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Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model

Daniel B. Ferreira et al · Sociedade Brasileira de Microondas e Optoeletrônica e Sociedade Brasileira de Eletromagnetismo · 2020

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Abstract This paper presents an efficient technique of microstrip magnetic dipoles design that explores the physics ruling the antenna behavior not restricting to parametric analyses in a full-wave simulation software. The proposed approach makes use of the cavity model whose parameters are progressively enhanced by using full-wave electromagnetic simulation data in a feedback scheme. A curve fitting problem is established to evaluate the mentioned parameters at each iteration. To exemplify the developed technique, a microstrip magnetic dipole operating at 2.44 GHz (ISM band) was synthesized and its prototype was manufactured and tested in an anechoic chamber. The design was ready in less than one hour and only three full-wave simulations were required. A good agreement between theoretical predictions and experimental results was also observed.

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APA 7

al, D. B. F. E. (2020). Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model. https://doi.org/10.1590/2179-10742020v19i11898

MLA

al, Daniel B. Ferreira et. "Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model." 2020. https://doi.org/10.1590/2179-10742020v19i11898.

Chicago

al, Daniel B. Ferreira et. 2020. "Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model.". https://doi.org/10.1590/2179-10742020v19i11898.

Harvard

al, D. B. F. E. 2020, Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model, Sociedade Brasileira de Microondas e Optoeletrônica e Sociedade Brasileira de Eletromagnetismo, available at: https://doi.org/10.1590/2179-10742020v19i11898 [Accessed 7 Aug. 2026].

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Title
Physics-Based Design of Microstrip Magnetic Dipoles Using Cavity Model
Author / contributors
Daniel B. Ferreira et al
Publisher
Sociedade Brasileira de Microondas e Optoeletrônica e Sociedade Brasileira de Eletromagnetismo
Publication year
2020
ISSN
2179-1074
ISSN
2179-1074
Language
English

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