White Paper on Broadband Connectivity in 6G
arXiv:2004.14247
Abstract
This white paper explores the road to implementing broadband connectivity in future 6G wireless systems. Different categories of use cases are considered, from extreme capacity with peak data rates up to 1 Tbps, to raising the typical data rates by orders-of-magnitude, to support broadband connectivity at railway speeds up to 1000 km/h. To achieve these goals, not only the terrestrial networks will be evolved but they will also be integrated with satellite networks, all facilitating autonomous systems and various interconnected structures. We believe that several categories of enablers at the infrastructure, spectrum, and protocol/ algorithmic levels are required to realize the intended broadband connectivity goals in 6G. At the infrastructure level, we consider ultra-massive MIMO technology (possibly implemented using holographic radio), intelligent reflecting surfaces, user-centric and scalable cell-free networking, integrated access and backhaul, and integrated space and terrestrial networks. At the spectrum level, the network must seamlessly utilize sub-6 GHz bands for coverage and spatial multiplexing of many devices, while higher bands will be used for pushing the peak rates of point-to-point links. The latter path will lead to THz communications complemented by visible light communications in specific scenarios. At the protocol/algorithmic level, the enablers include improved coding, modulation, and waveforms to achieve lower latencies, higher reliability, and reduced complexity. Different options will be needed to optimally support different use cases. The resource efficiency can be further improved by using various combinations of full-duplex radios, interference management based on rate-splitting, machine-learning-based optimization, coded caching, and broadcasting.
46 pages, 13 figures
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Cited by in corpus (14)
- Security and privacy for 6G: A survey on prospective technologies and challenges
- Intelligent Reflecting Surface Aided Wireless Communications: A Tutorial
- Increasing Energy Efficiency of Massive-MIMO Network via Base Stations Switching using Reinforcement Learning and Radio Environment Maps
- A Comprehensive Survey of 6G Wireless Communications
- SimRIS Channel Simulator for Reconfigurable Intelligent Surface-Empowered Communication Systems
- Survey on Aerial Radio Access Networks: Toward a Comprehensive 6G Access Infrastructure
- Joint Location and Communication Study for Intelligent Reflecting Surface Aided Wireless Communication System
- IRS-Assisted Wireless Powered NOMA: Do We Really Need Different Phase Shifts in DL and UL?
- Intelligent Reflecting Surface Aided Wireless Energy and Information Transmission: An Overview
- On-Demand Networking for Ubiquitous Connectivity and Network Resilience: A Network-in-a-Box Solution
- Metamaterialy, konfigurowalne matryce antenowe i komunikacja holograficzna. Wstepna analiza nowej koncepcji bezprzewodowej transmisji danych
- Joint Minimum DL-UL Rate Maximization for Cell-Free Massive MIMO
- A Low-Subpacketization High-Performance MIMO Coded Caching Scheme
- Coverage Probability and Ergodic Capacity of Intelligent Reflecting Surface-Enhanced Communication Systems