DocumentCode :
248119
Title :
Evaluation of vehicle-level MIMO antennas: Capacity, total embedded efficiency, and envelope correlation
Author :
Song, Hyok J. ; Bekaryan, Arthur ; Schaffner, James H. ; Talty, Timothy ; Carper, Duane ; Yasan, Eray ; Duzdar, Ayman
Author_Institution :
HRL Labs., LLC, Malibu, CA, USA
fYear :
2014
fDate :
3-9 Aug. 2014
Firstpage :
89
Lastpage :
92
Abstract :
The paper describes an approach to estimate 2×2 MIMO channel capacity of a shark-fin radome antenna designed for multiple LTE bands by using channel matrices measured from drive tests in a real driving environment with a commercially available LTE radio network analyzer. The nonproduction shark-fin radome antenna that is mounted on the roof of a sedan is treated as a black box, and the estimated channel capacity is compared with that of a reference MIMO antenna consisting of identical monopoles tuned at 750 MHz. The two element λ/4 monopole array was also measured in a rich isotropic multipath environment at a reverberation chamber so that it can be used as a reference with known channel capacity. Total embedded efficiency and envelope correlation derived from measured s-parameters for the black box and the reference antennas are presented and discussed. The results show that the channel capacity depends on both the embedded efficiency and the correlation, and the approach estimating the MIMO throughput based on the channel matrices measured from the drive tests is shown to be useful to evaluate multiple MIMO antennas in a real driving environment.
Keywords :
Long Term Evolution; MIMO communication; S-parameters; channel capacity; mobile antennas; mobile communication; monopole antenna arrays; radomes; LTE radio network analyzer; S-parameters; channel capacity; channel matrices; frequency 750 MHz; monopole array; shark-fin radome antenna; vehicle-level MIMO antennas; Antenna measurements; Antennas; Channel capacity; Correlation; MIMO; Reverberation chambers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation in Wireless Communications (APWC), 2014 IEEE-APS Topical Conference on
Conference_Location :
Palm Beach
Print_ISBN :
978-1-4673-5690-9
Type :
conf
DOI :
10.1109/APWC.2014.6905525
Filename :
6905525
Link To Document :
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