Two Dimensional Scattering Analysis of Data-Linked Support Strings for Bistatic Measurement Systems

Abstract

Use of data-linked strings to support a bistatic antenna is being considered as a possible improvement to indoor bistatic radar cross section measurement systems. Analysis of candidate data-linked strings is required to understand the potential clutter contribution posed by such a system. The main objective of this research is to determine the scattering properties of four data-linked support string samples. Another goal is to determine the material properties of the string material through nondestructive means if possible. The final goal is to model the samples as a single wire coated with a dielectric material and determine the validity of the model. To meet these goals, the two dimensional radar cross section of each sample is measured with a focused beam system. The resulting measurements are used in conjunction with an analytic model of a dielectric-coated wire to estimate the material properties of the string material. Finally, a dielectric-coated wire model for each sample is analyzed using COMSOL Multiphysics software, and the results are compared with the measured two dimensional radar cross section.

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Document Details

Document Type
Technical Report
Publication Date
Mar 01, 2009
Accession Number
ADA499180

Entities

People

  • William Keichel

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Advanced Electronics
  • Air Platforms
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Force
  • Air Force Research Laboratories
  • Anechoic Chambers
  • Data Analysis
  • Department Of Defense
  • Dielectric Permittivity
  • Dielectrics
  • Electric Fields
  • Engineering
  • Frequency Response
  • Geometry
  • Information Operations
  • Magnetic Fields
  • Measurement
  • Three Dimensional
  • Two Dimensional
  • United States Government

Fields of Study

  • Physics

Readers

  • Computational Linguistics
  • Metallurgy
  • Phased Array Antenna Design.