期刊文献+

基于JEC-FDTD算法的等离子体天线雷达散射截面计算 被引量:2

Calculation on Radar Cross Section of Plasma-column Antenna Using JEC-FDTD Method
下载PDF
导出
摘要 采用电流密度卷积FDTD算法(JEC-FDTD)计算了等离子体天线的散射特性,分析了等离子体天线处于工作状态时等离子体参数(密度、碰撞频率)及天线外部约束腔体对天线雷达散射截面(RCS)的影响.数值结果表明,等离子体天线的RCS会随等离子体密度的减小及碰撞频率的增大而减小.而约束腔体只有在高频段时才会对等离子体天线的RCS值产生较大的影响,因此,在不影响天线性能的情况下,可以根据信号频率调节等离子体参数。 The paper has founded the 2D model of plasma antenna and JE convolution Finite- Difference Time-Domain (JEC-FDTD) algorithm is applied to the study on the antenna scattering characteristics based on the model. The effects of plasma density, collision frequency and glass tube on the Radar Cross Section (RCS) of the plasma antenna were analyzed in the paper. Analysis results show that RCS of plasma antenna can greatly decrease with the collision frequency increasing and plasma density decreasing. On the other hand, when the plasma antenna work at high frequency, the glass tube also has impact on the antenna scattering characteristics. Accordingly, increase in thickness of glass tube and enlargement of permittivity of glass will make RCS of the antenna decrease. So the stealth performance of plasma antenna can be improved by choosing the suitable plasma parameter and materials of glass tube based on the work frequency.
出处 《空间科学学报》 CAS CSCD 北大核心 2011年第5期682-686,共5页 Chinese Journal of Space Science
基金 国家自然科学基金项目(10775066) 湖南省教育基金项目(07C643)共同资助
关键词 等离子体天线 电流密度卷积FDTD算法 雷达散射截面 Plasma antenna, JEC-FDTD algorithms, RCS (Radar Cross Section)
  • 相关文献

参考文献3

二级参考文献33

  • 1Larry L Altgilbers, Ira Merritt, Phillip Tracy, Yuri Tkach, Slava Tkach. Plasma Antenna: Theoretical and Experimental Considerations [ C ]. AIAA - 98 - 2567, 1998.
  • 2Igor Alexeff, Ted Anderson, Sriram Parameswaran, Eric P Pradeep, Jyothi Hulloli, Prashant Hulloli. Experimental and theoretical results with plasma antennas[ J]. IEEE Transactions on Plasma Science, April 2006,34(2) :166 - 172.
  • 3M Hargreave, J P Rayner, A D Cheetham, G N French, A P Whiehello. Coupling Power and Information to a Plasma Antenna [ C ]. CP669, Plasma Physics: 11 th International Congress on Plasma Physics: ICPP 2002. 388 - 391.
  • 4Igor Alexeff, Mark Rader, Weng Lock Kang, Clay Douglass, Delmar Kintner, Rolando Ogot, Elwood Norris. A plasma stealth antenna for the US Navy[ C]. Proceedings of the 19118 IEEE International Conference on Plasma Science, Jun 1998.
  • 5J P Rayner, A P Whichello, A D Cheetham. Physical Characteristics of a Plasma Antenna [ J ]. IEEE Transactions on Plasma Science, February 2004,32( 1 ) :269 -281.
  • 6DING Qian, DING Jun, GUO Chen -Jiang and SHI Lei. On Characteristics of a Plasma Column Antenna[ C]. 978 -1 -4244 - 1880 - 0/08, IEEE, 2008.
  • 7M Moisan, A Shivarova, A W Trivelpiece. Experimental Investigations of The Propagation of Surface Waves Along A Plasma Column [J]. Plasma Physics, 1982,24( 11 ) :1331 - 1400.
  • 8M Moisan, A Shivarova and A W Trivelpiece. Plasma Physics [ C ]. 1982,24 : 1331 - 1400.
  • 9Anicin B A. Plasma loaded helicon waveguide. J. Phys.D: App. Phys., 2000, 33:1276-1281
  • 10Rayner J P, Cheetham A D. Helicon modes in a cylindrical plasma source. Plasma Source Sci. Tech., 1999,8:91-99

共引文献12

同被引文献8

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部