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The signal selection and processing method for polarization measurement radar 被引量:8

The signal selection and processing method for polarization measurement radar
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摘要 Based on the ambiguity function, a novel signal processing method for the polarization measurement radar is developed. One advantage of this method is that the two orthogonal polarized signals do not have to be perpendicular to each other, which is required by traditional methods. The error due to the correlation of the two transmitting signals in the traditional method, can be reduced by this new approach. A concept called ambiguity function matrix (AFM) is introduced based on this method. AFM is a promising tool for the signal selection and design in the polarization scattering matrix measurement. The waveforms of the polarimetric radar are categorized and analyzed based on AFM in this paper. The signal processing flow of this method is explained. And the polarization scattering matrix measurement performance is testified by simulation. Furthermore, this signal processing method can be used in the inter-pulse interval measurement technique as well as in the instantaneous measurement technique. Based on the ambiguity function, a novel signal processing method for the polarization measurement radar is developed. One advantage of this method is that the two orthogonal polarized signals do not have to be perpendicular to each other, which is required by traditional methods. The error due to the correlation of the two transmitting signals in the traditional method, can be reduced by this new approach. A concept called ambiguity function matrix (AFM) is introduced based on this method. AFM is a promising tool for the signal selection and design in the polarization scattering matrix measurement. The waveforms of the polarimetric radar are categorized and analyzed based on AFM in this paper. The signal processing flow of this method is explained. And the polarization scattering matrix measurement performance is testified by simulation. Furthermore, this signal processing method can be used in the inter-pulse interval measurement technique as well as in the instantaneous measurement technique.
出处 《Science in China(Series F)》 2009年第10期1926-1935,共10页 中国科学(F辑英文版)
基金 Supported partially by the National Natural Science Foundation of China (Grant No. 60736006) the 11th Five-Year Plan Weapons and Equipment Pre-research Project (Grant No. 51303060101-3)
关键词 target polarization scattering matrix measurement of the polarization scattering matrix ambiguity function ambiguity function matrix polarimetric radar radar waveform radar signal processing target polarization scattering matrix, measurement of the polarization scattering matrix, ambiguity function, ambiguity function matrix, polarimetric radar, radar waveform, radar signal processing
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  • 1D Giuli.Polarization diversity in radars[ J ].Proc of the IEEE,1986,74 (2):245 ~ 269.
  • 2W -M Boerner,et al.Direct and inverse methods in radar polarimetry[ M ].Boston:Kluwer Academic Publishers,1992.
  • 3D Giul,M Fossi.Radar target scattering matrix measurement through orthogonal signals[ J ].IEE Proc -F,1993,140(4):233 ~242.
  • 4H Mott.天线和雷达中的极化[M].林昌禄,等,译.成都:电子科技大学出版社.1989.
  • 5M I Skolnik.雷达系统导论[M].林茂庸,等,译.北京:国防工业出版社,1992.

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