Design of a 3D Printed Helical Antenna having High Gain for 2.4 GHz ISM Band Applications

A helical antenna that is designed for circular polarisation throughout an extensive axial-ratio (AR) bandwidth is demonstrated. The antenna is constructed from copper wire and is supported by a 3D-printed polylactic Acid (PLA) structure. The antenna’s performance (reflection coefficient, axial rati...

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Published inDefense science journal Vol. 75; no. 3; pp. 325 - 330
Main Authors Bal, Subhradip, Mandal, Subha, Abdullha, Md. Mustafa, Sen, Gobinda
Format Journal Article
LanguageEnglish
Published New Delhi Defence Scientific Information & Documentation Centre 01.05.2025
Subjects
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ISSN0011-748X
0976-464X
0976-464X
DOI10.14429/dsj.20901

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Abstract A helical antenna that is designed for circular polarisation throughout an extensive axial-ratio (AR) bandwidth is demonstrated. The antenna is constructed from copper wire and is supported by a 3D-printed polylactic Acid (PLA) structure. The antenna’s performance (reflection coefficient, axial ratio, gain, and radiation pattern) is comprehensively analysed and influenced by the geometric characteristics of the helix and the quantity of PLA used inside the coil diameter. The pre-designed PLA framework is used to construct the antenna prototype by coiling a 1 mm diameter copper wire around it. The framework is equipped with threads that are designed to support the helix of the antenna, according to the specified number of turns and distance between each turn. The antenna is suitable for a wide range of ISM band applications, as it resonates at 2.45 GHz and has a high radiation efficiency of 99 %. Additionally, it has a maximum gain of 8.01 dB. The helical antenna has a bandwidth of 0.15λ0 at the central frequency and a 3 dB axial ratio bandwidth that spans from 2.3 to 2.5 GHz. The results demonstrate the ease and feasibility of producing highly efficient helical antennas using 3D printing technology.
AbstractList A helical antenna that is designed for circular polarisation throughout an extensive axial-ratio (AR) bandwidth is demonstrated. The antenna is constructed from copper wire and is supported by a 3D-printed polylactic Acid (PLA) structure. The antenna’s performance (reflection coefficient, axial ratio, gain, and radiation pattern) is comprehensively analysed and influenced by the geometric characteristics of the helix and the quantity of PLA used inside the coil diameter. The pre-designed PLA framework is used to construct the antenna prototype by coiling a 1 mm diameter copper wire around it. The framework is equipped with threads that are designed to support the helix of the antenna, according to the specified number of turns and distance between each turn. The antenna is suitable for a wide range of ISM band applications, as it resonates at 2.45 GHz and has a high radiation efficiency of 99 % Additionally, it has a maximum gain of 8.01 dB. The helical antenna has a bandwidth of 0.15λ0 at the central frequency and a 3 dB axial ratio bandwidth that spans from 2.3 to 2.5 GHz. The results demonstrate the ease and feasibility of producing highly efficient helical antennas using 3D printing technology.
Author Mandal, Subha
Abdullha, Md. Mustafa
Bal, Subhradip
Sen, Gobinda
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Snippet A helical antenna that is designed for circular polarisation throughout an extensive axial-ratio (AR) bandwidth is demonstrated. The antenna is constructed...
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StartPage 325
SubjectTerms Antenna radiation patterns
Antennas
Bandwidths
Circular polarization
Coiling
Copper wire
Diameters
Helical antennas
High gain
Microstrip antennas
Pattern analysis
Polylactic acid
Radiation
Reflectance
Three dimensional printing
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