Silicon Photonics for 5G and Future Networks

被引:59
作者
Sabena, Roberto [1 ]
机构
[1] Ericsson Res, Opt Syst Unit, I-56124 Pisa, Italy
关键词
Photonics; 5G mobile communication; Optical switches; Optical fibers; Optical packet switching; Silicon; 5G; mobile networks; 5G transport; mobile fronthaul; mobile backhaul; data centers; HW platforms; microwave photonics; silicon photonics; integrated photonics; TERAHERTZ; GENERATION; CHIP;
D O I
10.1109/JSTQE.2019.2948501
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The evolution of mobile radio technologies towards the realization and deployment of 5G networks is creating relevant opportunities in the Industry and Society worldwide. On the other hand, the network infrastructure that will have to sustain many applications, including the ones requiring challenging network performance, in different terms, is leading to a network transformation and the capacity to handle bigger and bigger volumes of traffic at a reasonable cost and consumption of energy. Photonic technology will play a key role in 5G networks in different segments. In 5G transport it will allow the transmission and routing of huge amounts of data traffic at an acceptable cost, and the transformation of the radio access network. In data center photonic interconnect and switching will allow the realization of new architecture able to strongly reduce the energy consumption while providing high level of flexibility in resource utilization. In future HW platform photonic chip-to-chip interconnect will allow a significant increase of bandwidth density so leading to dramatically scale up the global capacity of those platforms. In addition, photonics is a valid technology to achieve some functions of future radio systems that will enable the further evolution towards what will be the 6(th) generation of mobile networks. In all the above integrated photonics, and particularly silicon photonics, will be the key technology to realize components and modules at the right costs, while greatly reducing energy consumption and footprint and the desired performance.
引用
收藏
页数:11
相关论文
共 50 条
[41]   Teaching 5G Networks Using the ONOS SDN Controller [J].
Bouras, Christos ;
Kollia, Anastasia ;
Papazois, Andreas .
2017 NINTH INTERNATIONAL CONFERENCE ON UBIQUITOUS AND FUTURE NETWORKS (ICUFN 2017), 2017, :312-317
[42]   Energy Efficient Backhauling for 5G Small Cell Networks [J].
Mowla, Md Munjure ;
Ahmad, Iftekhar ;
Habibi, Daryoush ;
Phung, Quoc Viet .
IEEE TRANSACTIONS ON SUSTAINABLE COMPUTING, 2019, 4 (03) :279-292
[43]   Scenarios and Economic Analysis of Fronthaul in 5G Optical Networks [J].
Di Giglio, Andrea ;
Pagano, Annachiara .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2019, 37 (02) :585-591
[44]   Handling Delay in 5G Ethernet Mobile Fronthaul Networks [J].
Bjornstad, S. ;
Chen, D. ;
Veisllari, R. .
2018 EUROPEAN CONFERENCE ON NETWORKS AND COMMUNICATIONS (EUCNC), 2018, :408-412
[45]   Imec iSiPP25G silicon photonics: a robust CMOS-based photonics technology platform [J].
Absil, Philippe P. ;
De Heyn, Peter ;
Chen, Hongtao ;
Verheyen, Peter ;
Lepage, Guy ;
Pantouvaki, Marianna ;
De Coster, Jeroen ;
Khanna, Amit ;
Drissi, Youssef ;
Van Thourhout, Dries ;
Van Campenhout, Joris .
SILICON PHOTONICS X, 2015, 9367
[46]   Enabling simulation services for digital twins of 5G/B5G mobile networks [J].
Nardini, Giovanni ;
Stea, Giovanni .
COMPUTER COMMUNICATIONS, 2024, 213 :33-48
[47]   Using network simulators as digital twins of 5G/B5G mobile networks [J].
Nardini, Giovanni ;
Stea, Giovanni .
2022 IEEE 23RD INTERNATIONAL SYMPOSIUM ON A WORLD OF WIRELESS, MOBILE AND MULTIMEDIA NETWORKS (WOWMOM 2022), 2022, :584-589
[48]   The Future of Silicon Photonics: Not So Fast? Insights From 100G Ethernet LAN Transceivers [J].
Fuchs, Erica R. H. ;
Kirchain, Randolph E. ;
Liu, Shan .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2011, 29 (15) :2319-2326
[49]   Heterogeneous Optical Access Networks: Enabling Low-Latency 5G Services With a Silicon Photonic Smart Edge [J].
Guan, Xun ;
Dube-Demers, Raphael ;
Shi, Wei ;
Rusch, Leslie A. .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2021, 39 (08) :2348-2357
[50]   Silicon integrated photonics [J].
Kosolobov, S. S. ;
Pshenichnyuk, I. A. ;
Taziev, K. R. ;
Zemtsova, A. K. ;
Zemtsov, D. S. ;
Smirnov, A. S. ;
Zhigunov, D. M. ;
Drachev, V. P. .
PHYSICS-USPEKHI, 2024, 67 (11) :1153-1167