Derivation and Application of Dual-Surface Integral Equations for Three- Dimensional, Multi-Wavelength Perfect Conductors

Abstract

We drive the dual-surface electric- and magnetic-field integral equations for 3-D perfectly electrically conducting bodies, prove that they produce a unique solution at all real frequencies, and demonstrate their applicability to multi-wavelength bodies by solving the dual-surface magnetic- field integral equation for a rectangular scatter using the method of conjugate gradients. (R.H.)

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 1989
Accession Number
ADA229076

Entities

People

  • Arthur Yaghjian
  • Margaret Woodworth

Organizations

  • Rome Laboratory

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Boundary Value Problems
  • Central Processing Units
  • Computer Programming
  • Computer Programs
  • Computers
  • Electric Fields
  • Electromagnetic Fields
  • Electromagnetic Scattering
  • Equations
  • Frequency
  • Geometry
  • Integral Equations
  • Integrals
  • Magnetic Fields
  • Resonant Frequency
  • Three Dimensional
  • Two Dimensional

Readers

  • Calculus or Mathematical Analysis
  • Electromagnetic Wave Scattering and Antenna Radiation Engineering
  • Optical Physics and Photonics.