DocumentCode
242661
Title
Multiport antenna performance analysis from ray-traced channels for small cells
Author
Dehghani Estarki, Maryam ; Yun, J.X. ; de Jong, Y.L.C. ; Vaughan, Rodney G.
Author_Institution
Sierra Wireless Mobile Commun. Lab., Simon Fraser Univ., Burnaby, BC, Canada
fYear
2014
fDate
6-11 April 2014
Firstpage
3305
Lastpage
3309
Abstract
The evaluation of multi-element antenna (MEA) performance in urban environments is particularly important for the planning and design of reliable, spectrally efficient systems. To date, MIMO communication using large dimensions has not been implemented for commercial systems. But the potential capacity of MIMO is much more significant when the MIMO dimensions become large. The hold-up is not just the shortfall in understanding how to deploy large-dimension MIMO, but also how to design the antenna systems. There is no widely agreed method for evaluating MEAs used by MIMO communications. Even the performance evaluation of a well-established MIMO configuration, such as the small scale systems already used, remains limited. The evaluation often defers to OTA tests in artificial environmental conditions. The real-world performance remains unclear, so care must be taken in design optimization. In this paper, we discuss the incorporation of some physical modeling of the propagation environment to evaluating the MEA performance for a typical urban wireless channel. A ray-optic method is applicable to any 3D environment, and any number of antennas with arbitrary patterns. In this sense it offers a practical approach for large-dimension MIMO evaluation by being able to change the antennas and the environment, all in software. The evaluation method is illustrated by using an MEA slot cube (12 antennas) operating in a specific environment, namely downtown Ottawa.
Keywords
MIMO communication; antenna arrays; wireless channels; 3D environment; MEA slot cube; MIMO communication; antenna system design; artificial environmental conditions; multiport antenna performance analysis; ray-optic method; ray-traced channels; urban wireless channel; Antenna measurements; Diversity reception; MIMO; Receiving antennas; Signal to noise ratio; MIMO; diversity combining; diversity gain; multiport antenna; physical modeling; ray-tracing;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation (EuCAP), 2014 8th European Conference on
Conference_Location
The Hague
Type
conf
DOI
10.1109/EuCAP.2014.6902535
Filename
6902535
Link To Document