coupling between reader and tag coils.

Characterization of a 13.56 MHz RF-ID System Based on Scattering Parameters Approach

SONA, ALESSANDRO;
2009

Abstract

The efficient setup and deployment of modern radio frequency identification (RF-ID) systems operating at 13.56 MHz require an accurate knowledge of the reading range associated to the reader unit. To evaluate the reading range, an efficient simulative approach is analyzed in this paper, based on the evaluation of scattering parameters and a computer aided design (CAD) modeling. In particular, a two-port numerical model is considered and the parameter S2,1 analyzed. The purpose is to propose an efficient and original approach, based on S-parameters, in order to characterize an RF-ID system at 13.56 MHz in terms of reading range. Some key working conditions of RF-ID systems are also analyzed in terms of inductive coupling between reader and tag coils.
2009
9781424426997
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2374029
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