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Issue title: Selected Papers from ISEF-2013
Guest editors: Paolo Di Barba and Słwomir Wiak
Article type: Research Article
Authors: Pyrialakos, Georgios G.a | Kantartzis, Nikolaos V.a | Tsiboukis, Theodoros D.a; *
Affiliations: [a] Department of Electrical and Computer Engineering, Aristotle University of Thessaloniki, Thessaloniki, Greece | University of Pavia, Pavia, Italy | Łódź University of Technology, Łódź, Poland
Correspondence: [*] Corresponding author: Theodoros D. Tsiboukis, Department of Electrical and Computer Engineering, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece. Tel.: +30 2310 996 323; Fax: +30 2310 996 299; E-mail: [email protected]
Abstract: A consistent time-domain methodology for the systematic design and broadband assessment of complicated nanostructured EMC devices is introduced in this paper. The novel technique combines a family of nonstandard locally one-dimensional finite-difference time-domain schemes with the advanced features of contemporary graphics processor units in general curvilinear coordinates which preserve the hyperbolic profile of Maxwell's laws. In this way, the resulting formulation remains completely explicit and generates effective dual meshes free of artificial vector parasites or spurious modes, while the frequency-dependent attributes of every setup are successfully modelled. Numerical results reveal the significant reduction of dispersion errors along with the considerable speedup compared to serialised realisations through various fabric/epoxy devices with nanocomposite media.
Keywords: Nonstandard schemes, unconditionally-stable techniques, FDTD method, GPU computing, EMC problems
DOI: 10.3233/JAE-141950
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 46, no. 2, pp. 389-399, 2014
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