Title :
A 2-D Signal Processing Model to Predict the Effect of Mutual Coupling on Array Factor
Author :
Kota, John ; Madanayake, A. ; Belostotski, Leonid ; Wijenayake, Chamith ; Bruton, L.T.
Author_Institution :
Sch. of Electr., Comput., & Energy Eng., Arizona State Univ., Tempe, AZ, USA
Abstract :
A semi-analytical method for modeling the effects of electromagnetic mutual coupling in uniform linear array (ULA) of N antennas is proposed. The coupling is described as a two-dimensional (2-D) spatiotemporal transfer function derived from S-parameter measurements. The proposed 2-D transfer function enables prediction of the distortions in array factor due to coupling, and thereby enables the potential design of coupling-compensation algorithms. The method is verified with simulations in the 1.5-2.0-GHz range on both an N=7-element ULA using CST Microwave Studio using 50- Ω terminations and a N=3-element ULA in FEKO but with non-50 Ω impedance obtained from measurements of a CMOS low noise amplifier (LNA). Coupling effect on array factor of delay-sum-type beamformer was examined. The proposed model matches within an error of 4%-12% and 4%-10% with respect to the results from two full-wave electromagnetic simulators CST Microwave Studio and FEKO, respectively, in the frequency range 1.75-2 GHz.
Keywords :
CMOS analogue integrated circuits; S-parameters; linear antenna arrays; low noise amplifiers; signal processing; 2D signal processing model; 2D spatiotemporal transfer function; CMOS low noise amplifier; CST Microwave Studio; FEKO; LNA; S-parameter measurements; ULA; antennas; array factor; coupling effect; coupling-compensation algorithms; delay-sum-type beamformer; electromagnetic mutual coupling; frequency 1.5 GHz to 2.0 Hz; full-wave electromagnetic simulators; semianalytical method; two-dimensional spatiotemporal transfer function; uniform linear array; Antenna measurements; Arrays; Computational modeling; Mutual coupling; Predictive models; Scattering parameters; Transfer functions; Antenna arrays; beamforming; mutual coupling;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2013.2282272