Abstract:
Unmanned aerial vehicles (UAVs) have found widespread commercial, civilian, and military applications. Wireless communication has always been one of the core technologies...Show MoreMetadata
Abstract:
Unmanned aerial vehicles (UAVs) have found widespread commercial, civilian, and military applications. Wireless communication has always been one of the core technologies for UAV. However, the communication capacity is becoming a bottleneck for UAV to support more challenging application scenarios. The heavily-occupied sub-6 GHz frequency band is not sufficient to meet the ultra high-data-traffic requirements. The utilization of the millimeter-wave (mmWave) frequency bands is a promising direction for UAV communications, where large antenna arrays can be packed in a small area on the UAV to perform three-dimensional (3D) beamforming. On the other hand, UAVs serving as aerial access points or relays can significantly enhance the coverage and quality of service of the terrestrial mmWave cellular networks. In this paper, we provide a comprehensive survey on mmWave beamforming enabled UAV communications and networking. The technical potential of and challenges for mmWave-UAV communications are presented first. Then, we provide an overview on relevant mmWave antenna structures and channel modeling. Subsequently, the technologies and solutions for UAV-connected mmWave cellular networks and mmWave-UAV ad hoc networks are reviewed, respectively. Finally, we present open issues and promising directions for future research in mmWave beamforming enabled UAV communications and networking.
Published in: IEEE Communications Surveys & Tutorials ( Volume: 24, Issue: 1, Firstquarter 2022)
Funding Agency:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Unmanned Aerial Vehicles ,
- Unmanned Aerial Vehicles Communication ,
- Unmanned Aerial Vehicles Networks ,
- Frequency Band ,
- Cellular Networks ,
- Large Array ,
- Antenna Array ,
- Channel Model ,
- GHz Frequency ,
- Ad Hoc Networks ,
- Antenna Structure ,
- Mm-wave Frequencies ,
- Terrestrial Networks ,
- Sub-6 GHz ,
- GHz Frequency Band ,
- Large Antenna Arrays ,
- Communication Network ,
- Direct Transmission ,
- Directional Antenna ,
- User Equipment ,
- Analog Beamforming ,
- Intelligent Reflecting Surface ,
- mmWave Communication ,
- Digital Beamforming ,
- Passive Beamforming ,
- Radio Frequency Chains ,
- mmWave Channel ,
- GHz Band ,
- Hybrid Beamforming ,
- Multiple Beams
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Unmanned Aerial Vehicles ,
- Unmanned Aerial Vehicles Communication ,
- Unmanned Aerial Vehicles Networks ,
- Frequency Band ,
- Cellular Networks ,
- Large Array ,
- Antenna Array ,
- Channel Model ,
- GHz Frequency ,
- Ad Hoc Networks ,
- Antenna Structure ,
- Mm-wave Frequencies ,
- Terrestrial Networks ,
- Sub-6 GHz ,
- GHz Frequency Band ,
- Large Antenna Arrays ,
- Communication Network ,
- Direct Transmission ,
- Directional Antenna ,
- User Equipment ,
- Analog Beamforming ,
- Intelligent Reflecting Surface ,
- mmWave Communication ,
- Digital Beamforming ,
- Passive Beamforming ,
- Radio Frequency Chains ,
- mmWave Channel ,
- GHz Band ,
- Hybrid Beamforming ,
- Multiple Beams
- Author Keywords