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Research on the frequency domain Σ△-DPCA

Research on the frequency domain Σ△–DPCA
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摘要 The frequency domain ∑A-DPCA processing (F-∑A-DPCA) is investigated in details and an improved scheme for the F-∑A-DPCA is proposed, which can significantly reduce the computational burden. In practice, because of the sum and difference beam pattern designed independently and other system errors, the clutter suppression of the time domain ∑A-DPCA processing (T-∑A-DPCA) is significantly degraded. However, the F-∑A-DPCA adaptively calculates the optimum gain ratio for motion compensation within each Doppler cells which is robust to system errors. Theoretical analysis and simulation results are presented to validate that the F-∑A-DPCA can achieve superior performance of clutter cancellation than the time domain processing, and its performance can be significantly increased if more pulses are used for the Doppler filtering. The improved approach is efficient, and feasible for real-time application. The frequency domain ∑A-DPCA processing (F-∑A-DPCA) is investigated in details and an improved scheme for the F-∑A-DPCA is proposed, which can significantly reduce the computational burden. In practice, because of the sum and difference beam pattern designed independently and other system errors, the clutter suppression of the time domain ∑A-DPCA processing (T-∑A-DPCA) is significantly degraded. However, the F-∑A-DPCA adaptively calculates the optimum gain ratio for motion compensation within each Doppler cells which is robust to system errors. Theoretical analysis and simulation results are presented to validate that the F-∑A-DPCA can achieve superior performance of clutter cancellation than the time domain processing, and its performance can be significantly increased if more pulses are used for the Doppler filtering. The improved approach is efficient, and feasible for real-time application.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2008年第2期268-272,共5页 系统工程与电子技术(英文版)
基金 the National Natural Science Foundation of China (60502030)
关键词 ∑A-Beam ∑A-DPCA optimum gain ratio clutter cancellation. ∑A-Beam, ∑A-DPCA, optimum gain ratio, clutter cancellation.
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参考文献8

  • 1Tobin M. Real time simulations SAR/GMTI in a tactical airborne environment. Proc. of EUSAR, Koenigswinter, Germany, 1996, 6346.
  • 2Klemm R. Principle of space-time adaptive processing. London: The Institution of Electrical Engineers, 2002.
  • 3Blum R C, Melvin M L, Wicks M C. An analysis of adaptive DPCA. IEEE National Radar Conf, Ann Arbor, MI, 1996: 303-308.
  • 4Scolink M I. Radar handbook. New York: McGraw-Hill, 1990.
  • 5Brown R D, Schneible R A, Wicks M C, et al. STAP for clutter suppressing with sum and difference beams. IEEE Trans. on AES, 2000: 36(2): 634-646.
  • 6Ward J. Space-time adaptive processing. Technical report 1015, MIT Lincoln Laboratory, Lexington, MA, 1994.
  • 7Oppenheim A V, Sehafer R W. Digital signal processing. Prentice-Hall, 1975.
  • 8Wang H S C. Mainlobe clutter cancellation by DPCA for space-based radars. IEEE Aerospace Applications Conf, Crested Butte, CO., 1991: 1-28.

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