COMPACT COPLANAR WAVEGUIDE (CPW)-FED TUNABLE WIDEBAND RESONANT ANTENNAS USING METAMATERIAL TRANSMISSION LINE
Author(s) -
Long Zheng,
Guangming Wang,
Lin Geng
Publication year - 2013
Publication title -
progress in electromagnetics research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.245
H-Index - 33
ISSN - 1937-6480
DOI - 10.2528/pierl13032512
Subject(s) - coplanar waveguide , wideband , transmission line , metamaterial , optoelectronics , materials science , electric power transmission , transmission (telecommunications) , line (geometry) , optics , physics , telecommunications , electrical engineering , microwave , computer science , engineering , geometry , mathematics
A wideband resonant antenna loaded with coplanar waveguide (CPW) epsilon negative transmission metamaterial line (ENG MTL) unit cells is proposed. The CPW geometry provides high design freedom, and the metamaterial resonant antenna is designed on a CPW single layer where vias are not required. The novel ENG unit cell on a vialess single layer simplifles the fabrication process. The dispersion analysis of the metamaterial unit cell reveals that increasing right hand capacitance and left hand inductance can decrease the half-wavelength resonance frequency, thus reducing the electrical size of the proposed antenna. Based on the proposed ENG MTL unit cell, the wideband antenna is verifled by a commercial EM simulator HFSS11 and developed. Comparing the measured performances with those resonant antennas, it is noticed that the proposed antenna achieves high bandwidth and further size reduction, higher e-ciency and easier manufacturing. The realized antenna has a compact size of 0:32‚0£0:20‚0£0:012‚0 (26:6mm£16:mm£1mm) at 3.65GHz, and operates over the frequency ranges 3.38{4.23GHz suitable for WiMAX applications. Good agreement between the simulated and measured results is obtained.
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