Wide-Angle RCS Enhanced Tag Based on Dielectric Resonator – Lens Combination

Author:

Alhaj Abbas Ali1,El-Absi Mohammed1,Abuelhaija Ashraf2,Solbach Klaus1,Kaiser Thomas1

Affiliation:

1. Institute of Digital Signal Processing, University of Duisburg-Essen, Duisburg, Germany

2. Electrical Engineering Department, Applied Science Private University, Amman11931, Jordan

Abstract

AbstractIn a novel mm-wave localization system, dielectric resonators (DR) have been proposed as passive chipless RFID tags to mark fixed reference nodes. To counter clutter and improve the limited read range due to the low RCS level of a DR at millimeter-wave frequencies we propose a combination of several DRs with a dielectric spherical lens which allows improvement of up to 30 dB. The paper presents the design principle and shows simulation results and experimental verification of a scaled tag operating in the 10–12 GHz range and covering a range of incidence angle of the reader signal of ± 50°. A frequency sweeping RF reader can identify the tag (information) by the peak of the RCS level at its DR resonant frequency. For a multiple-tag scenario we can realize up to 12 different tags which can be discriminated unambiguously by their resonant frequencies in a 1: 1.2 frequency bandwidth.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering

Reference34 articles.

1. A space-frequency technique for chipless RFID tag localization;IEEE. Trans. Antennas Propag.,2014

2. Wide-scan spherical-lens antennas for automotive radars;IEEE. Trans. Microw. Theory Tech.,2002

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