Title :
Millimeter-Wave Fan-Beam Antenna Based on Step-Index Cylindrical Homogeneous Lens
Author :
Changzhou Hua ; Nan Yang ; Xidong Wu ; Wen Wu
Author_Institution :
Ministerial Key Lab. of JGMT, Nanjing Univ. of Sci. & Technol., Nanjing, China
fDate :
7/4/1905 12:00:00 AM
Abstract :
A novel step-index cylindrical homogeneous lens at millimeter-wave (MMW) frequencies is designed by using the technique of parallel plates propagating the TE1 mode. The cylindrical homogeneous lens, which is sandwiched between two parallel conducting plates, has an H-shaped cross section to give the desired step-index of refraction. For a given aperture size, the focal length of the cylindrical homogeneous lens can be adjusted by changing the cross-section structural parameters rather than the dielectric material itself, which should be highlighted for cylindrical homogeneous lens for the first time. A planar linearly tapered slot antenna (LTSA) is chosen to feed the cylindrical homogeneous lens. The ray-tracing and transverse resonance methods are used to analyze and design this lens antenna at 30 GHz. Measured results of the fabricated lens antenna show good agreement with simulations. At 30 GHz, the measured 3-dB E- and H-plane beamwidths are 6.1° and 50.2°, respectively, and the first sidelobe level in the E-plane is -16.3 dB. The measured gain is 17.9 dB, corresponding to a radiation efficiency of 67.2%.
Keywords :
lens antennas; millimetre wave antennas; plates (structures); ray tracing; refraction; slot antennas; H-shaped cross section; LTSA; TE1 mode; efficiency 67.2 percent; frequency 30 GHz; millimeter-wave fan-beam antenna; millimeter-wave frequencies; parallel conducting plates; parallel plates; planar linearly tapered slot antenna; radiation efficiency; ray tracing; refraction step-index; step-index cylindrical homogeneous lens; transverse resonance; Antenna measurements; Dispersion; Feeds; Frequency measurement; Gain; Lenses; Cylindrical homogeneous lens; H-shaped cross section; fan beam; lens antenna; linearly tapered slot antenna (LTSA); millimeter wave; step-index;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2012.2234715