Annual Review of Progress in Applied Computational Electromagnetics (4th), Held in Monterey, California on March 22-24, 1988

Abstract

Partial Contents: A Finite Element Analysis of Lightning Induced Maxwell Current Densities; Transient Electromagnetic Coupling To A Cavity with Metallic Walls; Finite Element Computer Programs for Microstrip, Waveguides and Cavities; A Time-Domain Differential Solver For Electromagnetic Scattering Problems; A High Frequency Reformulation of the FDTD Algorithm in Generalized Coordinates; Using Impedance Matrix Frequency Derivatives for Estimating Broadband Transfer Functions; The MAFIA Approach to Solving Maxwell's Equations in Three Dimensions; Numerical Integration Schemes In Calculating the Fourier Coefficiencies of the Free-Space Green's Function; A Lattice Representation for Back Face Removal in Electromagnetic Scattering; Floquet Theory Based Modification to NEC-2 for Analysis of Very Large Periodic Planar Arrays; Singularity Expansion Method (SEM) Natural Modes as Efficient Entire Domain Expansion Functions in the Analysis of Frequency Selective Surfaces; Input- Output Issues; Antenna Analysis; Cavities Interactions and Transmission; Antennas Near Ground. Symposia.

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Document Details

Document Type
Technical Report
Publication Date
Mar 24, 1988
Accession Number
ADA217912

Entities

Organizations

  • Naval Postgraduate School

Tags

Communities of Interest

  • Advanced Electronics
  • Air Platforms
  • Energy and Power Technologies
  • Ground and Sea Platforms
  • Sensors

DTIC Thesaurus Topics

  • Antenna Radiation Patterns
  • Computational Fluid Dynamics
  • Computational Science
  • Computer Programming
  • Computer Programs
  • Computers
  • Difference Equations
  • Differential Equations
  • Diffraction
  • Electromagnetic Fields
  • Electromagnetic Scattering
  • Geometry
  • Physical Theories
  • Standing Waves
  • Three Dimensional
  • Two Dimensional

Fields of Study

  • Physics

Readers

  • Electromagnetic Wave Scattering and Antenna Radiation Engineering
  • Finite Element Method (FEM) for solving Partial Differential Equations (PDEs)

Technology Areas

  • Microelectronics
  • Space