Electromagnetic scattering of an anisotropically coated tubular cylinder.
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Authors
Yu, Chen-Kuo
Advisors
Lee, Hung-Mou
Second Readers
Subjects
zero backscattering cross section
impedance boundary condition
anisotropic surface impedance
impedance boundary condition
anisotropic surface impedance
Date of Issue
1997-03
Date
Publisher
Monterey, California. Naval Postgraduate School
Language
en_US
Abstract
The sum difference surface current formulation is introduced to treat electromagnetic boundary value problems when anisotropic impedances are specified on both sides of a surface. It can also be applied to impedance coated bodies. This formulation preserves the duality nature of Maxwell equations and carries it over into the algebraic form of the integrodifferential operators in the equations for surface currents. Since a 90 rotation is equivalent to undergoing a duality transform for an incident plane wave, this particular symmetry in the algebraic form of the operators leads to sufficient conditions under which the on-axis backscattering of an anisotropic impedance coated scatterer having a 90 rotational symmetry is eliminated. The sum difference formulation is utilized for solving the problem of electromagnetic scattering from an anisotropically impedance coated tubular cylinder of finite length. The solution has been coded in FORTRAN and tested. Some interesting results are presented and discussed
Type
Thesis
Description
Series/Report No
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Organization
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NPS Report Number
Sponsors
Funding
Format
ix, 116 p.;28 cm.
Citation
Distribution Statement
Approved for public release; distribution is unlimited.
