The article illustrates a formulation to evaluate the array Green's function (AGF) of large finite planar phased array for observation points on the array plane, possibly close to the array contour. The procedure is based on the AGF representation in terms of a double spectral integral, whose integration paths are properly deformed to have an exponential attenuation of the integrand. The diffraction integral is evaluated numerically for point close to the array edges while an asymptotic treatment is proposed far from the edges. This latter comprises higher order contributions. Thanks to the convergence properties, the final algorithm is numerically accurate, stable and more efficient with respect to the individual element summation for larg...
This paper deals with the derivation and physical interpretation of a uniform high frequency represe...
This second part of a three-paper sequence deals with the spatial domain parametrization and physica...
An efficient method-of-moments (MoM) based domain decomposition technique, viz., the domain Green's ...
The article illustrates a formulation to evaluate the array Green's function (AGF) of large finite p...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
High-fequency Green's function for a rectangular array of dipoles with weakly varying tapered excita...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
This paper deals with the derivation and physical interpretation of a uniform high-frequency represe...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
Previous results that are valid for equiamplitude excitation are extended to accommodate tapered ill...
This paper deals with the derivation and physical interpretation of a uniform high frequency represe...
This second part of a three-paper sequence deals with the spatial domain parametrization and physica...
An efficient method-of-moments (MoM) based domain decomposition technique, viz., the domain Green's ...
The article illustrates a formulation to evaluate the array Green's function (AGF) of large finite p...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
In this Communication, we provide an efficient algorithm for the evaluation of the semi-infinite arr...
This paper deals with the construction, physical interpretation and application of a uniform high-fr...
High-fequency Green's function for a rectangular array of dipoles with weakly varying tapered excita...
This paper deals with the derivation and physical interpretation of a uniform high-frequency Green's...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
This paper deals with the derivation and physical interpretation of a uniform high-frequency represe...
Abstract. This paper deals with the derivation and physical interpretation of a uniform high-frequen...
A simple scheme is developed to compute the Green's function of a periodic semiinfinite array in fre...
Previous results that are valid for equiamplitude excitation are extended to accommodate tapered ill...
This paper deals with the derivation and physical interpretation of a uniform high frequency represe...
This second part of a three-paper sequence deals with the spatial domain parametrization and physica...
An efficient method-of-moments (MoM) based domain decomposition technique, viz., the domain Green's ...