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Автор Beillard, B.
Автор Chevalier, Y.
Автор Andrieu, J.
Автор Imbs, Y.
Автор Jecko, B.
Дата выпуска 1998
dc.description In the traditional finite difference time domain (FDTD) method, the studied structure is modeled as elementary cells, which sizes have to be small enough to get close to the reality. Then, this discretization is applied to the whole calculation volume, even though some zones do not need such fine discretization. Consequently, this numerical tool requires an important calculation capacity to increase the precision of the grid mesh. For very large dimension structures, computer limitations no longer allow a sufficiently accurate discretization. The aim of this article is to discuss some methods which allow the EM study of large structures containing elements of very unequal size as compared to the wavelengths used, while preserving an acceptable calculation cost. This approach combines finite differences of variable precision and different-sized cells in the same calculation doMayn. It allows a fine discretization of small structures and a rough discretization of the other elements of the EM problem. This spatial subgridding gives a very original possibility of undertaking EM zooms on some specific parts of the calculation doMayn thus allowing a better modelling of the studied structure while preserving good accuracy and an acceptable cost.
Формат application.pdf
Издатель EDP Sciences
Копирайт © EDP Sciences, 1998
Название Spatial subgridding in FDTD
Тип research-article
DOI 10.1051/epjap:1998274
Electronic ISSN 1286-0050
Print ISSN 1286-0042
Журнал The European Physical Journal Applied Physics
Том 4
Первая страница 297
Последняя страница 302
Аффилиация Beillard B.; CREAPE Ingénierie, Parc Ester Technopôle, 87069 Limoges, France
Аффилиация Chevalier Y.; CREAPE Ingénierie, Parc Ester Technopôle, 87069 Limoges, France
Аффилиация Andrieu J.; Institut Universitaire de Technologie de Brive, 7 rue Jules Vallès, 19100 Brive, France
Аффилиация Imbs Y.; Institut Universitaire de Technologie de Brive, 7 rue Jules Vallès, 19100 Brive, France
Аффилиация Jecko B.; Université de Limoges (IRCOM CNRS UMR 6615), 123 rue Albert Thomas, 87060 Limoges Cedex, France
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