A Vision of 6G Wireless Systems: Applications, Trends, Technologies, and Open Research Problems
arXiv:1902.10265
Abstract
The ongoing deployment of 5G cellular systems is continuously exposing the inherent limitations of this system, compared to its original premise as an enabler for Internet of Everything applications. These 5G drawbacks are currently spurring worldwide activities focused on defining the next-generation 6G wireless system that can truly integrate far-reaching applications ranging from autonomous systems to extended reality and haptics. Despite recent 6G initiatives1, the fundamental architectural and performance components of the system remain largely undefined. In this paper, we present a holistic, forward-looking vision that defines the tenets of a 6G system. We opine that 6G will not be a mere exploration of more spectrum at high-frequency bands, but it will rather be a convergence of upcoming technological trends driven by exciting, underlying services. In this regard, we first identify the primary drivers of 6G systems, in terms of applications and accompanying technological trends. Then, we propose a new set of service classes and expose their target 6G performance requirements. We then identify the enabling technologies for the introduced 6G services and outline a comprehensive research agenda that leverages those technologies. We conclude by providing concrete recommendations for the roadmap toward 6G. Ultimately, the intent of this article is to serve as a basis for stimulating more out-of-the-box research around 6G.
This paper has been accepted by IEEE Network
Cited by in corpus (11)
- Optimized Age of Information Tail for Ultra-Reliable Low-Latency Communications in Vehicular Networks
- Next-generation Wireless Solutions for the Smart Factory, Smart Vehicles, the Smart Grid and Smart Cities
- Optimization of Rate Allocation and Power Control for Rate Splitting Multiple Access (RSMA)
- Sum-Rate Maximization of Uplink Rate Splitting Multiple Access (RSMA) Communication
- Energy Efficient UAV Communication with Energy Harvesting
- Power Efficient IRS-Assisted NOMA
- Joint User Association and Power Allocation in Heterogeneous Ultra Dense Network via Semi-Supervised Representation Learning
- Design of Non-orthogonal and Noncoherent Massive MIMO for Scalable URLLC Beyond 5G
- White Paper on Business of 6G
- Energy-Efficient Beamforming and Cooperative Jamming in IRS-Assisted MISO Networks
- Blockchain-enabled Resource Management and Sharing for 6G Communications