Detecting Moving Targets in Clutter in Airborne SAR via Keystoning and Multiple Phase Center Interferometry

Abstract

Without motion compensation, Synthetic Aperture Radar (SAR) images of the ground are generally blurred. In 1997, MITRE reported the development technique called the Keystone Process for removing the range migration caused by the radial velocity component of each pixel's movement within the scene, whether moving or stationary with respect to the ground. When applied to multiple phase center phased array radar data, this first pass process allows for automated detection of moving targets via phase thresholding. Once detected in phase space, the moving targets can be individually and automatically focused using the procedures previously reported. Automated positioning of the detected target within the formed image is then accomplished (georegistration). We can easily detect and accurately georegister bright (large radar cross-sections) moving targets using a phase threshold technique reported herein. However, we have found that, for smaller targets, the phase differences between the cells containing the moving target can be greatly distorted by the presence of strong ground clutter. Only after the ground clutter is cancelled will the phase difference be sufficiently dominated by the target response to allow accurate geopositioning. Herein we describe one technique whereby the clutter may be cancelled by using multiple phase centers.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2006
Accession Number
AD1106873

Entities

People

  • D. M. Zasada
  • P. K. Sanyal
  • R. P. Perry

Organizations

  • MITRE Corporation

Tags

Communities of Interest

  • Materials and Manufacturing Processes
  • Space

DTIC Thesaurus Topics

  • Cancellation
  • Clutter
  • Compensation
  • Composite Images
  • Detection
  • Frequency
  • Ground Clutter
  • Images
  • Interferometry
  • Moving Targets
  • Multiple Targets
  • Phased Array Radar
  • Phased Arrays
  • Platforms
  • Radar
  • Radar Cross Sections
  • Radial Velocity
  • Synthetic Aperture Radar
  • Target Detection
  • Targets

Fields of Study

  • Physics

Readers

  • Radar Systems Engineering.
  • Sensor Fusion and Tracking Systems.

Technology Areas

  • Space
  • Space - Space Objects