Performance analysis and optimal cooperative cluster size for randomly distributed small cells under cloud RAN

Zhang, L. , Quddus, A. U., Katranaras, E., Wubben, D., Qi, Y. and Tafazolli, R. (2016) Performance analysis and optimal cooperative cluster size for randomly distributed small cells under cloud RAN. IEEE Access, 4, pp. 1925-1939. (doi: 10.1109/ACCESS.2016.2550758)

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Abstract

One major advantage of cloud/centralized radio access network is the ease of implementation of multi-cell coordination mechanisms to improve the system spectrum efficiency (SE). Theoretically, large number of cooperative cells lead to a higher SE; however, it may also cause significant delay due to extra channel state information feedback and joint processing computational needs at the cloud data center, which is likely to result in performance degradation. In order to investigate the delay impact on the throughput gains, we divide the network into multiple clusters of cooperative small cells and formulate a throughput optimization problem. We model various delay factors and the sum-rate of the network as a function of cluster size, treating it as the main optimization variable. For our analysis, we consider both base stations' as well as users' geometric locations as random variables for both linear and planar network deployments. The output signal-to-interference-plus-noise ratio and ergodic sum-rate are derived based on the homogenous Poisson point processing model. The sum-rate optimization problem in terms of the cluster size is formulated and solved. Simulation results show that the proposed analytical framework can be utilized to accurately evaluate the performance of practical cloud-based small cell networks employing clustered cooperation.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Zhang, Professor Lei
Authors: Zhang, L., Quddus, A. U., Katranaras, E., Wubben, D., Qi, Y., and Tafazolli, R.
College/School:College of Science and Engineering > School of Engineering
Journal Name:IEEE Access
Publisher:IEEE
ISSN:2169-3536
ISSN (Online):2169-3536
Copyright Holders:Copyright © 2016 IEEE
First Published:First published in IEEE Access 4: 1925-1939
Publisher Policy:Reproduced in accordance with the copyright policy of the publisher

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