Title :
Circuit-based FDTD method for transient analysis of mutually coupled system
Author_Institution :
Kagawa Univ., Takamatsu
fDate :
Aug. 31 2008-Sept. 3 2008
Abstract :
The circuit-based FDTD method for transient analysis of a mutually coupled system is presented. To speed up the transient analysis, the reluctance matrix is introduced. We provide how to generate the sparse reluctance matrix with guaranteed stability. Furthermore, we show that the relaxation methods used for the transient analysis converge when the stability of the reluctance matrix is guaranteed. We confirm that the proposed method is 18 times faster than HSPICE and is 352 times faster than Berkeley SPICE when the full capacitance and inductance matrices are used. Moreover, when the sparse capacitance and inductance matrices are used, the proposed method is 69 times faster than HSPICE and is 1,349 times faster than Berkeley SPICE, though a small-scale problem is analyzed.
Keywords :
finite difference time-domain analysis; network analysis; transient analysis; circuit based FDTD; mutually coupled system; sparse reluctance matrix; transient analysis; Capacitance; Circuit stability; Coupling circuits; Finite difference methods; Inductance; Mutual coupling; Reluctance generators; SPICE; Sparse matrices; Transient analysis;
Conference_Titel :
Electronics, Circuits and Systems, 2008. ICECS 2008. 15th IEEE International Conference on
Conference_Location :
St. Julien´s
Print_ISBN :
978-1-4244-2181-7
Electronic_ISBN :
978-1-4244-2182-4
DOI :
10.1109/ICECS.2008.4674801