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5G New Radio Techniques for 3D Networks in Connection-critical Scenarios

2024 IEEE Aerospace Conference(2024)

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摘要
The recent natural disasters, such as the Earthquake in Morocco in September 2023, have demonstrated one more time the necessity of immediately restoring lost connectivity to rescue victims living in rural villages that are far from urban areas. In such a framework, three-dimensional (3D) Non-Terrestrial Networks (NTNs) are expected to provide continuous wireless coverage at low Average Revenue Per User (ARPU), in disaster-hit and hotspot areas with the help of 5G New Radio (NR). This paper investigates the use of Unmanned Aerial Vehicles (UAV) as transparent aerial networks that perform signal amplification and frequency conversion between a satellite-based 5G network and a User Equipment (UE) using five different frequency bands (i.e., S-band, C-band, X-band, Ku-band, and Ka-band) supporting the satellite communication. The applications of the proposed technology concern connection-critical scenarios like emergency rescue and digital divide mitigation. Results show that 180Mbps to 4.85Gbps throughput can be achieved on the satellite-to-UAV link. Simulated transmission delay and average session time are also evaluated considering a delay budget of 2ms. The related results discussion confirms the viability and effectiveness of the proposed approach in the concerned case of study.
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关键词
3D Network,Time Delay,Frequency Band,Seismic,Unmanned Aerial Vehicles,Digital Divide,Session Time,Transmission Delay,Frequency Conversion,Satellite Communication,User Equipment,Higher Frequency,Remote Areas,Computational Burden,Singular Value Decomposition,Carrier Frequency,Elevation Angle,Earth Orbit,CubeSat,Network Throughput,Low Earth Orbit,Virtual Network Functions,5G New Radio,Ultra-reliable Low-latency Communications,Low-density Parity-check,Post-disaster Recovery,Slant Range,Packet Loss
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