DocumentCode :
1758281
Title :
Key Microwave-Photonics Technologies for Next-Generation Cloud-Based Radio Access Networks
Author :
Cheng Liu ; Jing Wang ; Lin Cheng ; Ming Zhu ; Gee-Kung Chang
Author_Institution :
Dept. of Electr. & Comput. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Volume :
32
Issue :
20
fYear :
2014
fDate :
Oct.15, 15 2014
Firstpage :
3452
Lastpage :
3460
Abstract :
Several key enabling techniques are introduced for next-generation wireless communication systems. Small-cell and cloud-RAN systems have been considered as promising solutions to meet the capacity demand of the future wireless access networks. In addition, utilization of high radio frequency (e.g., millimeter-wave band) is another dimension to expand the spectrum to enhance the throughput. From the network perspective, a high capacity, low latency, and reliable backhaul/fronthaul network is important to support the advanced wireless access techniques. Therefore, microwave-photonics techniques can play an important role in the integrated optical-wireless access systems for next-generation wireless communications. In this paper, we first review several key features and enabling techniques for next-generation 5G wireless communications. Then, we introduce a multiservice small-cell wireless access architecture based on microwave-photonics technologies (cloud radio-over-fiber networks). By combining small-cell cloud-RAN concept with multiband delivery capability in an integrated optical-wireless access system, the proposed architecture can realize high-speed multiservice data transmission in a simplified and flexible way. An in-building cloud radio-over-fiber testbed was demonstrated with real-time WiMAX traffic. Two different approaches of delivering conventional services and future-proof high-data-rate millimeter-wave services in a converged platform are also analyzed and summarized.
Keywords :
microwave photonics; mobile communication; optical fibre subscriber loops; radio access networks; radio-over-fibre; high-speed multiservice data transmission; in-building cloud radio-over-fiber testbed; integrated optical-wireless access systems; key microwave-photonics technologies; multiband delivery capability; multiservice small cell wireless access architecture; next-generation 5G wireless communication system; next-generation cloud-based radio access networks; real-time WiMAX traffic; smallcell cloud-RAN concept; Computer architecture; Microprocessors; Optical fiber networks; Optical fibers; Radio access networks; Radio frequency; Wireless communication; Fiber-optic fronthaul; millimeter-wave; radio-over-fiber 5G wireless; small cell;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2338854
Filename :
6855314
Link To Document :
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