Hybrid Radio over Fiber with Radio over Free Space Optic for 5G Fronthaul Network Implementation in Urban Areas

Nabila Syadzwina Effendi, Yus Natali, Catur Apriono
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Abstract

Optical fiber can meet the demand for fronthaul on 5G networks that offer high bandwidth, large capacity, high data rate and is free from electromagnetic interference. However, deploying infrastructure faces issues like permits and high costs. Hybrid Radio over Fiber (RoF) technology with Radio over Free Space Optic (RoFSO) can be a solution in urban areas, where the installation requires high costs. This research investigates a hybrid RoF-RoFSO scheme at a frequency of mmWave 26 GHz by considering atmospheric attenuation values arising from meteorological effects, such as rain, smog, and dust, using Optisystem. This research considers QPSK, 16-QAM, and 64-QAM modulation schemes, distance variations on the FSO and the meteorological data from the Indonesian Meteorology, Climatology and Geophysics Agency (BMKG) from March 2022 to May 2022. The results show that attenuation due to high rainfall is the main cause of signal quality degradation and limits the transmission distance on the FSO link. The maximum distance is 600 m using the QPSK and 16-QAM modulation schemes, while for the 64-QAM modulation scheme, the maximum transmission distance is 500 m. Meanwhile, damping values caused by foggy and dusty conditions can reach distances of up to 1000 m for the three modulation schemes.
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在城市地区实现5G前传网络的混合光纤无线与自由空间光无线
光纤可以满足5G网络高带宽、大容量、高数据速率、无电磁干扰的前传需求。然而,部署基础设施面临着许可和高成本等问题。混合光纤无线通信(RoF)技术与自由空间光纤无线通信(RoFSO)技术可以成为城市地区安装成本高的解决方案。本文研究了毫米波26 GHz频率下的混合RoF-RoFSO方案,考虑了降雨、烟雾和灰尘等气象影响引起的大气衰减值。本研究考虑了QPSK、16-QAM和64-QAM调制方案、FSO的距离变化以及印度尼西亚气象、气候和地球物理局(BMKG) 2022年3月至2022年5月的气象数据。结果表明,强降雨引起的衰减是信号质量下降的主要原因,并限制了FSO链路上的传输距离。使用QPSK和16-QAM调制方案时,最大传输距离为600 m,而使用64-QAM调制方案时,最大传输距离为500 m。同时,对于三种调制方案,由雾和灰尘条件引起的阻尼值可以达到高达1000米的距离。
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审稿时长
24 weeks
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