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Performance Analysis of Two-Dimensional Parametric STAP for Airborne Radar using KASSPER Data
By: Corbell, P.M.; Johnson, B.A.; Rangaswamy, M.; Abramovich, Y.I.; Spencer, N.K.;
2011 / IEEE
Description
This item was taken from the IEEE Periodical ' Performance Analysis of Two-Dimensional Parametric STAP for Airborne Radar using KASSPER Data ' We analyze the performance of a recently introduced class of two-dimensional (2-D) multivariate parametric models for space-time adaptive processing (STAP) in airborne radars on the DARPA airborne side-looking radar model known as KASSPER Dataset 1. Investigation of the impact of linear uniform antenna array errors on techniques that exploit spatial smoothing is demonstrated using a complementary phenomenological clutter model developed at the AFRL. Signal-to-interference-plus-noise ratio (SINR) degradation with respect to the optimal clairvoyant receiver is studied for different parametric models, antenna errors, and training sample volumes. We also analyze the impact of KASSPER training data inhomogeneity on STAP performance. For an extremely small number of training-data samples, we demonstrate that a properly selected parametric model and an accompanying covariance matrix estimation technique should achieve efficient performance for practical STAP applications.
Related Topics
Linear Antenna Arrays
Multivariable Systems
Radar Antennas
Radar Clutter
Radar Signal Processing
Smoothing Methods
Covariance Matrix Estimation Technique
Two Dimensional Parametric Stap
Kassper Data
Two Dimensional Multivariate Parametric Model
Space-time Adaptive Processing
Darpa Airborne Side-looking Radar Model
Linear Uniform Antenna Array
Spatial Smoothing
Phenomenological Clutter Model
Afrl
Signal-to-interference-plus-noise Ratio
Optimal Clairvoyant Receiver
Antenna Errors
Covariance Matrix
Training
Clutter
Atmospheric Modeling
Adaptation Model
Arrays
Radar
Covariance Matrices
Airborne Radar
Space-time Adaptive Processing
Transportation
Aerospace
Engineering
Airborne Radar