Doppler Aliasing Reduction in Wide-Angle Synthetic Aperture Radar Using Phase Modulated Random Stepped-Frequency Waveforms

Abstract

This research investigates the benefits of using several phase modulated Random Stepped Frequency (RSF) waveforms in a Wide-Angle Synthetic Aperture Radar (WA-SAR) scenario. RSF waveforms have been demonstrated to have desirable properties which allow for cancelling of Doppler aliased scatterers in WA-SAR images. Additional aliased energy reduction is realized by improving the uniformity of the frequency coverage across the waveform?s bandwidth. Phase code modulations applied to the subpulses of a RSF waveform spread the subpulse frequency content and improve WA-SAR image quality. A length 13 Barker code applied to a RSF waveform produces an image with a 91.95% reduction in the aliased energy present relative to a WA-SAR image produced using uncoded RSF. Length 25 Frank and P4 coded RSF waveforms reduce aliased energy by 96.65% and 96.72% respectively. Additionally, phase coded RSF waveforms produce images with improved noise-free dynamic range capabilities. The Barker, Frank and P4 coded waveforms improve the noise-free dynamic range by 9.4 dB, 12.6 dB, and 12.4 dB, respectively.

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Document Details

Document Type
Technical Report
Publication Date
Mar 01, 2006
Accession Number
ADA449615

Entities

People

  • Andrew W. Hyatt

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Force
  • Algorithms
  • Coordinate Systems
  • Department Of Defense
  • Doppler Effect
  • Electrical Engineering
  • Frequency Modulation
  • Frequency Shift
  • Geometry
  • High Resolution
  • Information Operations
  • Phase Modulation
  • Pulse Compression
  • Synthetic Aperture Radar
  • Two Dimensional
  • United States Government
  • Waveforms

Fields of Study

  • Physics

Readers

  • Radar Systems Engineering.
  • Small Business Innovation Research Program (SBIR) EDI Research and Innovation.