TY - GEN
T1 - Mixed volume-surface integral equation solution for complex composite structures
AU - Markkanen, Johannes
AU - Lu, Cai Cheng
AU - Yla-Oijala, Pasi
AU - Sihvola, Ari
PY - 2013
Y1 - 2013
N2 - A mixed volume-surface integral equation (VSIE) solution for complex composite structures is presented. The structures can contain different boundaries such as PEC, PMC, DB, and D′B′ as well as general anisotropic media with permittivity and permeability dyadics differ from those of background. The L2-conforming volume integral equation (VIE) method is applied for penetrable domains (inhomogeneous and anisotropic), and is coupled with the RWG based surface integral equation (SIE) method. This approach allows us to analyze composite structures containing strongly anisotropic materials together with extreme boundary conditions.
AB - A mixed volume-surface integral equation (VSIE) solution for complex composite structures is presented. The structures can contain different boundaries such as PEC, PMC, DB, and D′B′ as well as general anisotropic media with permittivity and permeability dyadics differ from those of background. The L2-conforming volume integral equation (VIE) method is applied for penetrable domains (inhomogeneous and anisotropic), and is coupled with the RWG based surface integral equation (SIE) method. This approach allows us to analyze composite structures containing strongly anisotropic materials together with extreme boundary conditions.
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M3 - Conference contribution
AN - SCOPUS:84883238355
SN - 9784885522772
T3 - 2013 International Symposium on Electromagnetic Theory, EMTS 2013 - Proceedings
SP - 33
EP - 36
BT - 2013 International Symposium on Electromagnetic Theory, EMTS 2013 - Proceedings
T2 - 2013 21st International Symposium on Electromagnetic Theory, EMTS 2013
Y2 - 20 May 2013 through 24 May 2013
ER -