Title :
Electromagnetic vs. plane wave models for superdirective 2D adaptive HF receive antenna performance assessment
Author :
San Antonio, Geoffrey ; Abramovich, Yuri I. ; Frazer, Gordon J. ; Williams, Charles
Author_Institution :
US Naval Res. Lab., Washington, DC, USA
Abstract :
This paper demonstrated how a 2D planar oversampled HF receive array manifold can be modeled by NEC and utilized to asses the performance of conventional and optimal beamforming techniques. It is shown that the full EM array model behaves similar to a planewave manifold model in the presence of strong non-isotropic external noise. Furthermore it is demonstrated that the optimal beamformer solutions computed with a manifold not calibrated to the true EM manifold will exhibit some amount of mismatch loss in directions of strong external noise. In a subsequent full paper, we will comment further on the robustness of the EM model antenna manifold predication to small model perturbations (i.e. changes in ground conditions, element errors, etc.) and on the efficiency of a number antenna calibration techniques that can be used to avoid the SENR losses associated with antenna manifold mismatch.
Keywords :
adaptive antenna arrays; array signal processing; calibration; receiving antennas; 2D planar oversampled HF receive array manifo; NEC; antenna manifold predication; conventional beamforming techniques; electromagnetic wave models; element errors; full EM array model; ground conditions; non-isotropic external noise; number antenna calibration techniques; optimal beamforming techniques; plane wave models; superdirective 2D adaptive HF receive antenna performance assessment; Adaptation models; Analytical models; Antenna arrays; Computational modeling; Manifolds; Noise; Numerical models; 2D Arrays; HF OTHR; electromagnetic model; superdirectivity;
Conference_Titel :
Radar Conference (RadarCon), 2015 IEEE
Conference_Location :
Arlington, VA
Print_ISBN :
978-1-4799-8231-8
DOI :
10.1109/RADAR.2015.7131157