Empowering the 6G Cellular Architecture with Open RAN
arXiv:2312.02746 · doi:10.1109/JSAC.2023.3334610
Abstract
Innovation and standardization in 5G have brought advancements to every facet of the cellular architecture. This ranges from the introduction of new frequency bands and signaling technologies for the radio access network (RAN), to a core network underpinned by micro-services and network function virtualization (NFV). However, like any emerging technology, the pace of real-world deployments does not instantly match the pace of innovation. To address this discrepancy, one of the key aspects under continuous development is the RAN with the aim of making it more open, adaptive, functional, and easy to manage. In this paper, we highlight the transformative potential of embracing novel cellular architectures by transitioning from conventional systems to the progressive principles of Open RAN. This promises to make 6G networks more agile, cost-effective, energy-efficient, and resilient. It opens up a plethora of novel use cases, ranging from ubiquitous support for autonomous devices to cost-effective expansions in regions previously underserved. The principles of Open RAN encompass: (i) a disaggregated architecture with modular and standardized interfaces; (ii) cloudification, programmability and orchestration; and (iii) AI-enabled data-centric closed-loop control and automation. We first discuss the transformative role Open RAN principles have played in the 5G era. Then, we adopt a system-level approach and describe how these Open RAN principles will support 6G RAN and architecture innovation. We qualitatively discuss potential performance gains that Open RAN principles yield for specific 6G use cases. For each principle, we outline the steps that research, development and standardization communities ought to take to make Open RAN principles central to next-generation cellular network designs.
This paper is part of the IEEE JSAC SI on Open RAN. Please cite as: M. Polese, M. Dohler, F. Dressler, M. Erol-Kantarci, R. Jana, R. Knopp, T. Melodia, "Empowering the 6G Cellular Architecture with Open RAN," in IEEE Journal on Selected Areas in Communications, doi: 10.1109/JSAC.2023.3334610
References in corpus (14)
- Non-Terrestrial Networks in the 6G Era: Challenges and Opportunities
- Open, Programmable, and Virtualized 5G Networks: State-of-the-Art and the Road Ahead
- Toward End-to-End, Full-Stack 6G Terahertz Networks
- AI-enabled Future Wireless Networks: Challenges, Opportunities and Open Issues
- Adversarial Self-Supervised Contrastive Learning
- A Look Inside 5G Standards to Support Time Synchronization for Smart Manufacturing
- Reinforcement Learning Based Dynamic Function Splitting in Disaggregated Green Open RANs
- V-Edge: Virtual Edge Computing as an Enabler for Novel Microservices and Cooperative Computing
- NeutRAN: An Open RAN Neutral Host Architecture for Zero-Touch RAN and Spectrum Sharing
- Signaling Storm Detection in IIoT Network based on the Open RAN Architecture
- SEM-O-RAN: Semantic and Flexible O-RAN Slicing for NextG Edge-Assisted Mobile Systems
- Evaluating the Security of Open Radio Access Networks
- Advancing O-RAN to Facilitate Intelligence in V2X
- Federated Deep Reinforcement Learning for Resource Allocation in O-RAN Slicing
Cited by in corpus (5)
- A Comprehensive Tutorial and Survey of O-RAN: Exploring Slicing-aware Architecture, Deployment Options, Use Cases, and Challenges
- Managing O-RAN Networks: xApp Development from Zero to Hero
- Through the Telco Lens: A Countrywide Empirical Study of Cellular Handovers
- Cascade Network Stability of Synchronized Traffic Load Balancing with Heterogeneous Energy Efficiency Policies
- Vertical Federated Learning for Failure-Cause Identification in Disaggregated Microwave Networks