A Multiobjective and Fast Optimization Algorithm for Wearable Antenna Array Design

This study introduces a computationally efficient technique for a fast but reliable evaluation of the radiation characteristics of antennas placed in a complex environment. The method is based on scattering matrix representation of the addressed antenna system as a basis to retrieve both the near-fi...

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Published inIEEE transactions on antennas and propagation p. 1
Main Authors Choudhury, Suvadeep, Costa, Filippo, Manara, Giuliano, Tedjini, Smail, Genovesi, Simone
Format Journal Article
LanguageEnglish
Published IEEE 2025
Subjects
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ISSN0018-926X
1558-2221
DOI10.1109/TAP.2025.3589012

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Abstract This study introduces a computationally efficient technique for a fast but reliable evaluation of the radiation characteristics of antennas placed in a complex environment. The method is based on scattering matrix representation of the addressed antenna system as a basis to retrieve both the near-field and the far-field variations in correspondence to the selected points of interest. The effectiveness of the proposed approach is demonstrated through different test cases that include various kinds of radiators such as dipoles, loops, and planar-inverted folded antennas (PIFAs). Due to its computational efficiency, the method is adopted to design a suitable feeding scheme of a wearable antenna array to achieve the desired level of near-field and radiated fields by using a multiobjective algorithm. Furthermore, the Complex Antenna Factor (CAF) is defined and exploited to generalize the estimate of the near-field in the case of proximity to multilayered dielectric objects.
AbstractList This study introduces a computationally efficient technique for a fast but reliable evaluation of the radiation characteristics of antennas placed in a complex environment. The method is based on scattering matrix representation of the addressed antenna system as a basis to retrieve both the near-field and the far-field variations in correspondence to the selected points of interest. The effectiveness of the proposed approach is demonstrated through different test cases that include various kinds of radiators such as dipoles, loops, and planar-inverted folded antennas (PIFAs). Due to its computational efficiency, the method is adopted to design a suitable feeding scheme of a wearable antenna array to achieve the desired level of near-field and radiated fields by using a multiobjective algorithm. Furthermore, the Complex Antenna Factor (CAF) is defined and exploited to generalize the estimate of the near-field in the case of proximity to multilayered dielectric objects.
Author Genovesi, Simone
Tedjini, Smail
Costa, Filippo
Manara, Giuliano
Choudhury, Suvadeep
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Snippet This study introduces a computationally efficient technique for a fast but reliable evaluation of the radiation characteristics of antennas placed in a complex...
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SubjectTerms Antenna arrays
Body Area Network
complex antenna factor
Dielectrics
Dipole antennas
Electric fields
multi-objective optimization
Optimization
Probes
Receiving antennas
Scattering
scattering matrix
Specific absorption rate
wearable antennas
Wireless communication
Title A Multiobjective and Fast Optimization Algorithm for Wearable Antenna Array Design
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