Electric field integral equation (EFIE), magnetic field integral equation (MFIE), and combined field integral equation (CFIE) are solved using curvilinear triangular patches with line matching. Their self-term and near-neighbor-term singularities are evaluated in closed forms to obtain the matrix elements by standard numerical integration methods.link_to_subscribed_fulltex
Integral equations have proven their popularity for the electromagnetic analysis of radiation and sc...
The combined-field integral equation (CFIE) is employed to formulate the electromagnetic scattering ...
An improved implementation of the magnetic-field integral equation (MFIE) is presented in order to e...
Considerable interest exists currently in the development of computer codes for studying electromagn...
We consider hybrid formulations involving simultaneous applications of the electric-field integral e...
Abstract—This work presents a fast computational algorithm that can be used as an alternative to the...
Computational electromagnetics relies heavily on surface integral equations for the efficient calcul...
Combined-field integral equation (CFIE) is modified and generalized to formulate the electromagnetic...
We present generalized hybrid surface integral-equation formulations for three-dimensional conductor...
©2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
Surface Integral Equation (SIE) methods routinely require the integration of the singular Green's fu...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
Integral equations have proven their popularity for the electromagnetic analysis of radiation and sc...
The combined-field integral equation (CFIE) is employed to formulate the electromagnetic scattering ...
An improved implementation of the magnetic-field integral equation (MFIE) is presented in order to e...
Considerable interest exists currently in the development of computer codes for studying electromagn...
We consider hybrid formulations involving simultaneous applications of the electric-field integral e...
Abstract—This work presents a fast computational algorithm that can be used as an alternative to the...
Computational electromagnetics relies heavily on surface integral equations for the efficient calcul...
Combined-field integral equation (CFIE) is modified and generalized to formulate the electromagnetic...
We present generalized hybrid surface integral-equation formulations for three-dimensional conductor...
©2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
Surface Integral Equation (SIE) methods routinely require the integration of the singular Green's fu...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
A general and effective method is presented to numerically solve the electric field integral equatio...
Integral equations have proven their popularity for the electromagnetic analysis of radiation and sc...
The combined-field integral equation (CFIE) is employed to formulate the electromagnetic scattering ...
An improved implementation of the magnetic-field integral equation (MFIE) is presented in order to e...