A new diffraction coefficient, obtained by modifying the Maliuzhinets' diffraction coefficient, has been proposed here in this article for a double﹍ayered dielectric wedge which can be considered as an approximated version of a snow or vegetationヽovered dielectric wedge in a practical propagation ...
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A more convenient normalized Maliuzhinets function is introduced and new methods of approximating this function are proposed. The Osipov''s algorithm is adapted to this normalized function, which provides more accuracy, an extension of the validity domain of the approximation, and more efficiency in...
Lavergnat, "Comparison of Luebbers' and Maliuzhinets' wedge diffraction coefficients in urban channel modeling," Progress Electromagn. Res., pp. 1-28, PIER 33, 2001.M. A¨idi and J. Lavergnat, Comparison of Luebbers' and Maliuzhi- nets' wedge diffraction coefficients in urban channel ...
B. Wang, "Calculation of Maliuzhinets function in complex region," IEEE Trans. Antennas Propagat., vol. 44, pp. 1195-1196, Aug. 1996.Hu Jin-Lin, Lin Shi-Ming, Wang Wen-Bing, Calculation of Maliuzhinets function in complex region, IEEE Trans. Antennas Propagat. 44 (1996) 1195-...
The Maliuzhinets function (MF) has been used for the diffraction problem of waves by a wedge with different face impedances. For a wedge with arbitrary angle, the Maliuzhinets function is cumbersome to compute which is a major limitation to the use of rigorous theory of diffraction in ...
This requires the asymptotic evaluation of the Maliuzhinets functions in various regions of the spectral domain. Furthermore, several constants that appear in the analysis are exactly related to the field and its derivatives evaluated at the edge or junction of the body under study. The ...
Maliuzhinets half-plane functionThis paper presents the comments on "Exact evaluation of the Maliuzhinets half-plane function".doi:0018-926X(2007)55:11<3366:COEEOT>2.0.TX;2-9Nadarajah, S.IEEE Transactions on Antennas and PropagationS. Nadarajah "Comments on ‘Exact evaluation of...
The solution of Maliuzhinets of the diffraction problem of waves by an impedance wedge is transformed into a physical optics integral. The resultant expression is suitable for the investigation of various diffraction problems having impedance wedges. The method is applied to the scattering of waves ...