Analysis of 5G Network Performance in Line-of-Sight Conditions Using 3.3 GHz Frequency at Sawahan, Surabaya

Authors

  • Solichah Larasati Larasati Institut Teknologi Telkom Purwokerto
  • Khoirun Ni'amah STT Telkom Purwokerto
  • Zein Hanni Pradana STT Telkom Purwokerto

DOI:

https://doi.org/10.56873/jitu.5.2.4892

Keywords:

Atoll 3.4, Coverage area, gNodeB Line-of-sight, SS-RSRP, SS-SINR.

Abstract

This research is expected to be the beginning of the initial design for the implementation of 5G technology in Indonesia especially in Area Sawahan, Surabaya based on the coverage area with the frequency of 3.3 GHz. Performance analysis with line-of-sight (LOS) conditions using propagation model urban macro (uMa) according to the recommendation of 3GPP (3rd Generation Partnership Project) TR 38.901. This research based on four scenarios,  outdoor-to-outdoor (O2O) for downlink and uplink, and outdoor-to-indoor (O2I) scenario for uplink and downlink. Performance of 5G network simulated using Atoll 3.4 and shown the pathloss values ​​of 105.405 dB for uplink and 101.405 dB for downlink. The performance results in the O2O scenario for the uplink direction require 5 gNodeB and 8 gNodeB in the downlink direction. In the O2I scenario, the uplink direction requires as many as 6 gNodeB and the downlink direction as much as 9 gNodeB. The simulation parameters analyzed in this research are based on the signal strength received by the user (SS-RSRP) and signal quality (SS-SINR). The best result of SS-RSRP in the O2I uplink scenario is -89 dBm and the SS-SINR parameter in the O2O scenario is 0.93 dBm. These results show that in the city of Sawahan a 5G system can be applied.

 

References

U. Surtia Zulpratita, “KUNCI TEKNOLOGI 5G,” Jurnal Ilmiah Teknologi Informasi Terapan, vol. IV, no. 2, pp. 166–173, 2018.

P. S. Daya et al., Studi Lanjutan 5G Indonesia 2018 Spektrum Outlook dan Use Case untuk Layanan 5G Indonesia. 2018. [Online]. Available: http://balitbangsdm.kominfo.go.id

T. Curry and R. Abbas, “5G Coverage, Prediction, and Trial Measurements,” Mar. 2020, doi: 10.48550/arXiv.2003.09574.

TSGR, “TR 138 901 - V14.0.0 - 5G; Study on channel model for frequencies from 0.5 to 100 GHz (3GPP TR 38.901 version 14.0.0 Release 14),” 2017. [Online]. Available: https://portal.etsi.org/TB/ETSIDeliverableStatus.aspx

“Update on 5G spectrum in the UK,” 2017. Accessed: Nov. 01, 2022. [Online]. Available: https://www.ofcom.org.uk/__data/assets/pdf_file/0021/97023/5G-update-08022017.pdf

M. Niama Dwi Susila, N. Gunantara, and P. Korespondensi, “Perencanaan Coverage Jaringan 5G Berdasarkan Propagasi Rugi Rugi Lintasan dan Shadowing,” Jurnal Teknologi Informasi dan Ilmu Komputer (JTIIK), vol. 8, no. 2, pp. 283–292, 2021, doi: 10.25126/jtiik.202184485.

R. Maulana, U. Usman Kurniawan, and I. Ginting, “Analisis Performansi 5G NR dengan Skema Arsitektur NSA Opsi 3 pada Frekuensi 28 GHz,” e-Proceeding of Engineering, vol. 6, no. 2, pp. 3420–3431, 2019.

P. Rahmawati, M. I. Nashiruddin, and M. A. Nugraha, “Capacity and Coverage Analysis of 5G NR Mobile Network Deployment for Indonesia’s Urban Market,” in 2021 IEEE International Conference on Industry 4.0, Artificial Intelligence, and Communications Technology (IAICT), Jul. 2021, pp. 90–96. doi: 10.1109/IAICT52856.2021.9532574.

P. Rahmawati, M. I. Nashiruddin, A. T. Hanuranto, and A. Akhmad, “Assessing 3.5 GHz Frequency for 5G New Radio (NR) Implementation in Indonesia’s Urban Area,” in 2022 IEEE 12th Annual Computing and Communication Workshop and Conference (CCWC), Jan. 2022, pp. 0876–0882. doi: 10.1109/CCWC54503.2022.9720903.

TSGR, “TS 138 104 - V15.5.0 - 5G; NR; Base Station (BS) radio transmission and reception (3GPP TS 38.104 version 15.5.0 Release 15),” 2019. [Online]. Available: https://portal.etsi.org/TB/ETSIDeliverableStatus.aspx

G. Fahira, A. Hikmaturokhman, and A. Rizal Danisya, “5G NR Planning at mmWave Frequency : Study Case in Indonesia Industrial Area,” in 2020 2nd International Conference on Industrial Electrical and Electronics (ICIEE), Oct. 2020, pp. 205–210. doi: 10.1109/ICIEE49813.2020.9277451.

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Published

2022-12-28

How to Cite

Analysis of 5G Network Performance in Line-of-Sight Conditions Using 3.3 GHz Frequency at Sawahan, Surabaya. (2022). Journal of Information Technology and Its Utilization, 5(2), 31-40. https://doi.org/10.56873/jitu.5.2.4892