Title :
A Compact MIMO Antenna using CRLH Configuration Double-Layered Folded Ring Radiations with Planar Mushroom Decoupling Structure
Author :
Sungtek Kahng ; Jinsu Jeon ; Anguera, Jaume ; Taejoon Park
Author_Institution :
Dept. of Inf. & Telecommun. Eng., Incheon Nat. Univ., Incheon, South Korea
Abstract :
This paper proposes a novel compact multiple-input-multiple-output (MIMO) antenna, which has miniaturized radiators and improved isolation, working for the long-term evolution (LTE) mobile communication. Each of the proposed radiators has a double-layered ring of the composite right- and left-handed transmission-line configuration, which has the footprint of λg/30 by λg/30, much smaller than the conventional MIMO antenna radiators. These radiators can be placed close to each other and have a planar modified mushroom structure between them for a higher isolation level. The design starts from the equivalent circuit for the LTE 1.7-GHz-band antenna, finds a physical structure suitable for the circuit, and is verified by comparing the circuit simulation with the 3-D EM simulation and measured data. The dispersion diagram shows that the zeroth-order resonance coincides with the center frequency of the band, and the fabricated antenna has the return loss less than -10 dB, the isolation over 12 dB, and the radiation efficiency over 50%.
Keywords :
Long Term Evolution; MIMO communication; antenna radiation patterns; equivalent circuits; planar antennas; 3D EM simulation; CRLH configuration double-layered folded ring radiations; LTE mobile communication; antenna radiators; circuit simulation; compact MIMO antenna; composite right-and left-handed transmission-line configuration; dispersion diagram; equivalent circuit; frequency 1.7 GHz; isolation level; long-term evolution; multiple-input-multiple-output antenna; physical structure; planar mushroom decoupling structure; zeroth-order resonance; Antenna measurements; Capacitance; Inductance; MIMO; Mobile antennas; Resonant frequency;
Journal_Title :
Antennas and Propagation Magazine, IEEE
DOI :
10.1109/MAP.2015.2414515