Akbar, M. Rusydi (2026) Analisis Pengaruh Konfigurasi Sumber Daya Dan Skema Transmisi Terhadap Performansi Single User Throughput (SUT) Pada Layanan 5G NR. Other thesis, Institut Teknologi Sepuluh Nopember.
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Text (Tugas Akhir)
5048221022-Undergraduate_Thesis.pdf - Accepted Version Restricted to Repository staff only Download (4MB) | Request a copy |
Abstract
Teknologi 5G NR dikembangkan untuk memenuhi kebutuhan komunikasi data berkecepatan tinggi dengan kapasitas dan efisiensi spektrum yang lebih baik dibandingkan generasi sebelumnya. Salah satu parameter penting dalam mengevaluasi performansi jaringan 5G adalah Single User Throughput (SUT), yang dipengaruhi oleh berbagai parameter seperti bandwidth, SINR, downlink ratio, modulasi, code rate, dan jumlah layer MIMO. Dalam Tugas Akhir ini dilakukan analisis performansi SUT pada jaringan 5G NR menggunakan data hasil pengukuran lapangan dari tiga operator yaitu Telkomsel, IM3, dan XL-Smart di Kota Surabaya, dengan bantuan aplikasi G-NetTrack Pro dan SpeedTest. Data hasil pengukuran kemudian dipilih dan diolah untuk menghitung nilai Single User Throughput (SUT) arah downlink dengan berbagai skenario, seperti pengaruh jenis teknologi 5G yang digunakan, jumlah elemen antena MIMO dan kondisi lingkungan transmisi yang berbeda-beda. Dari hasil perhitungan SUT selanjutnya dihitung nilai efisiensi spektrum (bps/Hz) dan dikelompokkan berdasarkan klas layanan maksimal yang bisa diakses dengan modal nilai SUT yang diperoleh. Dari keseluruhan skenario perhitungan SUT arah downlink dari 3 operator 5G di Surabaya (Telkomsel, IM3 dan XL-Smart) dengan mengaplikasikan 3 jenis teknologi 5G (5G-Standar, 5G-Lanjutan dan 5G-Ekstrem), maka dapat disimpulkan bahwa secara keseluruhan performansi performansi terbaik dicapai oleh operator XL-Smart (241,869 Mbps) diikuti Telkomsel (232,518 Mbps) dan IM3 (121,497 Mbps), dengan efisiensi spektrum (SE) masing-masing sebesar 12,307 bps/Hz (XL-Smart), 11,63 bps/Hz (Telkomsel) dan 6,757 bps/Hz (IM3). Klasifikasi SUT gabungan menunjukkan layanan terbaik yang bisa diakses meliputi Cloud Video Reality 2K (44,443%), diikuti Video Streaming 4K 3D (28,889%), Industrial Control (18,87%) dan hanya sedikit yang bisa dipakai aplikasi Mobile Broadband (17,778%).
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5G NR technology was developed to meet the need for high-speed data communications with improved capacity and spectrum efficiency compared to previous generations. One important parameter in evaluating 5G network performance is Single User Throughput (SUT), which is influenced by various parameters such as bandwidth, SINR, downlink ratio, modulation, code rate, and the number of MIMO layers.
In this final project, SUT performance analysis is conducted on 5G NR networks using field measurement data from three operators: Telkomsel, IM3, and XL-Smart in Surabaya, using the G-NetTrack Pro and SpeedTest applications. The measurement data is then selected and processed to calculate the downlink Single User Throughput (SUT) value under various scenarios, such as the influence of the type of 5G technology used, the number of MIMO antenna elements, and different transmission environmental conditions. From the SUT calculation results, spectrum efficiency (bps/Hz) is calculated and grouped based on the maximum service class that can be accessed using the obtained SUT value.
From the overall downlink SUT calculation scenario of 3 5G operators in Surabaya (Telkomsel, IM3 and XL-Smart) by applying 3 types of 5G technology (5G-Standard, 5G-Advanced and 5G-Extreme), it can be concluded that overall the best performance was achieved by the XL-Smart operator (241.869 Mbps) followed by Telkomsel (232.518 Mbps) and IM3 (121.497 Mbps), with spectrum efficiency (SE) of 12.307 bps/Hz (XL-Smart), 11.63 bps/Hz (Telkomsel) and 6.757 bps/Hz (IM3), respectively. The combined SUT classification shows that the best accessible services include Cloud Video Reality 2K (44.443%), followed by 4K 3D Video Streaming (28.889%), Industrial Control (18.87%) and only a few can be used Mobile Broadband applications (17.778%).
| Item Type: | Thesis (Other) |
|---|---|
| Uncontrolled Keywords: | 5G NR, Single User Throughput, Bandwidth, MIMO, Code Rate |
| Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK5103.2 Wireless communication systems. Two way wireless communication |
| Divisions: | Faculty of Intelligent Electrical and Informatics Technology (ELECTICS) > Telecommunication Engineering > 20202-(S1) Undergraduate Thesis |
| Depositing User: | M. Rusydi Akbar |
| Date Deposited: | 28 Jul 2026 02:37 |
| Last Modified: | 28 Jul 2026 02:37 |
| URI: | http://repository.its.ac.id/id/eprint/137932 |
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