Copyright © 2008 IEEEWe analyze the performance of a recently described class of two-dimensional autoregressive parametric models for space-time adaptive processing (STAP) in airborne radars on the DARPA side-looking radar model known as KASSPER Dataset 1. We investigate the trade-offs between signal-to-interference-plus-noise ratio (SINR) degradation (with respect to the optimal clairvoyant receiver) due to the mismatch between the observed covariance matrix and its parametric model, and the degradation due to the limited training sample volume. The impact of ground-clutter inhomogeneity on parametric STAP performance is demonstrated, as well as the significant superiority of parametric STAP over the conventional loaded sample-matrix inver...
In this paper, we describe a space-time adaptive processing (STAP) approach for bistatic space-based...
Copyright © 2008 IEEEIn a series of two papers, a new class of parametric models for two-dimensional...
International audienceSpace time Adaptive Processing (STAP) for airborne RADAR fits the context of a...
We investigate a new class of 2D parametric models for space-time adaptive processing (STAP) of grou...
We continue our investigation into the new class of two-dimensional autoregressive relaxed models (l...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
We develop parametric modeling and estimation methods for STAP data based on the results of the 2-D ...
In airborne radar systems with Ground Moving Target Indication (GMTI) mode, it is desired to detect ...
Abstract—The performance of a parametric space-time adaptive processing (STAP) method is presented h...
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
Performance analysis of two-dimensional parametric STAP for airborne radar using KASSPER dat
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
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...
Copyright © 2008 IEEEIn a series of two papers, a new class of parametric models for two-dimensional...
International audienceSpace time Adaptive Processing (STAP) for airborne RADAR fits the context of a...
We investigate a new class of 2D parametric models for space-time adaptive processing (STAP) of grou...
We continue our investigation into the new class of two-dimensional autoregressive relaxed models (l...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
We develop parametric modeling and estimation methods for STAP data based on the results of the 2-D ...
In airborne radar systems with Ground Moving Target Indication (GMTI) mode, it is desired to detect ...
Abstract—The performance of a parametric space-time adaptive processing (STAP) method is presented h...
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
Performance analysis of two-dimensional parametric STAP for airborne radar using KASSPER dat
International audienceSpace time adaptive processing (STAP) for range dependent clutter rejection in...
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...
Copyright © 2008 IEEEIn a series of two papers, a new class of parametric models for two-dimensional...
International audienceSpace time Adaptive Processing (STAP) for airborne RADAR fits the context of a...