Title :
Comparison of MIMO Antenna Configurations: Methods and Experimental Results
Author :
Suvikunnas, Pasi ; Salo, Jari ; Vuokko, Lasse ; Kivinen, Jarmo ; Sulonen, Kati ; Vainikainen, Pertti
Author_Institution :
Nat. Board of Patents & Registration of Finland, Helsinki
fDate :
3/1/2008 12:00:00 AM
Abstract :
In this paper, the methods for comparing multipleinput-multiple-output (MIMO) antenna configurations using measured radio channels are considered. The expression of mutual information (MI) is factorized to give better understanding of the ability of MIMO antenna systems to transfer signal power, as well as to utilize parallel channels. An appropriate power normalization of channel matrices is shown to have a profound impact on the ranking of particularly directive MIMO antennas. It was found that the ability to transfer signal power from the transmitter to the receiver, instead of the rank properties, dominates in outage MI over a wide range of signal-to-noise ratios. The largest differences in outage MI between the antennas were found at low outage-probability levels, particularly in the line of sight. It was also verified that dual-polarized antenna systems are more robust for environmental variations but more sensitive for antenna orientation in comparison with single-polarized antenna systems both in eigenvalue dispersion and transferred signal power. At low outage-probability levels, the highest MI was achieved with vertically polarized dipole antennas.
Keywords :
MIMO systems; dipole antennas; matrix algebra; probability; transceivers; wireless channels; MIMO antenna configurations; MIMO antenna systems; antenna orientation; channel matrices; dual-polarized antenna systems; outage-probability levels; parallel channels; power normalization; radio channels; signal-to-noise ratios; single-polarized antenna systems; transceivers; vertically polarized dipole antennas; Antenna evaluation; antenna evaluation; mean effective gain (MEG); multiple-input multiple-output (MIMO); multiple-input–multiple-output (MIMO); outage mutual information; outage mutual information (MI); radio channel measurements;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2007.905347