scispace - formally typeset
Open AccessJournal ArticleDOI

Millimeter-Wave Cellular Wireless Networks: Potentials and Challenges

Sundeep Rangan, +2 more
- Vol. 102, Iss: 3, pp 366-385
TLDR
Measurements and capacity studies are surveyed to assess mmW technology with a focus on small cell deployments in urban environments and it is shown that mmW systems can offer more than an order of magnitude increase in capacity over current state-of-the-art 4G cellular networks at current cell densities.
Abstract
Millimeter-wave (mmW) frequencies between 30 and 300 GHz are a new frontier for cellular communication that offers the promise of orders of magnitude greater bandwidths combined with further gains via beamforming and spatial multiplexing from multielement antenna arrays. This paper surveys measurements and capacity studies to assess this technology with a focus on small cell deployments in urban environments. The conclusions are extremely encouraging; measurements in New York City at 28 and 73 GHz demonstrate that, even in an urban canyon environment, significant non-line-of-sight (NLOS) outdoor, street-level coverage is possible up to approximately 200 m from a potential low-power microcell or picocell base station. In addition, based on statistical channel models from these measurements, it is shown that mmW systems can offer more than an order of magnitude increase in capacity over current state-of-the-art 4G cellular networks at current cell densities. Cellular systems, however, will need to be significantly redesigned to fully achieve these gains. Specifically, the requirement of highly directional and adaptive transmissions, directional isolation between links, and significant possibilities of outage have strong implications on multiple access, channel structure, synchronization, and receiver design. To address these challenges, the paper discusses how various technologies including adaptive beamforming, multihop relaying, heterogeneous network architectures, and carrier aggregation can be leveraged in the mmW context.

read more

Citations
More filters
Posted Content

Integrated Millimeter Wave and Sub-6 GHz Wireless Networks: A Roadmap for Ultra-Reliable Low-Latency Communications.

TL;DR: This paper introduces the first comprehensive tutorial for integrated mmWave-$\mu$W communications, and envisioned integrated design will enable wireless networks to achieve URLLC along with high data rates by leveraging the best of two worlds: reliable, long-range communications at the sub-6 GHz, microwave frequency bands and directional high-speedcommunications at the mmWave frequencies.
Posted Content

MmWave UAV Networks with Multi-cell Association: Performance Limit and Optimization

TL;DR: The fundamental limits on the downlink coverage and spatial throughput performances of a cellular network comprised of a tier of unmanned aerial vehicle (UAV) base stations (BSs) using the millimeter wave (mmWave) band and atier of ground BSs using the ultra high frequency (UHF) band are exploited.
Proceedings ArticleDOI

A Dual-Hop Backhaul Network Architecture for 5G Ultra-Small Cells Using Millimetre-Wave

TL;DR: It is shown that the overall performance can be improved by up to 45% by reducing the bottleneck and introducing routing diversity to such a dense dual-hop backhaul network.
Proceedings ArticleDOI

A 79GHz Series Fed Microstrip Patch Antenna Array with Bandwidth Enhancement and Sidelobe Suppression

TL;DR: In this article, a 79GHz series-fed microstrip patch antenna array with bandwidth enhancement and sidelobe suppression is presented, and the obtained simulation results showed a maximum sidelobe level of -19dB and -17dB at E-Plane and H-plane, respectively, as well as a -10dB impedance bandwidth of 4.14GHz and a high gain of 22dBi.
Journal ArticleDOI

Antenna Array Enabled Space/Air/Ground Communications and Networking for 6G

TL;DR: In this paper , the technical potentials and challenges of antenna array enabled space/air/ground communications and networking are presented, and various emerging technologies facilitated by antenna arrays to meet the new communication requirements of Space/Air/ground communication systems are discussed.
References
More filters
Book

Wireless Communications: Principles and Practice

TL;DR: WireWireless Communications: Principles and Practice, Second Edition is the definitive modern text for wireless communications technology and system design as discussed by the authors, which covers the fundamental issues impacting all wireless networks and reviews virtually every important new wireless standard and technological development, offering especially comprehensive coverage of the 3G systems and wireless local area networks (WLANs).
Journal ArticleDOI

Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!

TL;DR: The motivation for new mm-wave cellular systems, methodology, and hardware for measurements are presented and a variety of measurement results are offered that show 28 and 38 GHz frequencies can be used when employing steerable directional antennas at base stations and mobile devices.
Journal ArticleDOI

Scaling Up MIMO: Opportunities and Challenges with Very Large Arrays

TL;DR: The gains in multiuser systems are even more impressive, because such systems offer the possibility to transmit simultaneously to several users and the flexibility to select what users to schedule for reception at any given point in time.
Journal ArticleDOI

Five disruptive technology directions for 5G

TL;DR: In this article, the authors describe five technologies that could lead to both architectural and component disruptive design changes: device-centric architectures, millimeter wave, massive MIMO, smarter devices, and native support for machine-to-machine communications.
Journal ArticleDOI

Femtocell networks: a survey

TL;DR: The technical and business arguments for femtocells are overview and the state of the art on each front is described and the technical challenges facing femtocell networks are described and some preliminary ideas for how to overcome them are given.
Related Papers (5)