Analysis and Optimization of Telkomsel Coverage Signals for the London Sumatra Plantation Company
DOI:
https://doi.org/10.56778/rjslr.v1i3.148Keywords:
Drive Test, Rx Level, Rx Qual & Reorientasi AntenaAbstract
With the advancement of plantations in South Sumatra in particular and Indonesia in general. So, there is a lot of opening up of new plantation land, be it oil palm, rubber and other plantations. Therefore, Telkomsel is always at the forefront by adding new BTS (Base Transceiver Station). Telkomsel always provides comfort to its users to continue trying to maintain signal stability so that customers continue to experience satisfactory results. One of them is the London Sumatra Plantation Company, an oil palm plantation company located in Musi Banyuasin Regency. The checks in this research used the Drive test method using TEMS Investigation 11.0.1. At the beginning of checking the location, the BTS that covered the London Sumatra Group Plantation Company building was BinaKahuripan, a distance of ± 10KM, while apart from this BTS there was a BTS that was closer, namely SungaiKubu, ± 6KM. After analysis, the reason why the SungaiKubu BTS is not dominant is because the antenna direction is not pointing towards the London Sumatra Group location, which causes the dominant BTS to be BinaKahuripan. So, from the results of this analysis, a solution was produced, namely Reorienting the SungaiKubu BTS antenna from Directional. Previously 330º was changed to 355º as well as for mechanical & electrical from 2 & 3, changed to all 1. From the results of the antenna reorientation, the SungaiKubu BTS has become more dominant. Checks were carried out in 2 positions, namely Position 1 and Position 2. The results of the checks produced an average Rx Level value for Position 1 before the antenna reorientation was -94.4 dBm while after the antenna reorientation was -81 dBm. The average Rx Quality value before the antenna reorientation was 3.8 while after the antenna reorientation was 2. The results of checking the average Rx Level for Position 2 before the antenna reorientation was -89 dBm while after the antenna reorientation was -81 dBm. The average Rx Quality value before antenna reorientation was 4.9 while after antenna reorientation was 2.
References
Akhmad Sayuti. (2018). Analisis Kinerja Jaringan 4G Pada Cluster Palembang Inner Menggunakan Metode Drive Test Nemo Handy dan Nemo Analyze. Jurnal Sistem Informasi, UIN Raden Fatah Palembang, 4(1), 1–10. http://jurnal.radenfatah.ac.id/index.php/jusifo/article/view/2425
A. Sugiharto and I. Alfi. (20219). Komparasi Performa Jaringan Antara Penyedia Layanan Seluler 4G LTE Di Area Kota Yogyakarta,” Angkasa: Jurnal Ilmiah Bidang Teknologi, vol. 11, no. 1, p. 73. https://ejournals.itda.ac.id/index.php/angkasa/article/view/397
Blomeier, Stefan. 2006. “HSDPA Design Detail & System Engineering”, Germany: Incom GmbH.
Bostelmann, Gerr & Rudolf Zarits. 2005. “UMTS Design Detail & System Engineering”, Germany: Incom GmbH.
Dwi, Gunadi, Gunawan Wibisono, Uke Kurniawan Usman & Hantoro, “Konsep Teknologi Selular”, Informatika Bandung, Bandung, 2007.
D. Y. Haq. (2017). Optimalisasi dan Simulasi Jaringan 4G LTE di Area Universitas Muhammadiyah Yogyakarta,” Yogyakarta. http://repository.umy.ac.id/handle/123456789/10191
Firman Adi and Malik Muhammad Mutsuhito. (2017). Analisa Quality Drive Test Benchmarking menggunakan Software Nemo Analyze. Jurnal Informatika, AINET, 3(2) 67-76
I. P. D. K. Pramulia, P. K. Sudiarta, and G. Sukadarmika, (2015). Analisis Pengaruh Jarak Antara User Equipment Dengan eNodeB Terhadap Nilai RSRP (Reference Signal Received Power) Pada Teknologi LTE 900 MHz. Jurnal SPEKTRUM, vol. 2, no.2. https://ojs.unud.ac.id/index.php/spektrum/article/view/20039
Nurhasanah. (2017). Measurement of SINR (Signal Noise Interference Noise to Ratio) and RSRP (Reference Signal Received Power) on 4G LTE Area Surakarta,” Jurnal ICT Akademi Telkom Jakarta, vol. 8, no. 15. https://ejournal.akademitelkom.ac.id/index.php/ictjurnal/article/view/118
Praharasty, Anggit,” Analisis Kualitas Panggilan Pada Jaringan GSM Menggunakan Tems Investigation”, Universitas Diponegoro, Semarang, 2009 (http://eprints.undip.ac.id/25247/)
R. Efriyendro, Y. Rahayu. (2017). Analisa Perbandingan Kuat Sinyal 4G LTE Antara Operator Telkomsel dan XL AXIATA Berdasarkan Paramater Drive Test Menggunakan Software G-NetTrack Pro Di Area Jalan Protokol Panam. Jom FTEKNIK, vol. 4, no.2. https://jom.unri.ac.id/index.php/JOMFTEKNIK/article/view/16719
R. Yanuari P.K. Sudiarta N. Gunantara. (2015). ANALISA KUALITAS SINYAL JARINGAN GSM PADA MENARA ROOFTOP DENGAN MEMBANDINGKAN APLIKASI METODE DRIVE TEST ANTARA TEMS INVESTIGATION 8.0.3 DENGAN G-NETTRACK PRO. Jurnal SPEKTRUM, Unud, 2(4),39-45. https://ojs.unud.ac.id/index.php/spektrum/article/view/20078
Riyanto, “Sistem Informasi Geografis Berbasis Mobile”, Gava Media, Yogyajarta, 2010.
Shoji, Shigeki dan Suhana, “Buku Pegangan Teknik Telekomunikasi”, PT. Pradnya Paramita, Jakarta, 2004.
Sunomo, “Pengantar Sistem Komunikasi Nirkabel”, Grasindo, Jakarta, 2004. Kiswanto, “Analisa Kerja Jaringan Operator 3G (WCDMA – UMTS) Menggunakan Metode Drive Test”, Politeknik Negeri Surabaya, Surabaya, 2010. 2 agustus 2012
Rizkia, Sheilla, “Model Propagasi Jaringan Komunikasi Selular”,18 Oktober 2012 (http://www.scribd.com/doc/39564616/III-Revisi-Propagasi)
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 RADINKA JOURNAL OF SCIENCE AND SYSTEMATIC LITERATURE REVIEW

This work is licensed under a Creative Commons Attribution 4.0 International License.
<a rel="license" href="http://creativecommons.org/licenses/by/4.0/"><img alt="Creative Commons License" style="border-width:0" src="https://i.creativecommons.org/l/by/4.0/88x31.png" /></a><br />This work is licensed under a <a rel="license" href="http://creativecommons.org/licenses/by/4.0/">Creative Commons Attribution 4.0 International License</a>.



