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Downlink performance of dense antenna deployment: To distribute or concentrate?

conference contribution
posted on 2018-02-14, 00:00 authored by M Hamidouche, E Baştuǧ, Jihong ParkJihong Park, L Cottatellucci, M Debbah
Massive multiple-input multiple-output (massive MIMO) and small cell densification are complementary key 5G enablers. Given a fixed number of the entire basestation antennas per unit area, this paper fairly compares (i) to deploy few base stations (BSs) and concentrate many antennas on each of them, i.e. massive MIMO, and (ii) to deploy more BSs equipped with few antennas, i.e. small cell densification. We observe that small cell densification always outperforms for both signal-to-interference ratio (SIR) coverage and energy efficiency (EE), when each BS serves multiple users via L number of sub-bands (multicarrier transmission). Moreover, we also observe that larger L increases SIR coverage while decreasing EE, thus urging the necessity of optimal 5G network design. These two observations are based on our novel closed-form SIR coverage probability derivation using stochastic geometry, also validated via numerical simulations.

History

Volume

2017-October

Pagination

1-6

Location

Montreal, Canada

Start date

2017-10-08

End date

2017-10-13

ISBN-13

9781538635315

Language

eng

Publication classification

E1.1 Full written paper - refereed

Title of proceedings

PIMRC 2017 : Proceedings of the 2017 IEEE 28th International Symposium on Personal, Indoor and Mobile Radio Communications

Event

IEEE Communications Society. Conference (28th : 2017 : Montreal, Canada)

Publisher

Institute of Electrical and Electronics Engineers

Place of publication

Piscataway, N.J.

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