Model Studies of Surface Noise Interference in Ground-Probing Radar,

Abstract

Ground-probing radar can be an effective tool for exploring the top 10 to 20 m of ground, especially in cold regions where the freezing of water decreases signal absorption. However, the large electrical variability of the surface, combined with the short wavelengths used, can often cause severe ground clutter that can mask a desired, deeper return. In this study a model facility was constructed consisting of a metallic reflector covered by sand. Troughs of saturated sand were emplaced at the surface to carry surface electrical properties and to act as a noise source to interfere with the bottom reflections. Antenna polarization and height, and signal stacking in both static (antennas stationary) and dynamic (antennas moving) modes were then investigated as methods for reducing the surface clutter. Polarization parallel to the profile direction (perpendicular to the troughs' axes) gave profiles superior to the perpendicular case because of the dimensional sensitivity of the antenna radiation. Dynamic stacking greatly improved the signal-to-noise ratio because noise sources were averaged as the antennas moved, while the desired reflector, buried at constant depth, was enhanced. Raising the antennas above the surface also reduced noise because the surface area over which reflections were integrated increased. All three noise reduction techniques could be effective in surveys for reflectors at nearly constant depth such as groundwater tables or ice/water interfaces of the lateral variation in undesired ground properties is sufficiently random. (Author)

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Document Details

Document Type
Technical Report
Publication Date
Nov 01, 1985
Accession Number
ADA163208

Entities

People

  • Allan J. Delaney
  • Steven A. Arcone

Organizations

  • Cold Regions Research and Engineering Laboratory

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Cold Regions
  • Dielectric Permittivity
  • Dielectric Polymers
  • Dielectric Properties
  • Electrical Properties
  • Engineering
  • Engineers
  • Frequency
  • Ground Clutter
  • Groundwater
  • New York
  • Noise Reduction
  • Radar
  • Radiation Patterns
  • Reflectors
  • Regions
  • Test Facilities

Readers

  • Geotechnical Engineering.
  • Phased Array Antenna Design.