We investigate the accuracy of the combined-field integral equation (CFIE) discretized with the Rao-Wilton-Glisson (RWG) basis functions for the solution of scattering and radiation problems involving three-dimensional conducting objects. Such a low-order discretization with the RWG functions renders the two components of CFIE, i.e., the electric-field integral equation (EFIE) and the magnetic-field integral equation (MFIE), incompatible, mainly because of the excessive discretization error of MFIE. Solutions obtained with CFIE are contaminated with the MFIE inaccuracy, and CFIE is also incompatible with EFIE and MFIE. We show that, in an iterative solution, the minimization of the residual error for CFIE involves a breakpoint, where a furt...
EFIE (electric field integral equation) suffers from internal resonance, and the remedy is to use MF...
The RWG-discretization in Method of Moments (MoM) of the Magnetic-Field and Electric-Field Integral ...
For electromagnetic analysis using method of moments (MoM), three-dimensional (3-D) arbitrary conduc...
We investigate the accuracy of the combined-field integral equation (CFIE) discretized with the Rao-...
We present the linear-linear (LL) basis functions to improve the accuracy of the magnetic-field inte...
We present the linear-linear (LL) basis functions to improve the accuracy of the magnetic-field inte...
Recently, a novel discretization for the magnetic field integral equation (MFIE) was presented. This...
Recent attention has been devoted to the development of nonconforming method-of-moment (MoM) implem...
A new low-order discretization scheme for the identity operator in the magnetic field integral equat...
Recent implementations of the Electric-Field Integral Equation (EFIE) for the electromagnetic scatte...
We consider the accuracy of surface integral equations for the solution of scattering and radiation ...
The inaccuracy of the classical magnetic field integral equation (MFIE) is a long-studied problem. W...
The accuracy of the magnetic-field integral equation (MFIE) for the Method of Moments (MOM) and fast...
Electric-field and magnetic-field integral equations are widely used for the numerical solution of t...
The standard and mixed discretizations for the magnetic field integral equation (MFIE) and the Mulle...
EFIE (electric field integral equation) suffers from internal resonance, and the remedy is to use MF...
The RWG-discretization in Method of Moments (MoM) of the Magnetic-Field and Electric-Field Integral ...
For electromagnetic analysis using method of moments (MoM), three-dimensional (3-D) arbitrary conduc...
We investigate the accuracy of the combined-field integral equation (CFIE) discretized with the Rao-...
We present the linear-linear (LL) basis functions to improve the accuracy of the magnetic-field inte...
We present the linear-linear (LL) basis functions to improve the accuracy of the magnetic-field inte...
Recently, a novel discretization for the magnetic field integral equation (MFIE) was presented. This...
Recent attention has been devoted to the development of nonconforming method-of-moment (MoM) implem...
A new low-order discretization scheme for the identity operator in the magnetic field integral equat...
Recent implementations of the Electric-Field Integral Equation (EFIE) for the electromagnetic scatte...
We consider the accuracy of surface integral equations for the solution of scattering and radiation ...
The inaccuracy of the classical magnetic field integral equation (MFIE) is a long-studied problem. W...
The accuracy of the magnetic-field integral equation (MFIE) for the Method of Moments (MOM) and fast...
Electric-field and magnetic-field integral equations are widely used for the numerical solution of t...
The standard and mixed discretizations for the magnetic field integral equation (MFIE) and the Mulle...
EFIE (electric field integral equation) suffers from internal resonance, and the remedy is to use MF...
The RWG-discretization in Method of Moments (MoM) of the Magnetic-Field and Electric-Field Integral ...
For electromagnetic analysis using method of moments (MoM), three-dimensional (3-D) arbitrary conduc...