This paper contains a systematic study of numerical approximations for solving the exact kernel form of Pocklington's integro-differential equation for the current induced on a thin wire by an incident time-harmonic electromagnetic field. We consider various Galerkin (h, p, hp, and adaptive h) and collocation schemes and show that a sensible hp refinement strategy provides a very efficient way to solve the problem. We also describe how the kernel (itself a difficult singular integral) can be evaluated reliably and efficiently
AbstractIn the context of simulation of electromagnetic propagation, the thin wire formalism of Holl...
In this paper we analyze the numerical aspects of the various methodso that have been used to analyz...
We derive and analyse collocation approximations of retarded potential integral equations (RPIEs) ar...
This paper contains a systematic study of numerical approximations for solving the exact kernel form...
We present stability results for a numerical scheme for computing the current induced on the surface...
Abstract We present two new stable schemes for computing the current induced on the surface of a thi...
textabstractIn this paper we introduce an adaptive method for the numerical solution of the Pockling...
Abstract—Pocklington’s integro-differential equation for thin wires with the exact kernel is reformu...
We show that the Pocklington integral equation for time-domain scattering from thin-wire antennas is...
Abstract. We consider the problem of evaluating the current distribution J(z) that is induced on a s...
In this note, an integro-differential equation for the current on a thin wire arbitrarily positioned...
This thesis deals with the numerical solution of acoustic and electromagnetic time-harmonic scatteri...
AbstractIn the context of simulation of electromagnetic propagation, the thin wire formalism of Holl...
In this paper we analyze the numerical aspects of the various methodso that have been used to analyz...
We derive and analyse collocation approximations of retarded potential integral equations (RPIEs) ar...
This paper contains a systematic study of numerical approximations for solving the exact kernel form...
We present stability results for a numerical scheme for computing the current induced on the surface...
Abstract We present two new stable schemes for computing the current induced on the surface of a thi...
textabstractIn this paper we introduce an adaptive method for the numerical solution of the Pockling...
Abstract—Pocklington’s integro-differential equation for thin wires with the exact kernel is reformu...
We show that the Pocklington integral equation for time-domain scattering from thin-wire antennas is...
Abstract. We consider the problem of evaluating the current distribution J(z) that is induced on a s...
In this note, an integro-differential equation for the current on a thin wire arbitrarily positioned...
This thesis deals with the numerical solution of acoustic and electromagnetic time-harmonic scatteri...
AbstractIn the context of simulation of electromagnetic propagation, the thin wire formalism of Holl...
In this paper we analyze the numerical aspects of the various methodso that have been used to analyz...
We derive and analyse collocation approximations of retarded potential integral equations (RPIEs) ar...