Title :
Subaperture autofocus for synthetic aperture radar
Author :
Donohoe, Gregory W.
fDate :
4/1/1994 12:00:00 AM
Abstract :
A subaperture autofocus algorithm for synthetic aperture radar (SAR) partitions range-compressed phase-history data collected over a full aperture into equal-width subapertures. Application of a one-dimensional Fourier transform to each range bin converts each subaperture data set into a full-scene image (map). Any linear phase difference, or phase ramp, between a pair of subapertures expresses itself as cross-range drift in their maps. A traditional autofocus algorithm fits a polynomial to inferred equal-width phase ramps. If the true phase error function contains significant high-order components, then polynomial regression generates a poor estimate of the phase error function. Instead of filling a polynomial, we fit a sinusoidal function through the inferred phase ramps. An example with a degraded SAR image shows how a sinusoidal correction improves image quality. We compare lower bounds on mean squared error (MSE) for polynomial and sinusoidal parameterizations. Sinusoidal parameterization reduces MSE significantly for model orders greater than five
Keywords :
error analysis; error statistics; parameter estimation; radar interference; radar theory; radiofrequency interference; signal detection; synthetic aperture radar; SAR; autofocus algorithm; cross-range drift; degraded SAR image; equal-width subapertures; full-scene image; inferred equal-width phase ramps; linear phase difference; mean squared error; one-dimensional Fourier transform; parametric phase estimation; phase error function; phase ramp; polynomial parameterizations; polynomial regression; range-compressed phase-history data; sinusoidal correction; subaperture autofocus algorithm; synthetic aperture radar; Degradation; Focusing; Fourier transforms; History; Image quality; Phase estimation; Polynomials; Radar imaging; Synthetic aperture radar; Uncertainty;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on