Peningkatan Koefisien Refleksi Antena Mikrostrip 28 GHz dengan Slit
Improved Reflection Coefficient of 28 GHz Microstrip Antenna with Slit
DOI:
https://doi.org/10.33019/jurnalecotipe.v9i1.2894Keywords:
5G, Microstrip Antenna, Reflection Coefficient, SlitAbstract
5G communication technology requires antennas that have high performance. Microstrip antenna is one of the most widely used antennas in telecommunications because of its light mass, small dimensions and easy fabrication. This study designed a rectangular microstrip patch antenna with miniaturization and slit at a working frequency of 28 GHz. The use of slits on the patch can improve the reflection coefficient of 39.3%.
Downloads
References
A. F. S. Admaja, “Kajian Awal 5G Indonesia (5G Indonesia Early Preview),” Bul. Pos dan Telekomun., vol. 13, no. 2, p. 97, 2015, doi: 10.17933/bpostel.2015.130201.
R. Przesmycki, M. Bugaj, and L. Nowosielski, “Broadband microstrip antenna for 5g wireless systems operating at 28 ghz,” Electron., vol. 10, no. 1, pp. 1–19, 2021, doi: 10.3390/electronics10010001.
Dinas Kominfo, Studi Lanjutan 5G Indonesia 2018 Spektrum Outlook dan Use Case untuk Layanan 5G Indonesia. 2018.
Dinas Kominfo, “Kajian Lanjutan 5G Indonesia,” Puslitbang Sumber Daya, Perangkat, dan Penyelenggaraan Pos dan Inform. Badan Penelit. dan Pengemb. Sumber Daya Mns. Kementeri. Komun. dan Inform., p. iii, 2016.
A. Hikmaturokhman, K. Ramli, and M. Suryanegara, “Spectrum Considerations for 5G in Indonesia,” Proceeding - 2018 Int. Conf. ICT Rural Dev. Rural Dev. through ICT Concept, Des. Implic. IC-ICTRuDEv 2018, pp. 23–28, 2018, doi: 10.1109/ICICTR.2018.8706874.
V. A. Sankar Ponnapalli, K. D. Reddy, and S. Aqeel, “Parametric Study and Analysis of Microstrip Patch Antenna with Multiple Slit Positions,” Carpathian J. Electron. Comput. Eng., vol. 13, no. 1, pp. 1–4, 2020, doi: 10.2478/cjece-2020-0001.
M.Zulfadli, I. Surjati, and Gunawan Tjahjadi, “Perancangan Antena Mikrostrip Patch Segiempat Peripheral Slit Menggunakan Metode Array 1x4 Untuk Aplikasi Radar Maritim Frekuensi 3,2 GHZ,” E - ISSN, J. Kaji. Tek. elektro, vol. 2014, no. April, p. 2014, 2014.
A. Anindito, A. Putranto, I. Surjati, S. Alam, L. Sari, and R. Vaswani, “Desain Antena Mikrostrip Array 2x1 Elemen dengan Teknik Inset dan Slit untuk Sistem Komunikasi 5G,” J. Telemat., vol. 16, no. 1, pp. 18–24, 2021.
S. Alam, “Antena Mikrostrip Segitiga Dengan Parasitic Untuk Aplikasi Wireless Fidelity,” Ejournal Kaji. Tek. Elektro, vol. 2, no. 1, pp. 25–37, 2017.
I. Surjati, Antena Mikrostrip : konsep dan aplikasinya. Jakarta: Universitas Trisakti, 2010.
A. Pandey, Practical Microstrip and Printed Antenna Design. Boston, London: Artech House, 2019.
R. B. Putra, S. Alam, and I. Surjati, “Perancangan Antena Mikrostrip Segiempat Peripheral Slit untuk Aplikasi 2,4Ghz dengan Metode Pencatuan Proximity Coupled,” J. Nas. Tek. Elektro, vol. 7, no. 1, p. 38, 2018, doi: 10.25077/jnte.v7n1.520.2018.
C. A. Balanis, Antenna Theory : Analysis and Design. Jhon Willy and Sons, 1997.
S. Alam and I. Kholis, “Perancangan Antena Mikrostrip Dengan Peripheral Slits Untuk Aplikasi Tv Digital the Design of Microstrip Antenna With Peripheral Slits for Digital Tv Application,” J. Tek. dan Ilmu Komput., pp. 129–140, 2016.
F. W. Ardianto, S. Renaldy, F. F. Lanang, and T. Yunita, “Desain Antena Mikrostrip Rectangular Patch Array 1x2 dengan U-Slot Frekuensi 28 GHz,” ELKOMIKA J. Tek. Energi Elektr. Tek. Telekomun. Tek. Elektron., vol. 7, no. 1, p. 43, 2019, doi: 10.26760/elkomika.v7i1.43.
M. Darsono and A. R. Wijaya, “Perancangan Antena Planar Frekuensi 28 Ghz Untuk Komunikasi Wireless Pada Teknologi 5G,” TEKTRIKA - J. Penelit. dan Pengemb. Telekomun. Kendali, Komputer, Elektr. dan Elektron., vol. 5, no. 2, p. 49, 2021, doi: 10.25124/tektrika.v5i2.3992.
I. R. Mustofa and Y. Rahayu, “Perancangan Antena Luar Ruangan (Outdoor) Mikrostrip Mimo Rectangular Patch 28 Ghz Untuk Jaringan Komunikasi Nirkabel 5G,” Jom FKTEKNIK - J. Online Mhs. Bid. Tek. dan Sains, vol. 4, no. 2, pp. 1–23, 2017.
Downloads
Published
Issue
Section
License
Copyright in each article is the property of the author.
- The author acknowledges that the Jurnal Ecotipe (Electronic, Control, Telecommunication, Information, and Power Engineering) has the right to publish for the first time with a Creative Commons Attribution 4.0 International License.
- The author can enter the writing separately, regulate the non-exculsive distribution of manuscripts that have been published in this journal into other versions (for example: sent to the author's institution respository, publication into books, etc.), by acknowledging that the manuscript was first published in the Jurnal Ecotipe (Electronic, Control, Telecommunication, Information, and Power Engineering);











