Clutter Jamming Suppression for Airborne Distributed Coherent Aperture Radar Based on Prior Clutter Subspace Projection

Author:

Miao Yingjie,Liu FeifengORCID,Liu Hongjie,Li Hao

Abstract

Airborne distributed coherent aperture radar is of great significance for expanding the detection capability of the system. However, the extra observation dimension introduced by its sparse configuration also deteriorates the performance of traditional adaptive processing in a non-uniform environment. This paper focuses on moving target detection when the system works in a clutter–jamming-coexisting environment. In order to make full use of the specific low-rank structure to reduce the requirement for training data, this paper proposes a two-stage adaptive scheme that cancels jamming and clutter separately. The proposed suppression scheme first excludes the mainlobe jamming component from the training data based on the prior clutter subspace projection and performs intra-node clutter suppression. Then, the remaining jamming is jointly canceled based on the covariance obtained with its inter-pulse mixture model. Numerical examples show that this scheme can effectively reduce the blocking effect of main lobe jamming on high-speed targets but, due to the inaccuracy of the prior subspace, there is a certain additional loss of signal-to-noise ratio for near stationary targets. The simulation also shows that the proposed scheme is equally applicable to systems with a time-varying distributed geometry.

Funder

the National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference38 articles.

1. Ahlgren, G. (2003). Next Generation Radar Concept Definition Team Final Report, MIT Lincoln Laboratory.

2. Cuomo, K., Coutts, S., McHarg, J., Pulsone, N., and Robey, F. (2004). Wideband Aperture Coherence Processing for Next Generation Radar (NexGen), Massachusetts Inst of Tech Lexington Lincoln Lab. Technical Report.

3. Coutts, S., Cuomo, K., McHarg, J., Robey, F., and Weikle, D. (2006, January 12–14). Distributed coherent aperture measurements for next generation BMD radar. Proceedings of the Fourth IEEE Workshop on Sensor Array and Multichannel Processing, Waltham, MA, USA.

4. Skolnik, M.I. (1980). Introduction to Radar Systems, McGraw-Hill Education.

5. Phase synchronization for coherent MIMO radar: Algorithms and their analysis;IEEE Trans. Signal Process.,2011

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