Universiti Teknologi Malaysia Institutional Repository

Sum-rates of radio-over-fiber small cell networks and massive MIMO for indoor communications

Wang, Q. and Debbarma, D. and Lo, A. and Niemegeers, I. and De Groot, S. H. (2016) Sum-rates of radio-over-fiber small cell networks and massive MIMO for indoor communications. In: 22nd IEEE Symposium on Communications and Vehicular Technology in the Benelux, SCVT 2015, 24 Nov 2015, Luxembourg.

Full text not available from this repository.

Official URL: https://www.scopus.com/inward/record.uri?eid=2-s2....

Abstract

Small cell networks (SCN) and massive MIMO are both promising techniques for improving the network capacity. In this paper, we consider applying both concepts for indoor communications based on a radio-over-fiber (RoF) infrastructure. We give a comparison of the achievable sum-rates using the same system configurations which include the same set of active antennas and the same power constraints. The sum-rates are further optimized based on Geometric Programming, under both sum power constraint (SPC) and per antenna power constraint (PAPC). The numerical results indicates that both SCN and Massive MIMO offers a high network capacity. The capacity can be significantly increased when the number of antennas is a few times larger than the simultaneously served mobile stations (STAs). Massive MIMO performs much better provided that the inter-stream interference (ISI) can be canceled by the precoding techniques such as zero-forcing (ZF). However, with maximum ratio transmission (MRT), the performance of massive MIMO is poorer than SCN.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:Antennas, Mathematical programming, Optical communication, Telecommunication links
Subjects:Q Science > QA Mathematics
Q Science > QA Mathematics > QA75 Electronic computers. Computer science
Divisions:Computing
ID Code:73477
Deposited By: Mohd Zulaihi Zainudin
Deposited On:20 Nov 2017 08:43
Last Modified:20 Nov 2017 08:43

Repository Staff Only: item control page