AMC Femtocell untuk Komunikasi Drone Frekuensi 5 GHz menggunakan AWGN Metode Selection Combining pada Lingkungan Bergedung

  • Andrita Ceriana Eska Teknik Elektro Fakultas Teknik Universitas Jember

Abstract

Perkembangan jaringan komunikasi seluler semakin meningkat. Penelitian ini melakukan analisa tentang jaringan komunikasi yang digunakan untuk komunikasi drone disekitar  gedung-gedung dengan cakupan femtocell. Frekuensi komunikasi yang digunakan adalah 5 GHz. AMC (Adaptive Modulation and Coding) yang digunakan memanfaatkan MCS (Modulation and Code Scheme) terdiri dari QPSK, 16QAM, dan 64QAM. Hasil penelitian menunjukkan dominasi persentase 64 QAM dengan coderate 4/5 pada SC sebesar 91%.

References

[1] G. Bartoli, R. Fantacci, D. Marabissi, and M. Pucci, “Resource Allocation Schemes for Cognitive LTE-A Femto-cells using Zero Forcing Beamforming and Users Selection,” Globecom Wireless Communications Symposium, 2014.
[2] A.C. Eska, “Propagation of Mobile Communication with Tree Obstacle used OFDM-QAM at 10 GHz,” INFOTEL, vol. 11, no. 3, pp. 88-92, Sep. 2019.
[3] A.C. Eska, “The Communication System of Building from Outdoor to Indoor with AMC at 10 GHz,” INFOTEL, vol. 12, no. 1, pp. 13-17, Apr. 2020.
[4] G. R. MacCartney and T. S. Rappaport, "Study on 3GPP rural macrocell path loss models for millimeter wave wireless communications," 2017.
[5] A.C.Eska, “Doppler Shift Effect at The Communication Systems with 10 GHz around Building,” INFOTEL, vol. 12, no. 4, pp. 129-133, Nov. 2020.
[6] A.C.Eska, “Pengaruh Code Rate untuk Komunikasi RBS Femtocell Frekuensi 47 GHz pada Tiang Lampu Jalan,” INFOTEL, vol. 9, no. 4, pp. 412-415, Nov. 2017.
[7] G. R. MacCartney, and T. S. Rappaport, “Millimeter-Wave Base Station Diversity for 5G Coordinated Multipoint (CoMP) Applications,” IEEE Transactions on Wireless Communications, vol.18, no.7, 2019.
[8] A.C.Eska, “Propagasi Komunikasi Radio Base Station Femtocell pada Tiang Lampu Jalan Frekuensi 10 GHz,” INFOTEL, vol. 9, no. 4, pp. 382-386, Nov. 2017.
[9] A.C. Eska, “Determination of MS Location through Building Using AoA Method of Frequency 47 GHz,” IJITEE, vol.1, no.3, 2017.
[10] A.C. Eska, “Multipath Effects in Building Environment Toward Bandwidth Enhancement for Mobile Communication of 47 GHz Frequency,” INFOTEL, vol. 10, no. 1, pp. 39-44, Feb. 2018.
[11] A.C. Eska, “Adaptive Modulation and Coding around Building Environment for Mobile Station Communication at The Train,” EMITTER, vol.6, no.2, 2018.
[12] A.C. Eska, and G. Hendrantoro, “Preliminary study on the effect of building-induced diffraction upon millimeter wave mobile communications systems with macrodiversity,” TSSA, 2012.
[13] A.C.Eska,“Komunikasi Bergerak Frekuensi 2.3 GHz Melewati Pepohonan Menggunakan Metode Giovanelli Knife Edge,” INFOTEL, vol. 8, no. 1, pp. 94-99, May 2016.
[14] A.C.Eska, “Cellular Communication Propagation at Drone around Building Environment with Single Knife Edge at 10 GHz,” INFOTEL, vol. 13, no. 1, pp. 25-30, Feb. 2021.
[15] J. S. Seybold, Introduction to RF Propagation., John Wiley & Sons (New Jersey), 2005.
[16] ITU-R Radio Communication Sector of ITU (Attenuation by atmospheric gases) ITU-R P.676-10. Electronic Publication (Geneva), 2013.
[17] O. Werther, LTE System Specifications and their Impact on RF & Base Band Circuits. Rohde & Schwarz, 2013.
Published
2022-12-03
How to Cite
ESKA, Andrita Ceriana. AMC Femtocell untuk Komunikasi Drone Frekuensi 5 GHz menggunakan AWGN Metode Selection Combining pada Lingkungan Bergedung. Jurnal Arus Elektro Indonesia, [S.l.], v. 8, n. 3, p. 82-85, dec. 2022. ISSN 2443-2318. Available at: <https://jurnal.unej.ac.id/index.php/E-JAEI/article/view/35045>. Date accessed: 25 apr. 2024. doi: https://doi.org/10.19184/jaei.v8i3.35045.
Section
Articles