Printed inverted-F antennas over lossy magneto-dielectric materials: Theoretical approach and validations

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Abstract

Closed-form formulas for radiation efficiency and bandwidth predictions, suitable for printed inverted-F antennas (PIFAs) over lossy magneto-dielectric materials, are proposed. The formulation uses the field expressions inside the cavity for the first resonant-mode (fundamental mode) based on the cavity model. It includes the substrate effective permittivity (εre) and permeability (μre) in addition to the radiation from both the shorting-pad and the slot. The derived expressions for efficiency and bandwidth are validated with measurements and full-wave CST simulations based on the finite integration technique. Various sizes and types of magneto-dielectric materials are considered. It is noticed that magneto-dielectric materials havingv(εreμre) > εr or simply with μr > εr are advantageous for both radiation efficiency and bandwidth enhancement. © The Institution of Engineering and Technology 2014.

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APA

Niamien, M. A. C., Collardey, S., Sharaiha, A., & Mahdjoubi, K. (2014). Printed inverted-F antennas over lossy magneto-dielectric materials: Theoretical approach and validations. IET Microwaves, Antennas and Propagation, 8(7), 513–522. https://doi.org/10.1049/iet-map.2013.0244

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