Full Text:   <1905>

CLC number: 

On-line Access: 2017-06-30

Received: 2022-04-22

Revision Accepted: 2022-04-22

Crosschecked: 0000-00-00

Cited: 0

Clicked: 5282

Citations:  Bibtex RefMan EndNote GB/T7714

-   Go to

Article info.
Open peer comments

Frontiers of Information Technology & Electronic Engineering  2017 Vol.18 No.6 P.751-752

http://doi.org/10.1631/FITEE.1720000


Special issue on 5G wireless communication systems and technologies


Author(s):  Ping Zhang

Affiliation(s):  Beijing University of Posts and Telecommunications, Beijing 100876, China

Corresponding email(s):   pzhang@bupt.edu.cn

Key Words: 


Share this article to: More |Next Article >>>

Ping Zhang. Special issue on 5G wireless communication systems and technologies[J]. Frontiers of Information Technology & Electronic Engineering, 2017, 18(6): 751-752.

@article{title="Special issue on 5G wireless communication systems and technologies",
author="Ping Zhang",
journal="Frontiers of Information Technology & Electronic Engineering",
volume="18",
number="6",
pages="751-752",
year="2017",
publisher="Zhejiang University Press & Springer",
doi="10.1631/FITEE.1720000"
}

%0 Journal Article
%T Special issue on 5G wireless communication systems and technologies
%A Ping Zhang
%J Frontiers of Information Technology & Electronic Engineering
%V 18
%N 6
%P 751-752
%@ 2095-9184
%D 2017
%I Zhejiang University Press & Springer
%DOI 10.1631/FITEE.1720000

TY - JOUR
T1 - Special issue on 5G wireless communication systems and technologies
A1 - Ping Zhang
J0 - Frontiers of Information Technology & Electronic Engineering
VL - 18
IS - 6
SP - 751
EP - 752
%@ 2095-9184
Y1 - 2017
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/FITEE.1720000


Abstract: 
Recently, the explosive growth of data traffic due to ubiquitous smart devices has accelerated the current 4G systems towards further technological evolution. Indeed, we are now moving into the 5G era as we reach for 2020 and beyond. Compared with 4G mobile communications, 5G needs to meet extremely high performance requirements in more diverse scenarios. These requirements are challenging and may even be conflicting, and need the design of new network architectures, new radio access techniques, and new transmission waveforms. In recent years, both academia and industry have shown a lot of interest in the key techniques of 5G systems, such as network framework, massive multiple-input multiple-output (MIMO), full-duplex, physical layer security, device-to-device (D2D), and energy harvesting. However, there are still many technical challenges to overcome before the deployment of 5G networks. Hence, the objective of this special issue is to showcase contributions from both academia and industry to motivate discussions on advanced and innovative techniques for 5G.

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1]Ali, E., Ismail, M., Nordin, R., et al., 2017. Beamforming techniques for massive MIMO systems in 5G: overview, classification, and trends for future research. Front. Inform. Technol. Electron. Eng., 18(6):753-772.

[2]Feng, Z.Y., Feng, Z.B., Gulliver, T.A., 2017. Joint user association and resource partition for downlink-uplink decoupling in multi-tier HetNets. Front. Inform. Technol. Electron. Eng., 18(6):817-829.

[3]Kuang, J.M., Zhou, Y., Fei, Z.S., 2017. Joint DOA and channel estimation with data detection based on 2D unitary ESPRIT in massive MIMO systems. Front. Inform. Technol. Electron. Eng., 18(6):841-849.

[4]Li, J.Z., Ai, B., He, R.S., et al., 2017. Indoor massive MIMO channel characterization and performance evaluation. Front. Inform. Technol. Electron. Eng., 18(6):773-787.

[5]Niu, H.H., Zhang, B.N., Guo, D.X., et al., 2017. Joint cooperative beamforming and artificial noise design for secure AF relay networks with energy-harvesting eavesdroppers. Front. Inform. Technol. Electron. Eng., 18(6):850-862.

[6]Wang, J., Wen, X.J., Huang, C., et al., 2017. Optimal precoding for full-duplex base stations under strongly correlated self-interference channels. Front. Inform. Technol. Electron. Eng., 18(6):808-816.

[7]Yuan, Z.H., Chen, C., Cheng, X., et al., 2017. Correlated channel model-based secure communications in dual-hop wireless communication networks. Front. Inform. Technol. Electron. Eng., 18(6):796-807.

[8]Zhang, K.L., Zhang, C., Gu, F.L., et al., 2017. Efficient detection methods for AF relay-aided D2D systems with full-rate space-time block code. Front. Inform. Technol. Electron. Eng., 18(6):788-795.

[9]Zhang, Z.Y., Lyu, W., 2017. Interference coordination in full-duplex HetNet with large-scale antenna arrays. Front. Inform. Technol. Electron. Eng., 18(6):830-840.

Open peer comments: Debate/Discuss/Question/Opinion

<1>

Please provide your name, email address and a comment





Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou 310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn
Copyright © 2000 - 2024 Journal of Zhejiang University-SCIENCE