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FDTD法计算铁氧体微带天线的RCS

辛雅明 顾长青

辛雅明, 顾长青. FDTD法计算铁氧体微带天线的RCS[J]. 电子与信息学报, 2002, 24(10): 1418-1423.
引用本文: 辛雅明, 顾长青. FDTD法计算铁氧体微带天线的RCS[J]. 电子与信息学报, 2002, 24(10): 1418-1423.
Xin Yarning, Gu Changqing. The RCS of a microstrip antenna on an arbitrarily biased ferrite substrate using FDTD[J]. Journal of Electronics & Information Technology, 2002, 24(10): 1418-1423.
Citation: Xin Yarning, Gu Changqing. The RCS of a microstrip antenna on an arbitrarily biased ferrite substrate using FDTD[J]. Journal of Electronics & Information Technology, 2002, 24(10): 1418-1423.

FDTD法计算铁氧体微带天线的RCS

The RCS of a microstrip antenna on an arbitrarily biased ferrite substrate using FDTD

  • 摘要: 该文采用并改进了一种将铁氧体进动方程直接离散的更有效的FDTD算法,在结合其它FDTD算法中的新技术基础上分析计算了任意方向外加偏置磁场时铁氧体矩形微带贴片天线的RCS频响特性并给出了一些有用的结论。
  • D.M. Pozar, V. Sanchez, Magnetic tuning of a microstrip antenna on a ferrite substrate, Electron.Lett., 1988, 24(12), 729-731.[2]P.J. Rainville, F. J. Harackiewicz, Magnetic tuning of a microstrip patch antenna fabricated on a ferrite film, IEEE Microwave and Guided Wave Lett., 1992, 2(12), 483-485.[3]H.Y. Yang, J. A. Castaneda, N. G. Alexopoulos, The RCS of a microstrip patch on an arbitrarily biased ferrite substrate, IEEE Trans. on AP, 1993, 41(12), 1610-1614.[4]B. Lee, F. J. Harackiewicz, The RCS of a microstrip antenna on an In-Plane biased ferrite substrate, IEEE Trans. on AP, 1996, 44(2), 208-211.[5]G. Zheng, K. Chen., Transient analysis of microstrip lines with ferrite substrate by extended FD-TD method, Int. J.[J]. Infrared Millimeter Waves.1992,13(8):1115-[6]A. Reinex, T. Monediere, E. Jecho, Ferrite analysis using the finite-difference timedomain(FDTD) method, Microwave and Opt. Tech. Lett., 1993, 5(13), 685-686.[7]J.A. Pereda, et al., A treatment of magnetized ferrites using the FDTD method, IEEE Microwave and Guided Wave Lett., 1993, 3(5), 136-138.[8]M. Okoniewski, E. Okoniewska, FDTD analysis of magnetized ferrites: A more efficient algorithm,IEEE Microwave and Guided Wave Lett., 1994, 4(6), 169-171.[9]K.R. Umashankar, A. A. Taflove, Novel method to analyze electromagnetic scattering of complex objects. IEEE Trans. on EMC, 1982, 24(4), 397-405.[10]J. P. Berenger, A perfectly matched layer for the absorption of electromagnetic waves , J. of Computational Physics, 1994, 114(2), 185-200.[11]B. Chen, D. G. Fang, B. H. Zhou, Modified Berenger PML absorbing boundary condition for FD-TD meshes, IEEE Microwave and Guided Wave Lett., 1995, 5(11), 399-401.[12]R. J. Luebers, K. Kunz, M. A. Schneider, Finite-difference time-domain near zone to far zone transformation, IEEE Trans. on AP, 1991, 39(4), 429-433.[13]张均,刘克诚,张贤铎,赫崇骏,微带天线理论与工程,北京,国防工业出版社,1988,117-118.
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出版历程
  • 收稿日期:  2001-03-19
  • 修回日期:  2001-10-10
  • 刊出日期:  2002-10-19

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