Title :
Efficient, High Directivity, Large Front-to-Back-Ratio, Electrically Small, Near-Field-Resonant-Parasitic Antenna
Author :
Ming-Chun Tang ; Ziolkowski, Richard W.
Author_Institution :
Inst. of Appl. Phys., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Enhancements of the directivity and front-to-back ratio (FTBR) of a metamaterial-inspired electrically small, linearly polarized, coaxially-fed Egyptian axe dipole antenna are considered. They are accomplished with a particular augmentation of the original near-field-resonant-parasitic (NFRP) antenna with an additional NFRP element, a small disc conductor modified with two meanderline-shaped slots. The entire system is evaluated numerically with two independent computational electromagnetics simulators. The optimized results demonstrate an electrically small antenna (i.e., ka <; 1.0) with a reasonably low profile (i.e., height ~ λ/10) that improves the directivity from 1.77 to 6.32 dB, increases the FTBR from 0 to > 20 dB, and maintains large half-power beamwidths, while having a radiation efficiency over 80% with nearly complete matching to a 50 Ω source.
Keywords :
antenna feeds; antenna radiation patterns; computational electromagnetics; dipole antennas; directive antennas; electromagnetic wave polarisation; metamaterial antennas; slot antennas; FTBR; NFRP antenna; coaxially-fed Egyptian axe dipole antenna; computational electromagnetics simulator; directivity; front-to-back ratio; half-power beamwidth; linearly polarized Egyptian axe dipole antenna; meanderline-shaped slot; metamaterial-inspired electrically small Egyptian axe dipole antenna; near-field-resonant-parasitic antenna; radiation efficiency; small disc conductor; Antenna measurements; Bandwidth; Dipole antennas; Metamaterials; Parasitic capacitance; Polarization; Resonant frequency; Slot antennas; Directivity; efficiency; electrically small antennas; front-to-back ratio; metamaterial-inspired antennas; parasitic elements;
Journal_Title :
Access, IEEE
DOI :
10.1109/ACCESS.2013.2259134