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Volume 24 Issue 9
Sep.  2002
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Wang Wei, Li Shaohong, Mao Shiyi . Comparative study of two basic forms in reduced-rank STAP[J]. Journal of Electronics & Information Technology, 2002, 24(9): 1225-1232.
Citation: Wang Wei, Li Shaohong, Mao Shiyi . Comparative study of two basic forms in reduced-rank STAP[J]. Journal of Electronics & Information Technology, 2002, 24(9): 1225-1232.

Comparative study of two basic forms in reduced-rank STAP

  • Received Date: 2001-02-11
  • Rev Recd Date: 2001-08-12
  • Publish Date: 2002-09-19
  • Reduced-rank STAP has been a key technology in air-borne radar to cancel the clutter. Several methods have been presented through these years. In this paper, those methods are classified into two basic forms-one is based on the generalized sidelobe canceller(GSC), the other is based on the direct form. The differences in the performances and potential of these two catalogs of methods are compared through theoretical analysis. Simulation results in ideal situations and with limited sample are presented.
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  • L.E. Brenann, J. Mallett, I. S. Reed, Adaptive arrays in airborne MTI radar, IEEE Trans. onAP, 1976, 24(5), 607-615.[2]J.S. Goldstein, I. S. Reed, P. A. Zulch, Multistage partially adaptive STAP CFAR detectionalgorithm, IEEE Trans on AES, 1999, 35(2), 645-661.[3]I.P. Kirsteins, D. W. Tufts, Adaptive detection using low rank approximation to a data matrix,IEEE Trans on AES, 1994, 30(1), 55-67.[4]R. Klemm, Space-Time Adaptive Processing Principles and Applications, The Institution of Electrical Engineers, London, UK, 1998. [5]S.D. Berger, B. M. Welsh, Selecting a reduced-rank transformation for STAP-A direct formperspective; in radar interference environment, IEEE Trans. on AES, 9, 35(2), 722-729.[5]A.M. Haimovich, M. Berin, Eigenanlysis-based space-time radar: performance analysis, IEEETrans on AES, 1997, 33(4), 1170-1179. [7]T.F. Ayoub, A. M. Haimovich, Reduced-rank STAP for high PRF radar, IEEE Trans. on AES,1999, 35(3), 953-962.
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