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Volume 9 Issue 3
May  1987
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Zhu Zhaoda, Tu Shude. DETECTION PERFORMANCE OF DIGITAL POLARITY SAMPLED PHASE REVERSAL CODED PULSE COMPRESSORS[J]. Journal of Electronics & Information Technology, 1987, 9(3): 269-272.
Citation: Zhu Zhaoda, Tu Shude. DETECTION PERFORMANCE OF DIGITAL POLARITY SAMPLED PHASE REVERSAL CODED PULSE COMPRESSORS[J]. Journal of Electronics & Information Technology, 1987, 9(3): 269-272.

DETECTION PERFORMANCE OF DIGITAL POLARITY SAMPLED PHASE REVERSAL CODED PULSE COMPRESSORS

  • Received Date: 1985-12-25
  • Rev Recd Date: 1986-08-01
  • Publish Date: 1987-05-19
  • The nonparametric constant false alarm rate (CFAR) property of digital polarity sampled phase reversal coded pulse compressors is described. The detection performance in Gaussian and non-Gaussian noise is determined. It is shown that the loss in signal-to-noise ratio of the processor, relative to the incoherent matched filter, decreases as the code length increases, the asymptotic loss in Gaussian noise is 1.96 dB, and the loss in Weibull noise decreases with the shape parameter of the Weibull distribution and can even become a gain.
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  • F. E. Nathanson, Radar Design Principles, McGraw-Hill, New York, 1969.[2]A. M. Klein and M. T. Fujita, IEEE Trans. on AES, AES-15(1979), 795.[3]朱兆达,极性采样倒相编码数字脉压的非参量检测特性,南京航空学院科技资料,No. 273(1978).[4]V. G. Hansen and A. J. Zotll, IEEE Trans. on AES, AES-7(1971), 706.[5]J. W. Carlyle and J. B. Thomas, IEEE Trans. on IT, IT-10(1964), 146.[6]G. F. Montgomery, Proc. IRE, 42(1954), 447.[7]J. V. Difranco and W. L. Rubin, Radar Detection, Prentice-Hall, Englewood Cliffs, N. J., 1968.
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