Presentation 2015/1/15
Antenna analysis on the periodic structure using FDTD method implemented Surface Impedance Boundary Conditions
Masahiro GUNJI, Toru UNO, Takuji ARIMA,
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Abstract(in English) In recent years, metamaterials are widely investigated in electromagnetic field. Metamaterials are artificial materials that exhibit novel characteristics that may not be found in nature and consist of periodic structures. Some of them have the Electromagnetic Band-Gap (EBG) or Artificial Magnetic Conductor (AMC) property. In order to develop new application with utilizing metamaterials, numerical calculations are needed. In these calculations, huge computation resources are required to model periodic structures. This paper proposes FDTD calculation which implemented Surface Impedance Boundary Conditions (SIBC) to reduce analysis time and computer memories for analysis of single source problem in periodic structures, and considered the usefulness of this method by comparing normal FDTD method.
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Keyword(in English) Finite-Difference Time-Domain (FDTD) method / Surface Impedance Boundary Conditions (SIBC) / periodic structures
Paper # A・P2014-167
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Conference Date 2015/1/15(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Antenna analysis on the periodic structure using FDTD method implemented Surface Impedance Boundary Conditions
Sub Title (in English)
Keyword(1) Finite-Difference Time-Domain (FDTD) method
Keyword(2) Surface Impedance Boundary Conditions (SIBC)
Keyword(3) periodic structures
1st Author's Name Masahiro GUNJI
1st Author's Affiliation Graduate School & Engineering, Tokyo University of Agriculture and Technology()
2nd Author's Name Toru UNO
2nd Author's Affiliation Graduate School & Engineering, Tokyo University of Agriculture and Technology
3rd Author's Name Takuji ARIMA
3rd Author's Affiliation Graduate School & Engineering, Tokyo University of Agriculture and Technology
Date 2015/1/15
Paper # A・P2014-167
Volume (vol) vol.114
Number (no) 396
Page pp.pp.-
#Pages 6
Date of Issue