毫米波频段5G NR规划:印尼工业区案例研究

Ghina Fahira, A. Hikmaturokhman, Achamd Rizal Danisya
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引用次数: 11

摘要

该研究预计将成为印度尼西亚5G新空口技术实施的初步规划,并在Pulogadung工业园区5平方公里的范围内讨论基于28 GHz频率覆盖面积的5G空口网络规划。链路预算基于基于LOS (Line of Sight)场景的户外到户外(O2O)模式,采用Urban Micro (UMi)作为3GPP TR 38.901标准的传播模型。采用Mentum Planet ver.7.2.1对规划结果进行了仿真,结果显示上行和下行的路径损耗分别为110.30 dB和109.80 dB;小区上行半径为214.37 m,下行半径为202.92 m;为准备良好的网络业务,上行场景需要43个站点,下行场景需要60个站点。模拟采用自动选址(ASP)来确定选址位置,而不考虑现有数据。上行仿真结果显示,SS-RSRP参数最小值为-110.96 dBm;最大值-68.66 dBm;平均值-99.54 dBm。下行仿真结果显示:SS-RSRP参数最小值为-110.96 dBm;最大值-68.66 dBm;平均值-98.82 dBm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G NR Planning at mmWave Frequency : Study Case in Indonesia Industrial Area
This research is expected to be an initial planning for 5G New Radio (NR) technology implementation in Indonesia and discusses 5G NR network planning based on coverage area at frequency 28 GHz in 5 km2 of Pulogadung industrial estate. Link budget was calculated based on outdoor-to-outdoor (O2O) with Line of Sight (LOS) scenario and Urban Micro (UMi) was used as propagation model standardized by 3GPP TR 38.901. The planning result was simulated using Mentum Planet ver.7.2.1 and resulted in path loss values 110.30 dB for uplink and 109.80 dB for downlink; the cell radius was 214.37 m for uplink and 202.92 m for downlink; it requires 43 sites for uplink scenario and 60 sites for downlink scenario to prepare a good network service. The simulation employed Automatic Site Placement (ASP) to determine site position regardless of the existing data. From the uplink simulation result, SS-RSRP parameter was displayed with minimum value -110.96 dBm; maximum value -68.66 dBm; and average value -99.54 dBm. The downlink simulation result shows SS-RSRP parameter with minimum value -110.96 dBm; maximum value -68.66 dBm; and average value -98.82 dBm.
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