On the design of 5G transport networks

被引:40
作者
Fiorani, Matteo [1 ]
Skubic, Bjorn [2 ]
Martensson, Jonas [3 ]
Valcarenghi, Luca [4 ]
Castoldi, Piero [4 ]
Wosinska, Lena [1 ]
Monti, Paolo [1 ]
机构
[1] KTH Royal Inst Technol, Kista, Sweden
[2] Ericsson Res, Kista, Sweden
[3] Acreo Swedish ICT, Kista, Sweden
[4] Scuola Super St Anna SSSUP, Pisa, Italy
关键词
5G transport; Backhaul; Fronthaul; Network sharing; Network function virtualization (NFV); Flexible transport;
D O I
10.1007/s11107-015-0553-8
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Future 5G systems will pave the way to a completely new societal paradigm where access to information will be available anywhere, anytime, and to anyone or anything. Most of the ongoing research and debate around 5G systems are focusing on the radio network segment (e.g., how to offer high peak-rates per subscriber, and how to handle a very large number of simultaneously connected devices without compromising on coverage, outage probability, and latency). On the other hand, understanding the impact that 5G systems will have on the transport network (i.e., the segment in charge of the backhaul of radio base stations and/or the fronthaul of remote radio units) is also very important. This paper provides an analysis of the key architectural challenges for the design of a flexible 5G transport infrastructure able to adapt in a cost-efficient way to the plethora of requirements coming from the large number of envisioned future 5G services.
引用
收藏
页码:403 / 415
页数:13
相关论文
共 50 条
[41]   Macroscopic and microscopic techno-economic analyses highlighting aspects of 5G transport network deployments [J].
Mesogiti, Ioanna ;
Lyberopoulos, George ;
Setaki, Fotini ;
Di Giglio, Andrea ;
Pelcelsi, Alessandro ;
Serra, Laura ;
Zou, Jim ;
Tzanakaki, Anna ;
Anastasopoulos, Markos ;
Theodoropoulou, Eleni .
PHOTONIC NETWORK COMMUNICATIONS, 2020, 40 (03) :256-268
[42]   A Survey of the Functional Splits Proposed for 5G Mobile Crosshaul Networks [J].
Larsen, Line M. P. ;
Checko, Aleksandra ;
Christiansen, Henrik L. .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2019, 21 (01) :146-172
[43]   Macroscopic and microscopic techno-economic analyses highlighting aspects of 5G transport network deployments [J].
Ioanna Mesogiti ;
George Lyberopoulos ;
Fotini Setaki ;
Andrea Di Giglio ;
Alessandro Pelcelsi ;
Laura Serra ;
Jim Zou ;
Anna Tzanakaki ;
Markos Anastasopoulos ;
Eleni Theodoropoulou .
Photonic Network Communications, 2020, 40 :256-268
[44]   Cost-Effective Delay-Constrained Optical Fronthaul Design for 5G and Beyond [J].
Fayad, Abdulhalim ;
Cinkler, Tibor .
INFOCOMMUNICATIONS JOURNAL, 2022, 14 (02) :19-27
[45]   The Study on Tunable-SFP for Optical Transport Network for 5G Service [J].
Kim, Jongsm ;
Lim, Jongyoung ;
Gim, Gwangyong .
2019 ELEVENTH INTERNATIONAL CONFERENCE ON UBIQUITOUS AND FUTURE NETWORKS (ICUFN 2019), 2019, :667-670
[46]   Centralized vs. distributed algorithms for resilient 5G access networks [J].
Bahare M. Khorsandi ;
Federico Tonini ;
Carla Raffaelli .
Photonic Network Communications, 2019, 37 :376-387
[47]   Peer to peer communication framework for 5G networks using Ambient Service [J].
Senthil Kumar, A. ;
Thirunavukkarasu, V. .
PEER-TO-PEER NETWORKING AND APPLICATIONS, 2021, 14 (01) :270-278
[48]   Guest Editorial Latest Advances in Optical Networks for 5G Communications and Beyond [J].
Tornatore, Massimo ;
Wong, Elaine ;
Zhu, Zuqing ;
Casellas, Ramon ;
Bathula, Balagangadhar G. ;
Wosinska, Lena .
IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2021, 39 (09) :2667-2671
[49]   Opportunistic Fog Computing for 5G Radio Access Networks: A Position Paper [J].
Jijin, Jofina ;
Seet, Boon-Chong .
SMART GRID AND INNOVATIVE FRONTIERS IN TELECOMMUNICATIONS, SMARTGIFT 2018, 2018, 245 :82-92
[50]   Virtualization and Scheduling Methods for 5G Cognitive Radio Based Wireless Networks [J].
Badoi, Cornelia-Ionela ;
Prasad, Neeli ;
Prasad, Ramjee .
WIRELESS PERSONAL COMMUNICATIONS, 2016, 89 (02) :599-619