Reduced Order Electromagnetic Models for On-Chip Passives Based on Dual Finite Integrals Technique. Ioan, D., Ciuprina, G., & Mihalache, D. In Ciuprina, G. & Ioan, D., editors, Scientific Computing in Electrical Engineering SCEE 2006, of Mathematics in Industry, pages 287–295, Berlin, 2007. Springer. abstract bibtex To solve field-circuits coupled problems, the electromagnetic field equations are discretized by the dual finite integration technique (dFIT), a numerical method which allows the accuracy control of the extracted parameters. Several techniques are used to accelerate the extraction process, such as minimal virtual boundary, minimal mesh and minimal frequency samples set. The behavior of the synthesized SPICE model extracted with proposed algorithm, in the case of passive on-chip devices placed on silicon substrate shows good agreement with respect to the measurements
@InProceedings{ Ioan_2007aa,
abstract = {To solve field-circuits coupled problems, the electromagnetic field equations are discretized by the dual finite integration technique (dFIT), a numerical method which allows the accuracy control of the extracted parameters. Several techniques are used to accelerate the extraction process, such as minimal virtual boundary, minimal mesh and minimal frequency samples set. The behavior of the synthesized SPICE model extracted with proposed algorithm, in the case of passive on-chip devices placed on silicon substrate shows good agreement with respect to the measurements},
address = {Berlin},
author = {Ioan, Daniel and Ciuprina, Gabriela and Mihalache, Diana},
booktitle = {Scientific Computing in Electrical Engineering {SCEE} 2006},
editor = {Ciuprina, Gabriela and Ioan, Daniel},
file = {Ciuprina_2007aa.pdf},
isbn = {978-3540719793},
keywords = {mor,field,physics},
langid = {english},
number = {11},
pages = {287--295},
publisher = {Springer},
series = {Mathematics in Industry},
title = {Reduced Order Electromagnetic Models for On-Chip Passives Based on Dual Finite Integrals Technique},
year = {2007}
}
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