期刊文献+

Bistatic RCS Prediction with Graphical Electromagnetic Computing (GRECO) Method for Moving Targets 被引量:4

动目标双站 RCS预估的图形电磁计算 (GRECO)方法(英文)
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摘要 Graphical Electromagnetic Computing (GRECO) is recognized as one of the most valuable methods of the RCS (Radar Cross Section) computation for the high frequency region. The method of GRECO and Monostatic bistatic Equivalence Theorem was used to calculate the bistatic RCS for moving targets in the high frequency region. Some computing examples are given to verify the validity of the method. Excellent agreement with the measured data indicates that the method has practical engineering value. Graphical Electromagnetic Computing (GRECO) is recognized as one of the most valuable methods of the RCS (Radar Cross Section) computation for the high frequency region. The method of GRECO and Monostatic bistatic Equivalence Theorem was used to calculate the bistatic RCS for moving targets in the high frequency region. Some computing examples are given to verify the validity of the method. Excellent agreement with the measured data indicates that the method has practical engineering value.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2002年第3期161-165,共5页 中国航空学报(英文版)
基金 F oundation of National Key Laboratory of Electrom agnetic Environmental Research(0 0 js67.1.1.hk0 10 1)
关键词 electromagnetic wave scattering GRECO moving targets bistatic radar cross section monostatic bistatic equivalence theorem electromagnetic wave scattering GRECO moving targets bistatic radar cross section monostatic bistatic equivalence theorem
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参考文献3

  • 1GeorgeT R,Barrick D E,Stuart W D,et al.Radar cross section handbook[]..1970
  • 2Rius J M,Luis J.High-frequency RCS of complex radar targets in real time[].IEEE Transactions Antennas.1993
  • 3Micheali A.Equivalent edge currents for arbitrary aspects of observation[].IEEE Transactions Antennas.1984

同被引文献29

  • 1汤渭霖.用物理声学方法计算非硬表面的声散射[J].声学学报,1993,18(1):45-53. 被引量:38
  • 2汤渭霖.声呐目标回波的亮点模型[J].声学学报,1994,19(2):92-100. 被引量:139
  • 3范军 汤渭霖.声纳目标强度(TS)计算的板块元方法[J].声学技术,1999,:31-32.
  • 4YEE K S. Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media[J]. IEEE Trans. Antennas Propag, 1966, 14 (3) : 302-307.
  • 5ZAPOROZHETS A A, LEVY M F. Current marching technique for electromagnetic scattering computations [J]. IEEE Trans. Antennas Propag, 1999, 47 (6) : 1016-1024.
  • 6ZAPOROZHETS A A, LEVY M F. Bistatic RCS calculations with the vector parabolic equation method [J]. IEEE Trans. Antennas Propag, 1999, 47(11): 1688-1696.
  • 7DJORDJEVIC M, NOTARO B M. Higher order hybrid method of moments - physical optics modeling technique for radiation and scattering from large perfectly conducting surfaces [J]. IEEE Trans. Antennas Propag, 2005, 53(2): 800-813.
  • 8CATEDRA F, DELGADO C, DIEGO I G. New physical optics approach for an efficient treatment of multiple bounces in curved bodies defined by an impedance boundary condition [J]. IEEE Trans. Antennas Propag, 2008, 56(3): 728-736.
  • 9RIUS J M, FERRANDO M, JOGRE L. High-Frequency RCS of complex radar targets in real-time [J]. IEEE Trans. Antennas Propag, 1993, 41(9): 1308- 1460.
  • 10LI Xiaofeng, XIE Yongjun, YANG Rui. High-- frequency method for scattering from coated targets with electrically large size in half space [J]. IET Microw. Antennas Propag, 2009(13): 181-186.

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