Design of an Ultrawideband Circularly Polarized Printed Crossed-Dipole Antenna Based on Genetic Algorithms for S-Band CubeSat Applications

Author:

Simon Jorge1ORCID,Perez-Guerrero Hugo2,Sosa-Pedroza Jorge3ORCID,Martínez-Zúñiga Fabiola3,Villanueva-Maldonado Juvenal1,Flores-Troncoso Jorge4ORCID,Cardenas-Juarez Marco2ORCID

Affiliation:

1. Cátedras CONACYT, Unidad Académica de Ingeniería Eléctrica, Universidad Autónoma de Zacatecas, Zacatecas, Mexico

2. Facultad de Ciencias, Universidad Autónoma de San Luis Potosí, San Luis Potosí, Mexico

3. Escuela Superior de Ingeniería Mecánica y Eléctrica, Unidad Adolfo López Mateos, Instituto Politécnico Nacional, Ciudad de México, Mexico

4. Unidad Académica de Ingeniería Eléctrica, Universidad Autónoma de Zacatecas, Zacatecas, Mexico

Abstract

As in any satellite, onboard antennas for CubeSats are crucial to establish communication with ground stations or other satellites. According to its application, antennas must comply with standardized requirements related to size, bandwidth, operating frequency, polarization, and gain. This paper presents an ultrawideband circularly polarized two-layer crossed-dipole microstrip antenna for S-band CubeSat applications using genetic algorithms optimization tools included in the 3D electromagnetic simulation software Ansys HFSS. The antenna is constructed on a 10 × 10 cm Cuclad-250 substrate with a back copper flat plane, located at λ/4 at 2.25 GHz operating frequency. The backplane with the exact substrate dimensions improves gain and reduces inside satellite radiation. Measured bandwidth defined by S11 at a −10 dB was higher than 1835 MHz with S11 = −24.68 dB at the central frequency of 2.25 GHz, while measured VSWR at the same frequency was 1.124. At 2.25 GHz, the maximum measured gain and the minimum measured axial ratio in the broadside direction were found to be 6 dBi and 0.22 dB, respectively. There are antenna simulations and measurements, as long as its fabrication guarantees application requirements that make it ready for prespace testing.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

Reference18 articles.

1. CubeSat design specifications;Cal Poly San Luis Obispo and Stanford University

2. The CubeSat program;Cal Poly San Luis Obispo and Stanford University

3. High gain patch antenna for CubeSat

4. A wideband F-shaped patch antenna for S-band CubeSats communications

5. A microstrip antenna based on a standing-wave fractal geometry for CubeSat applications

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design and Development of a 2.7 GHz Antenna Tailored for S-Band Applications;2023 IEEE 3rd Mysore Sub Section International Conference (MysuruCon);2023-12-01

2. Computational intelligence paradigms for UWB antennas: a comprehensive review of analysis, synthesis and optimization;Artificial Intelligence Review;2022-04-21

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