MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment

MIMO technology promises a linear increase of capacity in function of the minimum antenna number at the transmitter and at the receiver. In order to test if these performances can be actually met in mobile communications, we propose here a study of MIMO (Multiple Input Multiple Output) capacity in u...

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Main Authors: S. Vergerio, J. P. Rossi, P. Sabouroux
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2008-06-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2008/08_02_037_041.pdf
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spelling doaj-ab1574cef3314bc69cdcfc04e216db6d2020-11-24T22:46:19ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122008-06-011723741MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular EnvironmentS. VergerioJ. P. RossiP. SabourouxMIMO technology promises a linear increase of capacity in function of the minimum antenna number at the transmitter and at the receiver. In order to test if these performances can be actually met in mobile communications, we propose here a study of MIMO (Multiple Input Multiple Output) capacity in urban cellular environment at 2 GHz with a help of an efficient ray propagation model. We have tested different types of base station antennas (vertically or ±45° polarized) and two different types of mobile. Capacity is found to significantly increase between SISO (Single Input Single Output) and MIMO systems, but less than usually expected. We show that return and coupling losses as low as 10% can also reduce significantly the capacity. On the other hand, we study the influence of the way to take into account received power level on the MIMO capacity estimation.www.radioeng.cz/fulltexts/2008/08_02_037_041.pdfCapacitycellular environmentdiversitydirectivitylossesmultiple antennas
collection DOAJ
language English
format Article
sources DOAJ
author S. Vergerio
J. P. Rossi
P. Sabouroux
spellingShingle S. Vergerio
J. P. Rossi
P. Sabouroux
MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
Radioengineering
Capacity
cellular environment
diversity
directivity
losses
multiple antennas
author_facet S. Vergerio
J. P. Rossi
P. Sabouroux
author_sort S. Vergerio
title MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
title_short MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
title_full MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
title_fullStr MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
title_full_unstemmed MIMO Capacity Estimation at 2 GHz with a Ray Model in Urban Cellular Environment
title_sort mimo capacity estimation at 2 ghz with a ray model in urban cellular environment
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2008-06-01
description MIMO technology promises a linear increase of capacity in function of the minimum antenna number at the transmitter and at the receiver. In order to test if these performances can be actually met in mobile communications, we propose here a study of MIMO (Multiple Input Multiple Output) capacity in urban cellular environment at 2 GHz with a help of an efficient ray propagation model. We have tested different types of base station antennas (vertically or ±45° polarized) and two different types of mobile. Capacity is found to significantly increase between SISO (Single Input Single Output) and MIMO systems, but less than usually expected. We show that return and coupling losses as low as 10% can also reduce significantly the capacity. On the other hand, we study the influence of the way to take into account received power level on the MIMO capacity estimation.
topic Capacity
cellular environment
diversity
directivity
losses
multiple antennas
url http://www.radioeng.cz/fulltexts/2008/08_02_037_041.pdf
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