This paper presents a dual cancelled channel approach to the target detection and estimation with a digital beamforming radar. The proposed STAP (Space-Time Adaptive Processing) scheme is shown to yield comparable detection performance to previously known schemes and higher accuracy in the estimation of the target direction of arrival. Moreover, it has a lower computational cost, since it does not require the numerical maximization of a functional
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
Space-time adaptive processing (STAP) is a well-known and effective method to detect targets, obscur...
In this paper we focus on the problem of target direction of arrival (DOA) estimation with radar equ...
In this paper we focus on the problem of target direction of arrival (DOA) estimation with radar equ...
This paper deals with the problem of detection and direction of arrival (DOA) estimation of slowly m...
This paper deals with the problem of detection and direction of arrival (DOA) estimation of slowly m...
This study presents two alternative techniques for the estimation of the target direction of arrival...
xx, 169 leavesIn this thesis, we investigate the computational complexity, realization requirements ...
This article addresses the problem of clutter cancelation for slowly moving target detection and loc...
Used to suppress strong clutter and jamming in airborne radar data, Space Time Adaptive Processing (...
In this paper, a novel approach for direct data domain space time adaptive processing (STAP) is pres...
This paper presents a non-linear adaptive approach to the cancellation of clutter echoes in modern A...
Space-time adaptive processing (STAP) for bistatic airborne radar offers several advantages, such as...
Compared with Space-Time Adaptive Processing (STAP), Space-Time Adaptive Detection (STAD) employs th...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
Space-time adaptive processing (STAP) is a well-known and effective method to detect targets, obscur...
In this paper we focus on the problem of target direction of arrival (DOA) estimation with radar equ...
In this paper we focus on the problem of target direction of arrival (DOA) estimation with radar equ...
This paper deals with the problem of detection and direction of arrival (DOA) estimation of slowly m...
This paper deals with the problem of detection and direction of arrival (DOA) estimation of slowly m...
This study presents two alternative techniques for the estimation of the target direction of arrival...
xx, 169 leavesIn this thesis, we investigate the computational complexity, realization requirements ...
This article addresses the problem of clutter cancelation for slowly moving target detection and loc...
Used to suppress strong clutter and jamming in airborne radar data, Space Time Adaptive Processing (...
In this paper, a novel approach for direct data domain space time adaptive processing (STAP) is pres...
This paper presents a non-linear adaptive approach to the cancellation of clutter echoes in modern A...
Space-time adaptive processing (STAP) for bistatic airborne radar offers several advantages, such as...
Compared with Space-Time Adaptive Processing (STAP), Space-Time Adaptive Detection (STAD) employs th...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
Space-time adaptive processing (STAP) is a well-known and effective method to detect targets, obscur...