Resumen
Una modificación universal al método de fuentes discretas (MMDS) ha sido aplicada para resolver problemas 2D de frontera de Dirichlet o Neumann cuando el contorno del dispersador es un contorno suave a trazos. Se discuten los problemas de precisión, escogiendo contornos auxiliares, resultados estables, localización y tipo de
contorno en los puntos de quiebre.
Citas
Kupradze, V.D. (1967) “On the approximate solutions of problems in mathematical physics”, Journal Success Mathematical Sci. 22: 58–108.
Kyurkchan, A.G. (1986) “Analytical continuation of wave fields”, Journal of Radiotekh. and Electron 31: 1294–1303.
Kyurkchan, A.G. (1986) “Representation of diffraction fields by wave potentials and the method of auxiliary currents in problems of the diffraction of electromagnetic waves”, Journal Radiotekh. and Electron 31: 20–27.
Kyurkchan, A.G.; Sternin, B.Yu.; Shatalov, V.E. (1996) “Singularities of continuation of wave fields”, Journal Usp. Fiz. Nauk 166: 1285–1312.
Obelleiro, F.; Landesa, L.; Rodrigues, J.L.; Pino, M.R.; Sabariego, R.V.; Leviatan, Y. (2001) “Localized iterative generalized multipole technique for large two-dimentional scattering problems” IEEE Tr. on Antennas and Propagation 49: 961–970.
Kaklamani, D.I.; Anastassiu, H.T. (2002) “Aspects of the method of auxiliary sources in computational electromagnetics”, IEEE Antenna and Propagation Magazine 44: 48–64.
Kyurkchan, A.G.; Minaev, S.A.; Soloveichik, A.L. (2001) “A modification of the method of discrete sources based on prior information about singularities of the diffracted field”, Journal of Radiotekh. and Electron 46: 666–672.
Anyutin, A.P.; Kyurkchan, A.G.; Minaev, S.A. (2002) “A modification of the method of discrete sources”, Journal Radiotekh. and Electron 47(8): 955–960.
Anyutin, A.P.; Kyurkchan, A.G.; Minaev, S.A. (2002) “Application of MMDS in 2D and 3D scattering problems”, Proceedings of International Symposium on Antennas JINA 2002 (Vol.2), Nice : 213–216.
Anyutin, A.P.; Kyurkchan, A.G.; Minaev, S.A. (2002) “Universal modification of the 2D and 3D method of discrete sources”, Proceedings of XXVII-th URSI General Assembly, Maastricht, August.
Keller, J.B. (1962) “Geometrical theory of diffraction”, Journal of Opt. Soc. Amer. 52(2): 116–130.
Borovikov, V.A.; Kinber, B.E. (1978) Geometrical Theory of Diffraction. Svyaz, Moscow