Title :
Generalized Kirchoff´s current and Voltage law formulation for coupled circuit-electromagnetic Simulation with surface Integral equations
Author :
Wang, Yong ; Gope, Dipanjan ; Jandhyala, Vikram ; Shi, C. J Richard
Author_Institution :
Electr. Eng. Dept., Univ. of Washington, Seattle, WA, USA
fDate :
7/1/2004 12:00:00 AM
Abstract :
In this paper, a new formulation for coupled circuit-electromagnetic (EM) simulation is presented. The formulation employs full-wave integral equations to model the EM behavior of two- or three-dimensional structures while using modified nodal analysis to model circuit interactions. A coupling scheme based on charge and current continuity and potential matching, realized as a generalization of Kirchoff´s voltage and current laws, ensures that the EM and circuit interactions can be formulated as a seamless system. While rigorous port models for EM structures can be obtained using the approach discussed herein, it is shown that the coupling paradigm can reveal additional details of the EM-circuit interactions and can provide a path to analysis-based design iteration.
Keywords :
coupled circuits; electromagnetic coupling; integral equations; lumped parameter networks; printed circuits; radiofrequency amplifiers; radiofrequency integrated circuits; system-on-chip; Kirchoff current formulation; Kirchoff voltage law formulation; coupled circuit electromagnetic simulation; electromagnetic circuit interactions; full wave integral equations; model circuit interactions; nodal analysis; potential matching; surface integral equations; three-dimensional structures; two dimensional structures; Circuit simulation; Coupling circuits; Electromagnetic analysis; Finite difference methods; Frequency; Integral equations; Moment methods; RLC circuits; Time domain analysis; Voltage; Coupled circuit–electromagnetic; EM; MoM; method of moments; signal integrity; simulation; surface integral equation;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2004.830482