Beam-Space Post-Doppler Reduced-Dimension STAP Based on Sparse Bayesian Learning

Author:

Cao Junxiang1ORCID,Wang Tong1,Wang Degen1

Affiliation:

1. National Key Laboratory of Radar Signal Processing, Xidian University, Xi’an 710071, China

Abstract

The space–time adaptive processing (STAP) technique can effectively suppress the ground clutter faced by the airborne radar during its downward-looking operation and thus can significantly improve the detection performance of moving targets. However, the optimal STAP requires a large number of independent identically distributed (i.i.d) samples to accurately estimate the clutter plus noise covariance matrix (CNCM), which limits its application in practice. In this paper, we fully consider the heterogeneity of clutter in real-world environments and propose a sparse Bayesian learning-based reduced-dimension STAP method that achieves suboptimal clutter suppression performance using only a single sample. First, the sparse Bayesian learning (SBL) algorithm is used to estimate the CNCM using a single training sample. Second, a novel angular Doppler channel selection algorithm is proposed with the criterion of maximizing the output signal-to-clutter-noise ratio (SCNR). Finally, the reduced-dimension STAP filter is constructed using the selected channels. Simulation results show that the proposed algorithm can achieve suboptimal clutter suppression performance in extremely heterogeneous clutter environments where only one training sample can be used.

Funder

Key Technologies Research and Development Program

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference25 articles.

1. Ward, J. (1994). Space-Time Adaptive Processing for Airborne Radar, MIT Lincoln Laboratory. Technical Report, 1015.

2. Rapid Convergence Rate in Adaptive Arrays;Reed;IEEE Trans. Aerosp. Electron. Syst.,1974

3. Adaptive airborne MTI: An auxiliary channel approach;Klemm;IEE Proceedings F (Communications, Radar and Signal Processing),1987

4. Dipietro, R.C. (1992, January 26–28). Extended factored space-time processing for airborne radar systems. Proceedings of the Conference Record of the Twenty-Sixth Asilomar Conference on Signals, Systems & Computers, Pacific Grove, CA, USA.

5. On Adaptive Spatial-Temporal Processing for Airborne Surveillance Radar Systems;Wang;IEEE Trans. Aerosp. Electron. Syst.,1994

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