Efficient and precise compensation of the range cell migration (RCM) effect is a key point for a fast and accurate synthetic aperture radar (SAR) data processor. In particular the range-dependent nature of the range cell migration effect complicates the compensation operation. It has been recently shown that an exact compensation of the range-dependent RCM (RDRCM) phenomenon can be carried out either by applying the chirp scaling algorithm or the chirp z-transform procedure. This paper investigates the relationship between the two methods. In particular, it is shown that the chirp z-transform based approach represents a particular implementation of the chirp scaling algorithm. A final discussion is dedicated to show how the chirp z-transform and the chirp scaling procedure can be applied within a SAR data processing algorithm

A short discussion on the exact compensation of the SAR range-dependent range cell migration effect

Lanari R;Fornaro;
1997

Abstract

Efficient and precise compensation of the range cell migration (RCM) effect is a key point for a fast and accurate synthetic aperture radar (SAR) data processor. In particular the range-dependent nature of the range cell migration effect complicates the compensation operation. It has been recently shown that an exact compensation of the range-dependent RCM (RDRCM) phenomenon can be carried out either by applying the chirp scaling algorithm or the chirp z-transform procedure. This paper investigates the relationship between the two methods. In particular, it is shown that the chirp z-transform based approach represents a particular implementation of the chirp scaling algorithm. A final discussion is dedicated to show how the chirp z-transform and the chirp scaling procedure can be applied within a SAR data processing algorithm
1997
FM radar
geophysical signal processing
geophysical techniques
radar imaging
remote sensing by radar
synthetic aperture radar
RCM
RDRCM
SAR
chirp scaling algorithm
chirp z-transform
exact compensation
geophysical measurement technique
land surface
radar imaging
radar remote sensing
range-dependent range cell migration effect
synthetic aperture radar
terrain mapping
Chirp
Computational efficiency
Convolution
Convolutional codes
Data processing
Filtering
Helium
Interpolation
Kernel
Synthetic aperture radar
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/243815
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