A novel approach to nonparametric entropy-based autofocusing of inverse synthetic aperture radar images is proposed. Kinematics considerations show that the range cell corresponding to the target rotation center has a purely translational Doppler phase. This range cell can be selected by means of entropy criteria, and its phase component used as a measurement of the translational Doppler phase. Concerning the existing techniques, the new one is robust enough to noise and low target reflectivity, whereas provides higher quality output images with low computational load. The quality of the output is further confirmed by resorting to a recently published automatic target recognition algorithm, obtaining a very high success rate on a wide and v...
Autofocus is a key step of inverse synthetic aperture radar (ISAR) imaging. In this paper four new a...
In this dissertation, methods for estimating the kinematic parameters of a target from its stepped-f...
As a powerful signal processing tool for imaging moving targets, placing radar on a non-stationary p...
This paper addresses the problem of focusing moving targets in synthetic aperture radar (SAR) images...
Autofocus is imperative for inverse synthetic aperture radar (ISAR) imaging. In this letter, a new a...
Phase autofocus is a significant step in translational motion compensation for inverse synthetic ape...
This letter deals with inverse synthetic aperture radar (ISAR) autofocusing of noncooperative moving...
In the current scenario of high-range resolution radar and noncooperative target, the rotational mot...
The work addresses the problem of compensating the distor- tion effects induced by the translational...
Conventional approaches to inverse synthetic aperture radar (ISAR) imaging of a non-uniformly rotati...
Abstract — Inverse Synthetic Aperture Radar (ISAR) is a powerful radar processing technique which is...
Subarray averaging and entropy minimization (SAEM) algorithm is applied to stepped-frequency ISAR au...
Interest in polarimetric inverse synthetic aperture radar (ISAR) systems has been growing because of...
In this paper we propose an Inverse Synthetic Aperture Radar (ISAR) autofocusing technique based on ...
For inverse synthetic aperture radar imagery, the inherent sparsity of the scatterers in the range-D...
Autofocus is a key step of inverse synthetic aperture radar (ISAR) imaging. In this paper four new a...
In this dissertation, methods for estimating the kinematic parameters of a target from its stepped-f...
As a powerful signal processing tool for imaging moving targets, placing radar on a non-stationary p...
This paper addresses the problem of focusing moving targets in synthetic aperture radar (SAR) images...
Autofocus is imperative for inverse synthetic aperture radar (ISAR) imaging. In this letter, a new a...
Phase autofocus is a significant step in translational motion compensation for inverse synthetic ape...
This letter deals with inverse synthetic aperture radar (ISAR) autofocusing of noncooperative moving...
In the current scenario of high-range resolution radar and noncooperative target, the rotational mot...
The work addresses the problem of compensating the distor- tion effects induced by the translational...
Conventional approaches to inverse synthetic aperture radar (ISAR) imaging of a non-uniformly rotati...
Abstract — Inverse Synthetic Aperture Radar (ISAR) is a powerful radar processing technique which is...
Subarray averaging and entropy minimization (SAEM) algorithm is applied to stepped-frequency ISAR au...
Interest in polarimetric inverse synthetic aperture radar (ISAR) systems has been growing because of...
In this paper we propose an Inverse Synthetic Aperture Radar (ISAR) autofocusing technique based on ...
For inverse synthetic aperture radar imagery, the inherent sparsity of the scatterers in the range-D...
Autofocus is a key step of inverse synthetic aperture radar (ISAR) imaging. In this paper four new a...
In this dissertation, methods for estimating the kinematic parameters of a target from its stepped-f...
As a powerful signal processing tool for imaging moving targets, placing radar on a non-stationary p...