Journal of Electronics (China)

, Volume 2, Issue 1, pp 1–10 | Cite as

The automatic generation of the finite element mesh for realization of ricatti transformation

  • Sun Naihua
Article
  • 13 Downloads

Abstract

Computer techniques for solving electro-magnetic scattering problems of dielectric cylinders of arbitrary cross sections by the unimoment method are investigated. In the solution of the fields inside the mathematical circle, a computer program for the realization of Ricatti transformation in solving the linear algebraic equations is programmed. With the case of a rectangular cylinder as an example, automatic generation of finite element mesh for Ricatti transformation is achieved. It is shown that both the memory capacity and the computing time of the computer are greatly saved by using these techniques. The previous procedure of the finite element method is also greatly simplified.

Keywords

Nodal Point Memory Capacity Linear Algebraic Equation Finite Element Mesh Automatic Generation 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References

  1. [1]
    K. K. Mei,IEEE Trans. on AP,AP-22 (1974), 760.Google Scholar
  2. [2]
    R. E. Stovall and K. K. Mei,IEEE Trans. on AP,AP-23 (1975), 335.Google Scholar
  3. [3]
    Shu-Kong Chang and K. K. Mei,IEEE Trans. on AP,AP-24, (1976), 35.Google Scholar
  4. [5]
    K. K. Mei et al., Finite Method in Electromagnetic Scattering, in Electromagnetic Scattering (P. L. E. Uslenghi, Ed.), Academic Press, 1978, pp. 359–392.Google Scholar
  5. [6]
    R. T. Fenner, Finite Element Methods for Engineers, Macmillan Press, London, 1975, pp. 71–88.Google Scholar

Copyright information

© Science Press 1985

Authors and Affiliations

  • Sun Naihua
    • 1
  1. 1.Microwave Research LaboratoryEast China Normal UniversityChina

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