This paper deals with the analysis, estimation, and compensation of trajectory errors in automotive-based Synthetic Aperture Radar (SAR) systems. First of all, we define the geometry of the acquisition and the model of the received signal. We then proceed by analytically evaluating the effect of an error in the vehicle's trajectory. Based on the derived model, we introduce a procedure capable of estimating and compensating constant velocity motion errors leading to a well-focused and well-localized SAR image.The procedure is validated using real data gathered by a 77 GHz automotive SAR with MIMO capabilities
A high resolution synthetic aperture radar (SAR) system called phased array multifunctional imaging ...
We explore the determination of motion errors of an aircraft platform from the signum-coded syntheti...
Displacements in typical monitoring applications occur in 3D but having sensors capable of measuring...
This paper deals with the analysis, estimation, and compensation of trajectory errors in automotive-...
In this paper a 77 GHz patch array radar is used in combination with the line processing and range D...
The work focuses on the analysis of influences of motion errors on near-range SAR applications and d...
By collecting data as it moves along a straight line path and then coherently processing this data t...
The multiple-input-multiple-output (MIMO) synthetic aperture radar (SAR) system with a linear antenn...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
Synthetic aperture radar (SAR) is a digital signal pro-cessing technique which enhances the azimuth ...
Multiband SAR is an important trend in SAR technology. Accurate registration among different band SA...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Synthetic Aperture Radar (SAR) is one of the variant of active remote sensing whereby it transmits e...
Conventional ground moving target imaging algorithms mainly focus on the range cell migration correc...
In this paper, we present a motion error model for a Frequency-Modulated Continuous-Wave (FMCW) SAR ...
A high resolution synthetic aperture radar (SAR) system called phased array multifunctional imaging ...
We explore the determination of motion errors of an aircraft platform from the signum-coded syntheti...
Displacements in typical monitoring applications occur in 3D but having sensors capable of measuring...
This paper deals with the analysis, estimation, and compensation of trajectory errors in automotive-...
In this paper a 77 GHz patch array radar is used in combination with the line processing and range D...
The work focuses on the analysis of influences of motion errors on near-range SAR applications and d...
By collecting data as it moves along a straight line path and then coherently processing this data t...
The multiple-input-multiple-output (MIMO) synthetic aperture radar (SAR) system with a linear antenn...
Synthetic aperture radar (SAR) is a digital signal processing technique which enhances the azimuth r...
Synthetic aperture radar (SAR) is a digital signal pro-cessing technique which enhances the azimuth ...
Multiband SAR is an important trend in SAR technology. Accurate registration among different band SA...
Generating accurate repeat-pass interferometric airborne synthetic aperture radar (SAR) products dem...
Synthetic Aperture Radar (SAR) is one of the variant of active remote sensing whereby it transmits e...
Conventional ground moving target imaging algorithms mainly focus on the range cell migration correc...
In this paper, we present a motion error model for a Frequency-Modulated Continuous-Wave (FMCW) SAR ...
A high resolution synthetic aperture radar (SAR) system called phased array multifunctional imaging ...
We explore the determination of motion errors of an aircraft platform from the signum-coded syntheti...
Displacements in typical monitoring applications occur in 3D but having sensors capable of measuring...