Title :
Synthesis Technique of Array-Fed Shaped-Reflector Antenna for DBF-SAR Application
Author :
Liu, Xiaomeng ; Gao, Wenjun ; Deng, Yunkai
Author_Institution :
Grad. Univ. of Chinese Acad. of Sci., Beijing, China
fDate :
7/4/1905 12:00:00 AM
Abstract :
This letter presents a new approach to synthesize patterns of a phased-array-fed shaped-reflector antenna for digital beamforming (DBF) synthetic aperture radar (SAR). This type of reflector antenna is capable of radiating different broad transmitting beams under phase-only control and can generate narrow receiving beams using DBF technique in the elevation direction, which is applicable to a high-resolution wide swath (HRWS) SAR system. The linear array feed locates at the defocused area of the reflector, which can enhance the beam reconfiguring ability. The elevation patterns are optimized mainly by adjusting the excitation coefficients of the array feed using improved Projection Matrix Algorithm (PMA). The azimuth patterns are optimized mainly by adjusting the reflector shape using Differential Evolution method with Global and Local neighborhood (DEGL). The patterns of the shaped reflector antenna fed by a defocused feed array are effectively synthesized, including scanning and reconfiguring beams. A numerical analysis is performed that validates the effectiveness of the approach. The beam direction, beamwidth, and sidelobe level requirements are all met.
Keywords :
antenna phased arrays; array signal processing; matrix algebra; phased array radar; reflector antenna feeds; synthetic aperture radar; DBF-SAR application; HRWS SAR system; PMA; differential evolution method; digital beamforming; high-resolution wide swath SAR system; phased-array-fed shaped-reflector antenna; projection matrix algorithm; synthesize patterns; synthetic aperture radar; Antenna feeds; Arrays; Reflector antennas; Synthetic aperture radar; Vectors; Differential evolution (DE); Projection Matrix Algorithm (PMA); digital beamforming (DBF); phased array feed (PAF); shaped reflector antenna; synthetic aperture radar (SAR);
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2011.2181146