In this contribution, the Ewald method has efficiently been applied to accelerate the computation of the rectangular waveguide Green’s functions derivatives. Based on previous works, we have outlined new approximation formulae that avoid the evaluation of computationally expensive complementary error functions of complex argument, needed by the Ewald method. This is possible when the internal medium of the rectangular waveguide is homogeneous and lossless. On the other hand, different convergence numerical studies have been carried out, showing a similar convergence rate for computing the original Green’s functions and their derivatives. Moreover, we have checked that the computational time is only slightly increased for obtaini...
An investigation of the Ewald method is presented. The method involves a splitting parameter that is...
Three new numerical methods for the calculation of passive waveguide and antenna structures are pres...
The method of broadband Green's functions with low wavenumber extractions (BBGFL) is used to calcula...
A new efficient technique for computing the Green's functions inside rectangular waveguides is prese...
In this paper we propose to use the Surface Integral Equation technique for the analysis of arbitra...
In this paper, we propose to use the surface integral equation technique for the analysis of arbitr...
The efficient evaluation of Green’s functions is a crucial aspect in the numerical analysis of perio...
The dyadic Green's function for an electric current source placed in a rectangular waveguide is deri...
AbstractGreen's functions are used to solve non homogeneous integral equations with boundary conditi...
A very efficient method for the accurate analysis of arbitrarily shaped H-plane two-port structures ...
A continuous counterpart of the spatial images technique is proposed for the computation of the mult...
The Ewald method is applied to accelerate the evaluation of the Green's function of an infinite peri...
The Ewald method is applied to accelerate the evaluation of the Green's function of an infinite peri...
Three new numerical methods for the calculation of passive waveguide and antenna structures are pres...
Differential equations frequently appear in several areas of mathematics and physics; with the work ...
An investigation of the Ewald method is presented. The method involves a splitting parameter that is...
Three new numerical methods for the calculation of passive waveguide and antenna structures are pres...
The method of broadband Green's functions with low wavenumber extractions (BBGFL) is used to calcula...
A new efficient technique for computing the Green's functions inside rectangular waveguides is prese...
In this paper we propose to use the Surface Integral Equation technique for the analysis of arbitra...
In this paper, we propose to use the surface integral equation technique for the analysis of arbitr...
The efficient evaluation of Green’s functions is a crucial aspect in the numerical analysis of perio...
The dyadic Green's function for an electric current source placed in a rectangular waveguide is deri...
AbstractGreen's functions are used to solve non homogeneous integral equations with boundary conditi...
A very efficient method for the accurate analysis of arbitrarily shaped H-plane two-port structures ...
A continuous counterpart of the spatial images technique is proposed for the computation of the mult...
The Ewald method is applied to accelerate the evaluation of the Green's function of an infinite peri...
The Ewald method is applied to accelerate the evaluation of the Green's function of an infinite peri...
Three new numerical methods for the calculation of passive waveguide and antenna structures are pres...
Differential equations frequently appear in several areas of mathematics and physics; with the work ...
An investigation of the Ewald method is presented. The method involves a splitting parameter that is...
Three new numerical methods for the calculation of passive waveguide and antenna structures are pres...
The method of broadband Green's functions with low wavenumber extractions (BBGFL) is used to calcula...