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July 1, 1988Radio Science2,411 citations

Satellite radar interferometry: Two‐dimensional phase unwrapping

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RGR. M. GoldsteinHZH. A. ZebkerCWCharles Werner

Key Points

  • This research aims to address the challenges of phase unwrapping in satellite radar interferometry for accurate topographic mapping.
  • Utilized interferometric synthetic aperture radar observations to measure amplitude and phase of radar images.
  • Developed a method to identify and eliminate local errors, or residues, from phase data during global phase estimation.
  • Created a rectified digital topographic map based on unwrapped phase values.
  • Successfully identified local errors in radar measurements, reducing global phase errors.
  • Produced an accurate digital topographic map that reflects corrected phase information.
  • Demonstrated that the new approach improves the quality of radar-derived elevation data.

Abstract

Interferometric synthetic aperture radar observations provide a means for obtaining high‐resolution digital topographic maps from measurements of amplitude and phase of two complex radar images. The phase of the radar echoes may only be measured modulo 2π; however, the whole phase at each point in the image is needed to obtain elevations. We present here our approach to “unwrapping” the 2π ambiguities in the two‐dimensional data set. We find that noise and geometrical radar layover corrupt our measurements locally, and these local errors can propagate to form global phase errors that affect the entire image. We show that the local errors, or residues, can be readily identified and avoided in the global phase estimation. We present a rectified digital topographic map derived from our unwrapped phase values.

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Cite This Study

Goldstein et al. (1988) studied this question.

synapsesocial.com/papers/69d7f38b5c3030ff03d1886fhttps://doi.org/10.1029/rs023i004p00713
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