Software-Defined Hyper-Cellular Architecture for Green and Elastic Wireless Access
December 15, 2015 Β· Declared Dead Β· π IEEE Communications Magazine
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Authors
Sheng Zhou, Tao Zhao, Zhisheng Niu, Shidong Zhou
arXiv ID
1512.04935
Category
cs.NI: Networking & Internet
Citations
59
Venue
IEEE Communications Magazine
Last Checked
5 months ago
Abstract
To meet the surging demand of increasing mobile Internet traffic from diverse applications while maintaining moderate energy cost, the radio access network (RAN) of cellular systems needs to take a green path into the future, and the key lies in providing elastic service to dynamic traffic demands. To achieve this, it is time to rethink RAN architectures and expect breakthroughs. In this article, we review the state-of-art literature which aims to renovate RANs from the perspectives of control-traffic decoupled air interface, cloud-based RANs, and software-defined RANs. We then propose a software-defined hyper-cellular architecture (SDHCA) that identifies a feasible way of integrating the above three trends to enable green and elastic wireless access. We further present key enabling technologies to realize SDHCA, including separation of the air interface, green base station operations, and base station functions virtualization, followed by our hardware testbed for SDHCA. Besides, we summarize several future research issues worth investigating.
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