TY - JOUR
T1 - Efficient design of metamaterial absorbers using parametric macromodels
AU - Antonini, Giulio
AU - Astorino, Maria Denise
AU - Ferranti, Francesco
AU - Frezza, Fabrizio
AU - Tedeschi, Nicola
PY - 2018/7
Y1 - 2018/7
N2 - Metamaterial absorbers have recently attracted a lot of interest for applications spanning from microwave to terahertz, near infrared and optical frequencies, such as electromagnetic compatibility, thermal emitters, solar cells and micro-bolometers. In this paper, a procedure for the efficient design of metamaterial absorbers based on parametric macromodels is presented. These models are used to describe the frequency-domain behaviour of complex systems as a function of frequency and design parameters (e.g., layout features). Parametric macromodels are very efficient and can be used to speed up the design ow in comparison with using electromagnetic simulators for design tasks. The use of quasi-random sequences for the sampling of the design space and of radial basis functions and polynomial functions for the model construction is proposed. Numerical results validate the efficiency and accuracy of the proposed technique for multiple optimizations.
AB - Metamaterial absorbers have recently attracted a lot of interest for applications spanning from microwave to terahertz, near infrared and optical frequencies, such as electromagnetic compatibility, thermal emitters, solar cells and micro-bolometers. In this paper, a procedure for the efficient design of metamaterial absorbers based on parametric macromodels is presented. These models are used to describe the frequency-domain behaviour of complex systems as a function of frequency and design parameters (e.g., layout features). Parametric macromodels are very efficient and can be used to speed up the design ow in comparison with using electromagnetic simulators for design tasks. The use of quasi-random sequences for the sampling of the design space and of radial basis functions and polynomial functions for the model construction is proposed. Numerical results validate the efficiency and accuracy of the proposed technique for multiple optimizations.
KW - Efficient design
KW - Metamaterial absorbers
KW - Optimization
KW - Parametric macromodeling
UR - http://www.scopus.com/inward/record.url?scp=85051623785&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:85051623785
SN - 1054-4887
VL - 33
SP - 772
EP - 780
JO - Applied Computational Electromagnetics Society Journal
JF - Applied Computational Electromagnetics Society Journal
IS - 7
ER -