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NASA NTRS · 19950008357

Efficient geometric rectification techniques for spectral analysis algorithm

Abstract

The spectral analysis algorithm is a viable technique for processing synthetic aperture radar (SAR) data in near real time throughput rates by trading the image resolution. One major challenge of the spectral analysis algorithm is that the output image, often referred to as the range-Doppler image, is represented in the iso-range and iso-Doppler lines, a curved grid format. This phenomenon is known to be the fanshape effect. Therefore, resampling is required to convert the range-Doppler image into a rectangular grid format before the individual images can be overlaid together to form seamless multi-look strip imagery. An efficient algorithm for geometric rectification of the range-Doppler image is presented. The proposed algorithm, realized in two one-dimensional resampling steps, takes into consideration the fanshape phenomenon of the range-Doppler image as well as the high squint angle and updates of the cross-track and along-track Doppler parameters. No ground reference points are required.

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BibTeXRIS

Chang, C. Y., Pang, S. S., Curlander, J. C.. 1992-06-01. Efficient geometric rectification techniques for spectral analysis algorithm. https://ntrs.nasa.gov/citations/19950008357

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