Presentation 2012-06-01
Time-Domain Electromagnetic Simulation Based on Leapfrog Scheme and Retarded Partial Element Equivalent Circuit (PEEC) Method
Tadatoshi SEKINE, Hideki ASAI,
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Abstract(in English) This paper describes a full-wave transient simulation technique based on the retarded partial element equivalent circuit (PEEC) method and a leapfrog scheme. Usually, the quasi-static PEEC method, which does not include retardation of coupling effects, constructs a dense circuit matrix due to instantaneous interaction of the mutual couplings. On the other hand, it is known that sparsity can be exploited if the retardation is taken into account so that the mutual elements affect with delay. The network realized by the PEEC method is often solved by a modified nodal analysis-based direct solver. In this work, we apply the leapfrog scheme to the time domain formulation of the retarded PEEC networks instead of the conventional direct solver. The leapfrog scheme is one of the explicit finite difference methods in the time domain and has an advantage of few computational complexities. Example simulations of asymmetric interconnects show that the leapfrog-based solver is suitable for the full-wave PEEC simulations in the time domain.
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Keyword(in English) electromagnetic simulation / leapfrog scheme / retarded partial element equivalent circuit method / transient analysis
Paper # EMCJ2012-21
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Committee EMCJ
Conference Date 2012/5/24(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Time-Domain Electromagnetic Simulation Based on Leapfrog Scheme and Retarded Partial Element Equivalent Circuit (PEEC) Method
Sub Title (in English)
Keyword(1) electromagnetic simulation
Keyword(2) leapfrog scheme
Keyword(3) retarded partial element equivalent circuit method
Keyword(4) transient analysis
1st Author's Name Tadatoshi SEKINE
1st Author's Affiliation Dept. of Systems Eng., Shizuoka University()
2nd Author's Name Hideki ASAI
2nd Author's Affiliation Dept. of Systems Eng., Shizuoka University
Date 2012-06-01
Paper # EMCJ2012-21
Volume (vol) vol.112
Number (no) 73
Page pp.pp.-
#Pages 6
Date of Issue