A 3-D PEEC Formulation Based on the Cell Method for Full-Wave Analyses With Conductive, Dielectric, and Magnetic Media.

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Bibliographic Details
Title: A 3-D PEEC Formulation Based on the Cell Method for Full-Wave Analyses With Conductive, Dielectric, and Magnetic Media.
Authors: Torchio, R.1, Alotto, P.1, Bettini, P.1, Voltolina, D.1, Moro, F.1
Source: IEEE Transactions on Magnetics. Mar2018, Vol. 54 Issue 3, p1-4. 4p.
Subjects: Full-wave rectifiers, Magnetic materials, Integrals, Electromagnetic coupling, Integral equations
Abstract: A novel partial element equivalent circuit (PEEC) formulation for solving full-Maxwell’s equations, with piecewise homogeneous and linear conductive, dielectric, and magnetic media, is presented. It is based on the cell method which by using integral variables as problem unknowns is naturally suited for developing circuit-like approaches such as PEEC. Volume meshing allows complex 3-D geometries, with electric and magnetic materials, to be discretized. Electromagnetic couplings in the air domain are modeled by integral equations. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:A novel partial element equivalent circuit (PEEC) formulation for solving full-Maxwell’s equations, with piecewise homogeneous and linear conductive, dielectric, and magnetic media, is presented. It is based on the cell method which by using integral variables as problem unknowns is naturally suited for developing circuit-like approaches such as PEEC. Volume meshing allows complex 3-D geometries, with electric and magnetic materials, to be discretized. Electromagnetic couplings in the air domain are modeled by integral equations. [ABSTRACT FROM AUTHOR]
ISSN:00189464
DOI:10.1109/TMAG.2017.2750319