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Advances of Science and Technology. 9th EAI International Conference, ICAST 2021, Hybrid Event, Bahir Dar, Ethiopia, August 27–29, 2021, Proceedings, Part I

Research Article

Optimization of Dualband Microstrip mm-Wave Antenna with Improved Directivity for Mobile Application Using Genetic Algorithm

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  • @INPROCEEDINGS{10.1007/978-3-030-93709-6_22,
        author={Arebu Dejen and Jeevani Jayasinghe and Murad Ridwan and Jaume Anguera},
        title={Optimization of Dualband Microstrip mm-Wave Antenna with Improved Directivity for Mobile Application Using Genetic Algorithm},
        proceedings={Advances of Science and Technology. 9th EAI International Conference, ICAST 2021, Hybrid Event, Bahir Dar, Ethiopia, August 27--29, 2021, Proceedings, Part I},
        proceedings_a={ICAST},
        year={2022},
        month={1},
        keywords={Dualband antenna Genetic algorithm optimization Mm-wave antenna Microstrip antenna},
        doi={10.1007/978-3-030-93709-6_22}
    }
    
  • Arebu Dejen
    Jeevani Jayasinghe
    Murad Ridwan
    Jaume Anguera
    Year: 2022
    Optimization of Dualband Microstrip mm-Wave Antenna with Improved Directivity for Mobile Application Using Genetic Algorithm
    ICAST
    Springer
    DOI: 10.1007/978-3-030-93709-6_22
Arebu Dejen1, Jeevani Jayasinghe2, Murad Ridwan1, Jaume Anguera3
  • 1: School of Electrical and Computer Engineering
  • 2: Department of Electronics
  • 3: Technology and Intellectual Property Rights Dep’t

Abstract

The demand of high data rate requirement and spectrum scarcity in the current wireless communication drives the next generation communication technology to mm-wave frequencies. Researches in directivity improvement and multi-functionality of antenna are the determinant factor to provide high data rate and quality of services. This research discourses directivity optimization of a single microstrip rectangular patch antenna with dualband service for mm-wave mobile communication using binary-coded genetic algorithm. Optimization has been done by dividing the patch geometry into 100 small circular cells and assigning them as conducting and none conducting. The proposed antenna was iteratively simulated using a combination of HFSS and MATLAB, and obtained S11 < –10 dB bandwidth (BW) of 2.9% at 28.0 GHz with peak directivity 8.6dB and BW of 1% at 31.1 GHz with peak directivity 10.9dB.

Keywords
Dualband antenna Genetic algorithm optimization Mm-wave antenna Microstrip antenna
Published
2022-01-01
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-93709-6_22
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