Skip to content
Open access

Performance analysis of 5G NR network planning at 2300 MHz in Indonesia: A comparative study of LoS and NLoS scenarios

Aug 2026 · International Journal of Electrical and Computer Engineering (IJECE) · Vol 16, pp. 1944 · 0 citations

TL;DR

The findings indicate that improved KPI performance and coverage uniformity in NLoS environments can be achieved through substantially increased infrastructure density, highlighting the trade-off between network quality, deployment complexity, and infrastructure cost in urban 5G NR planning.

Abstract

This study presents a systematic comparative analysis of 5G new radio (NR) network planning at 2300 MHz for Bandung City, Indonesia, evaluating line-of-sight (LoS) and non-line-of-sight (NLoS) propagation scenarios to determine infrastructure requirements and performance characteristics for urban deployment. Employing the 3GPP TR 38.901 Urban Macro propagation model, link-budget analysis, and Atoll-based simulation for a 167.31 km² urban area, the study evaluates coverage performance under projected 2025 deployment conditions. The results reveal significant differences between propagation scenarios. LoS conditions require 45 gNodeBs for uplink coverage, achieving a synchronization signal reference signal received power (SS-RSRP) of -94.63 dBm and a synchronization signal signal-to-interference-plus-noise ratio (SS-SINR) of 10.87 dB, both categorized as “Good.” In contrast, the NLoS scenario requires substantially denser deployment with 635 gNodeBs, resulting in improved SS-RSRP performance of -71.98 dBm (“Excellent”) and SS-SINR of 12.32 dB (“Good”), along with more uniform coverage distribution. The findings indicate that improved KPI performance and coverage uniformity in NLoS environments can be achieved through substantially increased infrastructure density, highlighting the trade-off between network quality, deployment complexity, and infrastructure cost in urban 5G NR planning.

Read PDF

Similar papers

Open access Aug 2026

Impact of Frequency Bands on 4G LTE Coverage Planning: A Comparative Study in Padang City

The rapid growth of mobile data services has intensified demand for reliable 4G Long Term Evolution (LTE) coverage in urban areas with heterogeneous terrain. This study investigates the coverage performance of 4G LTE networks across four frequency bands—900 MHz, 1800 MHz, 2100 MHz, and 2300 MHz deployed in four sub-dis...

Dipal Irpandi, Siska Aulia, Zurnawita · 0 citations
Preprint Sep 2026

Performance Analysis of LoRa and LR-FHSS in 3GPP LEO Satellite and HAPS Channel Scenarios for Remote Area IoT Coverage

In this paper, we analyze and compare the performance of LoRa and LR-FHSS in a remote area Internet-of-Things (IoT) connectivity scenario using a low-earth orbit (LEO) satellites and high-altitude platform station (HAPS)-mounted gateway. We conducted a link budget analysis to evaluate communication stability to assess...

Jean Michel de Souza Sant'Ana, Nurul Huda Mahmood, V. P. Borin · 0 citations
Preprint Sep 2026

Beyond RSRP Coverage: UAV Serviceability in Interference-Limited Urban 5G NR Networks

Reference signal received power (RSRP) is commonly used to assess 5G cellular coverage, but it may substantially overestimate the connectivity available to cellular-connected unmanned aerial vehicles (UAVs) under strong inter-cell interference (ICI). As a UAV ascends, reduced blockage can strengthen the serving signal,...

M. Hossen, V. K. Shah, I. Guvenc · 0 citations
Review Open access 2026

A Survey and Quantitative Analysis of Network Architectures for Future 6G Services in Rural and Underserved Areas

A comprehensive survey and quantitative analysis of network architectures for enabling future sixth-generation (6G) services in rural and underserved regions and identifies emerging technologies, including direct-to-device non-terrestrial access, programmable radio environments, and intelligent RAN control that are exp...

Souradeep Deb, Nishith D. Tripathi, Jeffrey H. Reed · 0 citations
Open access 2026

Propagation Analysis of 6G Millimeter-Wave Communication in Tropical Urban Environments Using NYUSIM

—Mobile communication technology is evolving toward the Sixth Generation (6G), which is designed to deliver ultra-high data rates and support advanced applications including the Internet of Everything (IoE), virtual reality, and artificial intelligence. Realizing such performance demands millimeter-wave (mmWave) and ea...

Ami Lia Rizki · 0 citations
Open access Aug 2026

A Hybrid Stacked Learning Framework for Accurate Path Loss, LOS Probability, and Coverage Prediction in 28 GHz 5G mmWave Networks

Purpose: The aim of the research is to design a consistent and dynamic mechanism for estimating key performance indicators of millimetre wave wireless communication systems such as path loss, probability of line-of-sight (LOS) channels, maximum coverage area, and spectral efficiency.  In 28 GHz mmWave networks with res...

A. Madankar, A. Khobragade · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.