Integral equations in problems of electromagnetic-wave diffraction by unclosed cylindrical surfaces
Journal Article
·
· Sov. Phys. - Dokl. (Engl. Transl.); (United States)
OSTI ID:5601959
A numerical method is proposed for solving the problem of electromagnetic wave diffraction by a perfectly conducting open cylindrical surface whose transverse dimensions are commensurate with the wavelength. The approach is practically independent of the shape of the cross section of the surface and at the same time permits reduction of the problem to the solution of one Fredholm equation of the first kind. This equation can be solved numerically on the basis of the method of self-regularization. The method is easily extended to the case of a finite number of piecewise-smooth cylindrical surfaces. Although only the plane problem is examined, an analogous approach is also possible in the three-dimensional case.
- Research Organization:
- Moskovskii Elektrotekhnicheskii Institut Sviazi; Moskovskii Gosudarstvennyi Universitet, Moscow, USSR
- OSTI ID:
- 5601959
- Journal Information:
- Sov. Phys. - Dokl. (Engl. Transl.); (United States), Journal Name: Sov. Phys. - Dokl. (Engl. Transl.); (United States) Vol. 25; ISSN SPHDA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
657007* -- Electricity & Magnetism-- (-1987)
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
COHERENT SCATTERING
CYLINDERS
DIFFERENTIAL EQUATIONS
DIFFRACTION
ELECTROMAGNETIC RADIATION
EQUATIONS
FREDHOLM EQUATION
INTEGRAL EQUATIONS
NUMERICAL SOLUTION
PARTIAL DIFFERENTIAL EQUATIONS
POLARIZATION
RADIATIONS
SCATTERING
WAVE EQUATIONS
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
COHERENT SCATTERING
CYLINDERS
DIFFERENTIAL EQUATIONS
DIFFRACTION
ELECTROMAGNETIC RADIATION
EQUATIONS
FREDHOLM EQUATION
INTEGRAL EQUATIONS
NUMERICAL SOLUTION
PARTIAL DIFFERENTIAL EQUATIONS
POLARIZATION
RADIATIONS
SCATTERING
WAVE EQUATIONS