DocumentCode :
1197211
Title :
Improved FDTD formulation for high-order linear circuit based on matrix theory and modified integral transform
Author :
Shao, Z. ; Fujise, M.
Author_Institution :
Wireless Commun. Lab., Nat. Inst. of Inf. & Commun. Technol. of Japan, Singapore, Singapore
Volume :
152
Issue :
5
fYear :
2005
Firstpage :
395
Lastpage :
399
Abstract :
An improved finite-difference time-domain formulation using matrix theory and a modified integral transform is presented to address hybrid high-order linear lumped circuit and passive circuit problems. In the traditional hybrid FDTD method, a lumped circuit should be expressed firstly as an equation of current and voltage, and then this equation is discretised explicitly and substituted into Maxwell´s equations. In many cases, this equation cannot be derived and discretised easily. In the improved FDTD formulation, it is possible to analyse a passive circuit integrated with a general linear lumped circuit expressed as not only one equation but also as a set of equations according to Kirchhoff´s laws. When electromagnetic fields, current/current density and interior variables of a set of equations are defined as separated vector elements, a local iterative matrix expression connecting with each active circuit can be built. In order to make this formulation stable, a modified integral transform is given to improve the condition number of the matrix. Simulation shows that results from the improved FDTD formulation can effectively treat high-order linear lumped circuit expressed by a set of equations as well as by one equation.
Keywords :
Maxwell equations; computational electromagnetics; current density; finite difference time-domain analysis; iterative methods; linear network analysis; lumped parameter networks; microwave integrated circuits; transforms; FDTD formulation; Kirchhoff law; Maxwell equation; current density; electromagnetic field; finite-difference time-domain; hybrid high-order linear lumped circuit; local iterative matrix expression; matrix theory; modified integral transform; passive circuit; separated vector element;
fLanguage :
English
Journal_Title :
Microwaves, Antennas and Propagation, IEE Proceedings
Publisher :
iet
ISSN :
1350-2417
Type :
jour
DOI :
10.1049/ip-map:20045155
Filename :
1521996
Link To Document :
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