Accuracy analysis of the method of auxiliary sources (MAS) for scattering from a two-layer dielectric circular cylinder

@article{Tsitsas2005AccuracyAO,
  title={Accuracy analysis of the method of auxiliary sources (MAS) for scattering from a two-layer dielectric circular cylinder},
  author={Nikolaos L. Tsitsas and E. G. Alivizatos and H. T. Anastassiu and D. I. Kaklamani},
  journal={2005 IEEE Antennas and Propagation Society International Symposium},
  year={2005},
  volume={3B},
  pages={356-359 vol. 3B}
}
The paper rigorously investigates the accuracy of MAS when the method is applied to normal incidence scattering by an infinite circular cylinder composed of two dielectric layers. For this particular scattering configuration, we prove that the MAS matrix is analytically invertible. Numerical and analytical results for the computational error, which results from numerical inversion, are presented. Finally, error minimization indicates the auxiliary sources' optimal location. 

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N. L. Tsitsas, E. G. Alivizatos, H. T. Anastassiu, D. l
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Highly Influenced

Optimization of the method of auxiliary sources ( MAS ) for scattering by an infinite cylinder under oblique incidence

E. G. Alivizatos N. L. Tsitsas, H. T. Anastassiu, D. l. Kaklamani
Electromagnetics • 2005

Kaklamani, "Error estimation and optimization of the method of auxiliary sources (MAS) for scattering from a dielectric circular cylinder,

D.I.H.T. Anastassiu
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H.T.D. 1. Kaklamani
IEEE Antennas and Propagation Magazine, • 2002
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Aspects of the method of auxiliary sources ( MAS ) in computational electromagnetics

Kaklamani, H. T. Anastassiu
IEEE Antennas and Propagation Magazine • 2002

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John Wiley and Sons, New York • 1979
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Error estimation and optimization of the method of auxiliary sources ( MAS ) for scattering from a dielectric circular cylinder

D. I. Kaklamani
Radio Science