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Journal ArticleDOI

An Omega-K Algorithm for Highly Squinted Missile-Borne SAR With Constant Acceleration

TLDR
An omega-K algorithm for missile-borne synthetic aperture radar (SAR) diving with constant acceleration to derive a reference function multiplication from the equivalent range history with a form similar to that of conventional SAR.
Abstract
This letter proposes an omega-K algorithm for missile-borne synthetic aperture radar (SAR) diving with constant acceleration. The essence of the novel method is to derive a reference function multiplication from the equivalent range history. The true range history is divided into two parts: range independent and range dependent. After compensating the range-independent part with considering all the terms, we can regard the range-dependent part as an equivalent range history with a form similar to that of conventional SAR. Then, an analytical 2-D spectrum can be used for the omega-K algorithm. The proposed algorithm can handle general missile configurations with wide swaths and high squint angles. Simulation results are presented to validate the proposed method.

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Citations
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Journal ArticleDOI

A Frequency-Domain Imaging Algorithm for Highly Squinted SAR Mounted on Maneuvering Platforms With Nonlinear Trajectory

TL;DR: A frequency-domain imaging algorithm based on tandem two-step nonlinear chirp scaling (TNCS) with small aperture with novel geometric correction method based on inverse projection is utilized to eliminate the negative effects caused by the imaging processing.
Journal ArticleDOI

Subaperture Approach Based on Azimuth-Dependent Range Cell Migration Correction and Azimuth Focusing Parameter Equalization for Maneuvering High-Squint-Mode SAR

TL;DR: A modified subaperture imaging algorithm for high-squint-mode synthetic aperture radar (SAR) mounted on maneuvering platforms is proposed, and the equalization of the azimuth focusing parameters is achieved by a newAzimuth nonlinear chirp scaling method in the Azimuth frequency domain.
Journal ArticleDOI

A New Chirp Scaling Algorithm for Highly Squinted Missile-Borne SAR Based on FrFT

TL;DR: A new fractional chirp scaling algorithm (FrCSA) for highly squinted missile-borne SAR is proposed from high resolution point of view and results indicate that the FrCSA offers better focusing capabilities, greater peak sidelobe ratio (PSLR), and integrated sidelobe ratios (ISLR) by appropriately choosing the rotation angles for the range and azimuth fractional Fourier transform (FrFT).
Journal ArticleDOI

A Modified Equivalent Range Model and Wavenumber-Domain Imaging Approach for High-Resolution-High-Squint SAR With Curved Trajectory

TL;DR: An improved wavenumber-domain imaging algorithm for high-resolution-high-squint SAR with a curved trajectory is proposed and the imaging distortion caused by vertical velocity and acceleration is corrected via geometry and inverse projection.
Journal ArticleDOI

An Extended Fast Factorized Back Projection Algorithm for Missile-Borne Bistatic Forward-Looking SAR Imaging

TL;DR: An extended fast factorized back projection (FFBP) algorithm is proposed to focus the missile-borne bistatic forward-looking synthetic aperture radar (BFSAR) data based on the subaperture processing technique to reduce the computational burden.
References
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Journal ArticleDOI

SAR data focusing using seismic migration techniques

TL;DR: In this paper, the focusing of synthetic-aperture-radar (SAR) data using migration techniques quite similar to those used in geophysics is treated, which works in the omega -k/sub x/domain.
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A Two-Dimensional Spectrum for Bistatic SAR Processing Using Series Reversion

TL;DR: The method described makes use of series reversion, the method of stationary phase, and Fourier transform pairs to derive the two-dimensional point target spectrum for an arbitrary bistatic synthetic aperture radar configuration.
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Motion Compensation for UAV SAR Based on Raw Radar Data

TL;DR: A novel 3-D MOCO method is proposed to extract necessary motion parameters from radar raw data, based on an instantaneous Doppler rate estimate, suitable for low- or medium-altitude UAV SAR systems equipped with a low-accuracy inertial navigation system.
Journal ArticleDOI

Wavenumber-Domain Autofocusing for Highly Squinted UAV SAR Imagery

TL;DR: A squinted phase gradient autofocus (SPGA) algorithm is proposed to overcome the severe motion errors, including phase and nonsystematic errors in highlySquinted unmanned aerial vehicle (UAV) SAR imagery.
Journal ArticleDOI

Bistatic SAR Data Focusing Using an Omega-K Algorithm Based on Method of Series Reversion

TL;DR: The key of the proposed algorithm is the derivation of a frequency mapping function by using Neo's method of series reversion to derive the azimuth-invariant case for focusing bistatic synthetic aperture radar (SAR) data.
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