Millimeter Wave Cellular Networks: A MAC Layer Perspective
arXiv:1503.00697 · doi:10.1109/TCOMM.2015.2456093
Abstract
The millimeter wave (mmWave) frequency band is seen as a key enabler of multi-gigabit wireless access in future cellular networks. In order to overcome the propagation challenges, mmWave systems use a large number of antenna elements both at the base station and at the user equipment, which lead to high directivity gains, fully-directional communications, and possible noise-limited operations. The fundamental differences between mmWave networks and traditional ones challenge the classical design constraints, objectives, and available degrees of freedom. This paper addresses the implications that highly directional communication has on the design of an efficient medium access control (MAC) layer. The paper discusses key MAC layer issues, such as synchronization, random access, handover, channelization, interference management, scheduling, and association. The paper provides an integrated view on MAC layer issues for cellular networks, identifies new challenges and tradeoffs, and provides novel insights and solution approaches.
21 pages, 9 figures, 2 tables, to appear in IEEE Transactions on Communications
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Cited by in corpus (21)
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- Asynchronous Distributed Coordinated Hybrid Precoding in Multi-cell mmWave Wireless Networks
- Design and Analysis of Initial Access in Millimeter Wave Cellular Networks
- Secure Communications in Millimeter Wave Ad Hoc Networks
- Efficient Beamforming for Mobile mmWave Networks
- Performance Comparison of Dual Connectivity and Hard Handover for LTE-5G Tight Integration
- Ergodic capacity evaluation of wireless THz fiber extenders
- A Fine-Grained Analysis of mmWave Heterogeneous Networks
- Directional Radio Propagation Path Loss Models for Millimeter-Wave Wireless Networks in the 28-, 60-, and 73-GHz Bands
- Enhancing TCP End-to-End Performance in Millimeter-Wave Communications
- Interference Model Similarity Index and Its Applications to mmWave Networks: Extended version
- Multi-User Provisioning in Millimeter-Wave Urban Cellular Networks
- Deep Reinforcement Learning for Joint Beamwidth and Power Optimization in mmWave Systems
- Beamwidth Optimization and Resource Partitioning Scheme for Localization Assisted mm-wave Communications
- Distributed Association and Relaying with Fairness in Millimeter Wave Networks
- On the Beamformed Broadcast Signaling for Millimeter Wave Cell Discovery: Performance Analysis and Design Insight
- A Frame-Theoretic Scheme for Robust Millimeter Wave Channel Estimation