Asymptotic expressions are derived for the dyadic Green's functions of antennas radiating in the presence of a multilayered cylinder, where analytic representation of the asymptotic expansion coefficients eliminates the computational cost of numerical evaluation. As a result, the asymptotic extraction technique has been applied only once for a large summation order $n$. In addition, the Hankel function singularity encountered for source and evaluation points at the same radius has been eliminated using analytical integration
Finite phased arrays of printed dipoles on electrically large coated cylinders using spatial domain ...
Various arrays consisting of finite number of printed dipoles on electrically large dielectric coate...
This paper presents an efficient technique for evaluating Green’s functions associated to layered m...
An efficient model is developed to accelerate the convergence of the dyadic Green's function's (DGF)...
An efficient algorithm is introduced to enhance the convergence of dyadic Green's functions (DGF) in...
Spiral antennas have a wide range of applications in communications because they are circularly pola...
Cataloged from PDF version of article.An efficient method to evaluate the surface fields excited on...
This paper presents an efficient technique for evaluating Green’s functions associated to layered me...
Cataloged from PDF version of article.Closed-form Green's function (CFGF) representations for cylind...
Closed-form Green's function (CFGF) representations for cylindrically stratified media are developed...
Cataloged from PDF version of article.Various arrays consisting of finite number of printed dipoles ...
This paper presents an efficient technique for eval- uating Green's functions associated to layered...
Cataloged from PDF version of article.Closed-form Green’s function (CFGF) representations for cylind...
Closed-form Green's function (CFGF) representations for cylindrically stratified media, which can be...
Closed-form Green's function (CFGF) representations are developed for tangential magnetic current so...
Finite phased arrays of printed dipoles on electrically large coated cylinders using spatial domain ...
Various arrays consisting of finite number of printed dipoles on electrically large dielectric coate...
This paper presents an efficient technique for evaluating Green’s functions associated to layered m...
An efficient model is developed to accelerate the convergence of the dyadic Green's function's (DGF)...
An efficient algorithm is introduced to enhance the convergence of dyadic Green's functions (DGF) in...
Spiral antennas have a wide range of applications in communications because they are circularly pola...
Cataloged from PDF version of article.An efficient method to evaluate the surface fields excited on...
This paper presents an efficient technique for evaluating Green’s functions associated to layered me...
Cataloged from PDF version of article.Closed-form Green's function (CFGF) representations for cylind...
Closed-form Green's function (CFGF) representations for cylindrically stratified media are developed...
Cataloged from PDF version of article.Various arrays consisting of finite number of printed dipoles ...
This paper presents an efficient technique for eval- uating Green's functions associated to layered...
Cataloged from PDF version of article.Closed-form Green’s function (CFGF) representations for cylind...
Closed-form Green's function (CFGF) representations for cylindrically stratified media, which can be...
Closed-form Green's function (CFGF) representations are developed for tangential magnetic current so...
Finite phased arrays of printed dipoles on electrically large coated cylinders using spatial domain ...
Various arrays consisting of finite number of printed dipoles on electrically large dielectric coate...
This paper presents an efficient technique for evaluating Green’s functions associated to layered m...