In the airborne space-time adaptive processing (STAP) a priori information via knowledge-aided covariance estimation (KACE) is employed in order to reduce the required sample support for application to heterogeneous clutter scenarios. The enhanced FRACTA (FRACTAX) algorithm with KACE as well as Doppler-sensitive adaptive coherence estimation (DS-ACE) is applied to the KASSPER I & II data sets where it is shown via simulation that near-clairvoyant detection performance is maintained with as little as 1/3 of the normally required number of training data samples. The KASSPER I & II data sets are simulated high-fidelity heterogeneous clutter scenarios which possess several groups of dense targets. KACE provides a priori information about the cl...
This tutorial provides an introduction to the application of knowledge-based processing to the gener...
Many reduced dimension STAP algorithms have been developed for airborne radar applications which rel...
Abstract Traditional space-time adaptive processing (STAP) usually needs many independent and identi...
In the airborne space-time adaptive processing (STAP) a priori information via knowledge-aided covar...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
This paper addresses the problem of estimating the covariance matrix of a primary vector from hetero...
Knowledge-aided space-time adaptive processing (KASTAP) using multiple coherent processing interval ...
Space-time adaptive processing (STAP) of multi-channel radar data is an established and powerful met...
The design and analysis of a knowledge-aided detector for airborne space-time adaptive processing (S...
International audienceSpace time Adaptive Processing (STAP) for airborne RADAR fits the context of a...
This letter proposes a new approach for knowledge-aided estimation of structured clutter covariance ...
International audienceIn an airborne radar context, heterogeneous situations are a serious concern f...
This paper presents knowledge-aided space-time adaptive processing (KA-STAP) algorithms that exploit...
We are primarily interested in radar signal detection, using STAP technique, in a nonhomogeneous noi...
Space-Time Adaptive Processing (STAP) is a modern radar signal processing technique that leverages a...
This tutorial provides an introduction to the application of knowledge-based processing to the gener...
Many reduced dimension STAP algorithms have been developed for airborne radar applications which rel...
Abstract Traditional space-time adaptive processing (STAP) usually needs many independent and identi...
In the airborne space-time adaptive processing (STAP) a priori information via knowledge-aided covar...
Space-time adaptive processing (STAP) is an important airborne radar technique used to improve targe...
This paper addresses the problem of estimating the covariance matrix of a primary vector from hetero...
Knowledge-aided space-time adaptive processing (KASTAP) using multiple coherent processing interval ...
Space-time adaptive processing (STAP) of multi-channel radar data is an established and powerful met...
The design and analysis of a knowledge-aided detector for airborne space-time adaptive processing (S...
International audienceSpace time Adaptive Processing (STAP) for airborne RADAR fits the context of a...
This letter proposes a new approach for knowledge-aided estimation of structured clutter covariance ...
International audienceIn an airborne radar context, heterogeneous situations are a serious concern f...
This paper presents knowledge-aided space-time adaptive processing (KA-STAP) algorithms that exploit...
We are primarily interested in radar signal detection, using STAP technique, in a nonhomogeneous noi...
Space-Time Adaptive Processing (STAP) is a modern radar signal processing technique that leverages a...
This tutorial provides an introduction to the application of knowledge-based processing to the gener...
Many reduced dimension STAP algorithms have been developed for airborne radar applications which rel...
Abstract Traditional space-time adaptive processing (STAP) usually needs many independent and identi...