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RCS Reduction of Airborne Dispenser

RCS Reduction of Airborne Dispenser
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摘要 The radar cross section (RCS) of dispenser and its components is computed by graphical electromagnetic computing (GRECO) method, which bases on physical optics (PO) method. A satisfied agreement is gotten between computed and measured results outdoor. The results show that the main scattering source of the dispenser is the mirror reflecting of the body; in the most crucial nose-on region, the nose mirror reflecting plays important role; the corner reflecting is important to the fins' RCS. The corresponding measures to reduce dispenser's RCS are proposed. It is indicated that to reduce RCS, shaping should be adopts first, while aerodynamic characteristics and stealth characteristics should be considered synthetically during the design of dispenser. The radar cross section (RCS) of dispenser and its components is computed by graphical electromagnetic computing (GRECO) method, which bases on physical optics (PO) method. A satisfied agreement is gotten between computed and measured results outdoor. The results show that the main scattering source of the dispenser is the mirror reflecting of the body; in the most crucial nose-on region, the nose mirror reflecting plays important role; the corner reflecting is important to the fins' RCS. The corresponding measures to reduce dispenser's RCS are proposed. It is indicated that to reduce RCS, shaping should be adopts first, while aerodynamic characteristics and stealth characteristics should be considered synthetically during the design of dispenser.
作者 郝璐 吴甲生
出处 《Journal of Beijing Institute of Technology》 EI CAS 2004年第S1期58-62,共5页 北京理工大学学报(英文版)
基金 theMinisterialLevelAdvancedResearchFoundation(4018190609)
关键词 DISPENSER radar cross section (RCS) physical optics method (PO) outdoor RCS test graphical electromagnetic computing (GRECO) dispenser radar cross section (RCS) physical optics method (PO) outdoor RCS test graphical electromagnetic computing (GRECO)
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参考文献3

  • 1Perez J,Catedra F.Application of physical optics to the RCS computation of bodies modeled with NURBS surfaces[].IEEE Transactions on Antennas and Propagation.1994
  • 2Rius J M,Ferrando M,Jofre L.High-frequency RCS of complex radar targets in real-time[].IEEE Transactions on Antennas and Propagation.1993
  • 3Domingo M,Rivas F,Perez J,et al.Computation of the RCS of complex bodies modeled using NURBS surfaces[].IEEE Antennas and Propagation Magazine.1995

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