DocumentCode :
3100250
Title :
Fundamental approach of isolation loss control between two patch antennas for LTE-MIMO mobile handy terminal
Author :
Chan-Jin Park ; Kyeong-Sik Min ; Jeong-Won Kim ; In-hwan Kim
Author_Institution :
Dept. of Radio Commun. Eng., Korea Maritime Univ., Busan, South Korea
fYear :
2012
fDate :
4-7 Dec. 2012
Firstpage :
1169
Lastpage :
1171
Abstract :
This paper presents fundamental research results to obtain optimal isolation coefficients determined by position between two antennas for LTE-MIMO mobile system. In order to control the isolation loss and the radiation directivity, various antenna positions were considered. It was confirmed that the isolation loss was determined by current direction of two antennas and by current distribution on ground plane. When two antennas had a same current direction, it was satisfied isolation loss of -15 dB below. Otherwise, it had isolation loss of -10 dB above. Radiation pattern is also controlled by current direction and antenna position. The proposed LTE-MIMO antennas with different tilting radiation direction as shown in (1-2) and (4-1) of Fig. 4 (b) and Fig. 6 (b) is a good ECC candidate. The measured return loss and radiation pattern of a fabricated PIFA were also observed reasonable agreement with the prediction.
Keywords :
Long Term Evolution; MIMO communication; antenna radiation patterns; losses; mobile antennas; mobile handsets; LTE-MIMO mobile handy terminal; antenna radiation pattern; current distribution; ground plane; isolation loss control; patch antennas; radiation directivity; Antenna feeds; Antenna measurements; Antenna radiation patterns; Directive antennas; MIMO; Mobile antennas; ECC; Isolation Loss; LTE; MIMO antenna; PIFA; Radiation pattern;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference Proceedings (APMC), 2012 Asia-Pacific
Conference_Location :
Kaohsiung
Print_ISBN :
978-1-4577-1330-9
Electronic_ISBN :
978-1-4577-1331-6
Type :
conf
DOI :
10.1109/APMC.2012.6421859
Filename :
6421859
Link To Document :
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