Title :
Generalized Impedance Boundary Condition for Conductor Modeling in Surface Integral Equation
Author :
Qian, Zhi Guo ; Chew, Weng Cho ; Suaya, Roberto
Author_Institution :
Illinois Univ., Urbana
Abstract :
A generalized impedance boundary condition is developed to rigorously model on-chip interconnects in the full-wave surface integral equation by a two-region formulation. It is a combination of the electric-field integral equation for the exterior region and the magnetic-field integral equation for the interior conductive region. The skin effect is, therefore, well captured. A novel integration technique is proposed to evaluate the Green´s function integrals in the conductive medium. Towards tackling large-scale problems, the mixed-form fast multipole algorithm and the multifrontal method are incorporated. A new scheme of the loop-tree decomposition is also used to alleviate the low-frequency breakdown for the formulation. Numerical examples show the accuracy and reduced computation cost.
Keywords :
Green´s function methods; conductors (electric); electric field integral equations; integrated circuit interconnections; magnetic field integral equations; Green´s function integrals; conductive medium; conductor modeling; electric-field integral equation; full-wave surface integral equation; generalized impedance boundary condition; integration technique; magnetic-field integral equation; mixed-form fast multipole algorithm; multifrontal method; on-chip interconnects; Full-wave solver; generalized impedance boundary condition; impedance boundary condition; interconnects; loop tree; mixed-form fast multipole algorithm; skin effect; surface integral equation;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2007.908678