Refocusing and motion parameter estimation for ground moving targets based on improved axis rotation-time reversal transform

P Huang, XG Xia, X Liu, G Liao - IEEE Transactions on …, 2018 - ieeexplore.ieee.org
In this paper, a new algorithm is presented to image ground moving targets and estimate
their motion parameters in a synthetic aperture radar system based on improved axis …

An approach for refocusing of ground fast-moving target and high-order motion parameter estimation using Radon-high-order time-chirp rate transform

P Huang, G Liao, Z Yang, J Ma - Digital Signal Processing, 2016 - Elsevier
Long synthetic aperture time can improve the imaging quality of a ground moving target,
whereas a moving target may be severely smeared in the cross-range image due to the …

Ground maneuvering targets imaging for synthetic aperture radar based on second-order keystone transform and high-order motion parameter estimation

C Zeng, D Li, X Luo, D Song, H Liu… - IEEE Journal of Selected …, 2019 - ieeexplore.ieee.org
With the developments of the synthetic aperture radar (SAR) system, the long dwell time
provides high resolution but at the same time it produces large range migration (RM) and …

Fast non-searching method for ground moving target refocusing and motion parameters estimation

X He, G Liao, S Zhu, J Xu, Y Guo, J Wei - Digital Signal Processing, 2018 - Elsevier
Ground moving targets may be smeared in a synthetic aperture radar (SAR) image due to
the range migration, Doppler ambiguity and azimuth spectrum split caused by target …

An efficient method for ground maneuvering target refocusing and motion parameter estimation based on DPT–KT–MFP

M Tian, G Liao, S Zhu, X He, Y Liu, Y Li - Remote Sensing, 2021 - mdpi.com
The image of ground maneuvering targets may be defocused due to the Doppler ambiguity,
high-order range migration (RM), and Doppler frequency migration (DFM) caused by the …

Efficient ground moving target imaging method for synthetic aperture radar with target azimuth ambiguity

Z Chen, L Li, J Wan, D Li, X Tan - IEEE Sensors Journal, 2021 - ieeexplore.ieee.org
The synthetic aperture radar (SAR) image of ground moving target is easily defocused given
the unknown relative motions between radar and target. In addition, the limitation of pulse …

Refocusing of ground moving targets with Doppler ambiguity using keystone transform and modified second-order keystone transform for synthetic aperture radar

J Wan, X Tan, Z Chen, D Li, Q Liu, Y Zhou, L Zhang - Remote Sensing, 2021 - mdpi.com
Ground moving targets will typically be defocused because of the range migration (RM) and
Doppler frequency migration (DFM) caused by the unknown relative motions between the …

An approach for refocusing of ground moving target without target motion parameter estimation

P Huang, G Liao, Z Yang, XG Xia, J Ma… - IEEE Transactions on …, 2016 - ieeexplore.ieee.org
In synthetic aperture radar (SAR), long integration time may induce range migration and
Doppler frequency migration of a received signal, which may degrade the SAR imaging …

Ground moving target imaging based on keystone transform and coherently integrated CPF with a single-channel SAR

P Huang, XG Xia, G Liao, Z Yang - IEEE Journal of Selected …, 2017 - ieeexplore.ieee.org
It is well known that ground moving targets may be smeared in a synthetic aperture radar
(SAR) image due to the range migration, Doppler phase broadening, and velocity ambiguity …

Ground maneuvering target imaging and high-order motion parameter estimation based on second-order keystone and generalized Hough-HAF transform

P Huang, G Liao, Z Yang, XG Xia… - IEEE Transactions on …, 2016 - ieeexplore.ieee.org
This paper proposes a new method to focus a ground moving target with complex motions
and estimate its motion parameters in a synthetic aperture radar (SAR) system. In this …