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A Novel Absorbing Boundary Condition for the 3-D Split-Step FDTD Method

Author
JIANYI ZHOU1 ; JIANING ZHAO1
[1] State Key Laboratory of Millimeter Waves and the National Mobile Communication Laboratory, Southeast University, Nanjing, China
Source

IEEE microwave and wireless components letters. 2012, Vol 22, Num 4, pp 167-169, 3 p ; ref : 15 ref

ISSN
1531-1309
Scientific domain
Electronics
Publisher
Institute of Electrical and Electronics Engineers, New York, NY
Publication country
United States
Document type
Article
Language
English
Author keyword
Finite-difference time-domain (FDTD) method absorbing boundary condition (ABC) locally one-dimensional FDTD (LOD-FDTD) split-step FDTD (SS-FDTD)
Keyword (fr)
Condition aux limites absorbante Electromagnétisme numérique Modèle 1 dimension Méthode différence finie domaine temps Méthode numérique Méthode à pas Ordre 1 Ordre 2 Précision Simulation numérique
Keyword (en)
Absorbing boundary condition Computational electromagnetics One dimensional model Finite difference time-domain analysis Numerical method Step method First order Second order Accuracy Digital simulation
Keyword (es)
Condiciones límites absorbentes Modelo 1 dimensión Método numérico Método a paso Orden 1 Orden 2
Classification
Pascal
001 Exact sciences and technology / 001B Physics / 001B40 Fundamental areas of phenomenology (including applications) / 001B40A Electromagnetism; electron and ion optics / 001B40A20 Applied classical electromagnetism / 001B40A20J Electromagnetic wave propagation, radiowave propagation

Discipline
Physics : electromagnetism
Origin
Inist-CNRS
Database
PASCAL
INIST identifier
25862399

Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS

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