DocumentCode
269637
Title
Field leakage reduction using a two-dimensional matched numerical dispersion method and high-order cubic curvilinear interpolation [em programmer´s notebook]
Author
Yardim, Funda Ergün ; Akcam, Nursel
Author_Institution
Electr.-Electron. Eng. Dept., Gazi Univ., Ankara, Turkey
Volume
55
Issue
6
fYear
2013
fDate
Dec. 2013
Firstpage
155
Lastpage
169
Abstract
In this study, the Total Field/Scattered Field (TF/SF) formulation, one of the methods used for effectively introducing far-field sources into the Finite-Difference Time-Domain (FDTD) Method, is described in detail. The incident fields required for the implementation of the TF/SF formulation were obtained by the Incident Field Array (IFA) Method. The errors introduced in the Incident Field Array Method were presented by numerical examples, and the Matched Numerical Dispersion (MND) Method was applied to a two-dimensional FDTD grid. It was also shown that for wideband pulse excitations, applying the Matched Numerical Dispersion Method to the TF/SF wave source reduced the field leakages nearly 200 dB (subject to double-precision implementation) compared to the Single-Frequency Compensation method for angles of incidence φ = 45. However, a similar improvement could not be obtained for an angle of incidence of φ =30. It was demonstrated that by using higher-order cubic curvilinear interpolation instead of the linear interpolation used in the Incident Field Array Method, the field leakage could be approximately reduced by 70 dB for an angle of incidence of φ = 45 . This higher-order interpolation technique is applicable for any time-dependent plane wave. A 1 GHz sinusoidal wave was used as the incident wave in the simulation.
Keywords
UHF radio propagation; compensation; electromagnetic wave scattering; finite difference time-domain analysis; interpolation; IFA method; MND method; TF-SF formulation; TF-SF wave source; electromagnetic scattering problems; far field sources; field leakage reduction; finite-difference time-domain method; frequency 1 GHz; higher-order cubic curvilinear interpolation technique; incident field array method; matched numerical dispersion method; single-frequency compensation method; sinusoidal wave; time-dependent plane wave; total field-scattered field formulation; two-dimensional FDTD grid; two-dimensional matched numerical dispersion method; wideband pulse excitations; Dispersion; Finite difference methods; Interpolation; Leaky wave antennas; Mathematical model; Time-domain analysis; IFA; MND method; TF/SF formulation; single frequency compensation;
fLanguage
English
Journal_Title
Antennas and Propagation Magazine, IEEE
Publisher
ieee
ISSN
1045-9243
Type
jour
DOI
10.1109/MAP.2013.6781723
Filename
6781723
Link To Document