Title :
Low-Frequency Scaling of the Standard and Mixed Magnetic Field and Müller Integral Equations
Author :
Bogaert, Ignace ; Cools, Kristof ; Andriulli, Francesco P. ; Bagci, Hakan
Author_Institution :
Dept. of Inf. Technol., Ghent Univ., Ghent, Belgium
Abstract :
The standard and mixed discretizations for the magnetic field integral equation (MFIE) and the Müller integral equation (MUIE) are investigated in the context of low-frequency (LF) scattering problems involving simply connected scatterers. It is proved that, at low frequencies, the frequency scaling of the nonsolenoidal part of the solution current can be incorrect for the standard discretization. In addition, it is proved that the frequency scaling obtained with the mixed discretization is correct. The reason for this problem in the standard discretization scheme is the absence of exact solenoidal currents in the rotated RWG finite element space. The adoption of the mixed discretization scheme eliminates this problem and leads to a well-conditioned system of linear equations that remains accurate at low frequencies. Numerical results confirm these theoretical predictions and also show that, when the frequency is lowered, a finer and finer mesh is required to keep the accuracy constant with the standard discretization.
Keywords :
electromagnetic wave scattering; integral equations; magnetic fields; Muller integral equations; connected scatterer; exact solenoidal current; linear equations; low frequency scaling; low-frequency scattering; magnetic field integral equation; mixed discretization; nonsolenoidal part; rotated RWG finite element space; standard discretization; Accuracy; Equations; Integral equations; Mathematical model; Scattering; Standards; Testing; Accuracy; Müller integral equation; low-frequency stability; magnetic field integral equation; mixed discretization;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2293783