In this work we focus on the Precise Topography- and Aperture-dependent algorithm, briefly PTA, proposed in the recent literature to remove the residual errors still affecting airborne SAR data focused with standard two-step Motion Compensation algorithms. More specifically, we first show that the azimuth-to-frequency mapping used by the PTA procedure is not fully appropriate, because it does not account for the presence of the residual motion errors themselves. Then, we show how to calculate the correct azimuth-to-frequency mapping able to fully account for the presence of the residual motion errors. Finally, we show how to modify the original PTA in such a way to properly exploit the correct azimuth-to-frequency mapping previously discuss...
Precise azimuth-variant motion compensation (MOCO) is an essential and difficult task for high-resol...
This paper presents a new motion compensation (MoCo) algorithm for airborne synthetic aperture rada...
The UAVSAR L-band synthetic aperture radar system has been designed for repeat track interferometry ...
accounted for via standard two-step motion compensation (MOCO) algorithm followed by the Precise Top...
Airborne SAR focusing is affected by motion errors corrupting data acquired onboard. In order to acc...
This letter presents a comparison between three Fourier-based motion compensation algorithms for air...
Abstract—This letter presents a comparison between three Fourier-based motion compensation (MoCo) al...
Efficient synthetic aperture radar (SAR) processing algorithms are unable to exactly implement the ...
This letter presents a new motion compensation algorithm to process airborne interferometric repeat-...
This letter presents a comparison between three Fourier-based motion compensation (MoCo) algorithms...
Due to the atmospheric turbulence, the motion trajectory of airborne very high resolution (VHR) synt...
Motion compensation (MoCom) is one of the most critical processing steps for airborne SAR focusing. ...
Motion compensation (MoCom) is one of the most critical processing steps for airborne SAR focusing. ...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Airborne synthetic aperture radar (SAR) requires motion compensation (MOCO) to be performed to form ...
Precise azimuth-variant motion compensation (MOCO) is an essential and difficult task for high-resol...
This paper presents a new motion compensation (MoCo) algorithm for airborne synthetic aperture rada...
The UAVSAR L-band synthetic aperture radar system has been designed for repeat track interferometry ...
accounted for via standard two-step motion compensation (MOCO) algorithm followed by the Precise Top...
Airborne SAR focusing is affected by motion errors corrupting data acquired onboard. In order to acc...
This letter presents a comparison between three Fourier-based motion compensation algorithms for air...
Abstract—This letter presents a comparison between three Fourier-based motion compensation (MoCo) al...
Efficient synthetic aperture radar (SAR) processing algorithms are unable to exactly implement the ...
This letter presents a new motion compensation algorithm to process airborne interferometric repeat-...
This letter presents a comparison between three Fourier-based motion compensation (MoCo) algorithms...
Due to the atmospheric turbulence, the motion trajectory of airborne very high resolution (VHR) synt...
Motion compensation (MoCom) is one of the most critical processing steps for airborne SAR focusing. ...
Motion compensation (MoCom) is one of the most critical processing steps for airborne SAR focusing. ...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Airborne synthetic aperture radar (SAR) requires motion compensation (MOCO) to be performed to form ...
Precise azimuth-variant motion compensation (MOCO) is an essential and difficult task for high-resol...
This paper presents a new motion compensation (MoCo) algorithm for airborne synthetic aperture rada...
The UAVSAR L-band synthetic aperture radar system has been designed for repeat track interferometry ...