Title :
Sub-Wavelength Profile 2-D Leaky-Wave Antennas With Two Periodic Layers
Author :
Mateo-Segura, Carolina ; Goussetis, George ; Feresidis, Alexandros P.
Author_Institution :
Dept. of Electron. & Electr. Eng., Loughborough Univ., Loughborough, UK
Abstract :
A fast and accurate analysis and synthesis technique for high-gain sub-wavelength 2-D Fabry-Perot leaky-wave antennas (LWA) consisting of two periodic metallodielectric arrays over a ground plane is presented. Full-wave method of moments (MoM) together with reciprocity is employed for the estimation of the near fields upon plane wave illumination and the extraction of the radiation patterns of the LWA. This yields a fast and rigorous tool for the characterisation of this type of antennas. A thorough convergence study for different antenna designs is presented and the operation principles of these antennas as well as the radiation characteristics are discussed. Moreover, design guidelines to tailor the antenna profile, the dimensions of the arrays as well as the antenna directivity and bandwidth are provided. A study on the radiation efficiency for antennas with different profiles is also presented and the trade off between directivity and radiation bandwidth is discussed. Numerical examples are given throughout to demonstrate the technique. A finite size antenna model is simulated using commercial software (CST Microstripes 2009) which validates the technique.
Keywords :
antenna radiation patterns; leaky wave antennas; method of moments; antenna bandwidth; antenna design; antenna directivity; antenna profile; finite size antenna model; full-wave method of moments; high-gain subwavelength 2D Fabry-Perot leaky-wave antenna; periodic layer; periodic metallodielectric array; radiation characteristics; radiation efficiency; radiation pattern; reciprocity; subwavelength profile 2D leaky-wave antenna; wave illumination; Artificial magnetic conductor; high impedance surfaces; high-gain antennas; leaky-wave antennas (LWAs); resonant cavities; sub-wavelength resonators;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2010.2096384