DocumentCode
1787674
Title
Antenna array configurations for massive MIMO outdoor base stations
Author
Artiga, Xavier ; Perruisseau-Carrier, Julien ; Perez-Neira, A.I.
Author_Institution
Centre Tecnol. de Telecomun. de Catalunya (CTTC), Castelldefels, Spain
fYear
2014
fDate
22-25 June 2014
Firstpage
281
Lastpage
284
Abstract
Massive MIMO predicts unprecedented capacity and energy efficiency improvements in future networks, by the use of base stations with hundreds of antennas. However the crucial question of determining suitable, or even optimal, antenna hardware solutions for deploying such a large number of antennas in constrained physical spaces is still open. Here we analyse the potential benefits of using compact arrays, dual-polarized arrays, and 2D arrays in outdoor scenarios using a realistic 3D spatial channel model and accurate antenna electromagnetic simulations. In particular we show that it is detrimental to reduce the distance between elements below λ/3. Actually, better performances can be achieved by increasing the number of antennas using dual polarization instead (if random polarization of user antennas is assumed). We also show that good performance can be achieved by using 2D arrays, but at the expense of an increased number of total elements when compared to horizontal linear arrays.
Keywords
MIMO communication; electromagnetic wave polarisation; linear antenna arrays; 2D arrays; antenna array configurations; antenna electromagnetic simulation; compact arrays; constrained physical spaces; distance reduction; dual-polarized arrays; energy efficiency improvement; horizontal linear arrays; massive MIMO outdoor base stations; optimal antenna hardware solution; outdoor scenario; random polarization; realistic 3D spatial channel model; unprecedented capacity; user antennas; Antenna arrays; Arrays; Channel models; MIMO; Mutual coupling; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensor Array and Multichannel Signal Processing Workshop (SAM), 2014 IEEE 8th
Conference_Location
A Coruna
Type
conf
DOI
10.1109/SAM.2014.6882396
Filename
6882396
Link To Document