Your browser does not support JavaScript!
http://iet.metastore.ingenta.com
1887

Numerical solution of 2-dimensional scattering problems using a transmission-line matrix

Numerical solution of 2-dimensional scattering problems using a transmission-line matrix

For access to this article, please select a purchase option:

Buy article PDF
£12.50
(plus tax if applicable)
Buy Knowledge Pack
10 articles for £75.00
(plus taxes if applicable)

IET members benefit from discounts to all IET publications and free access to E&T Magazine. If you are an IET member, log in to your account and the discounts will automatically be applied.

Learn more about IET membership 

Recommend Title Publication to library

You must fill out fields marked with: *

Librarian details
Name:*
Email:*
Your details
Name:*
Email:*
Department:*
Why are you recommending this title?
Select reason:
 
 
 
 
 
Proceedings of the Institution of Electrical Engineers — Recommend this title to your library

Thank you

Your recommendation has been sent to your librarian.

A numerical method using impulse analysis of a transmission-line matrix is introduced and used to obtain wave-impedance values in a waveguide. The method is demonstrated by applying it to the scattering caused by a waveguide bifurcation.

References

    1. 1)
      • N. Marcuvitz . (1964) , Waveguide handbook.
    2. 2)
      • J.S. Hornsby , A. Gopinath . Numerical analysis of a dielectric-loaded waveguide with a microstrip line-finite-difference methods. IEEE Trans. , 684 - 690
    3. 3)
      • R.E. Collin . (1960) , Field theory of guided waves.
    4. 4)
      • J.R. Whinnery , C. Concordia , W. Ridgway , G. Kron . Network analyzer studies of electromagnetic cavity resonators. Proc. Inst. Radio Engrs. , 360 - 367
    5. 5)
      • J. Vine , D. Vitkovitch . (1966) Impedance networks, Field analysis: experimental and computational methods.
    6. 6)
      • S. Ahmed , P. Daly . Finite-element methods for inhomogeneous waveguides. Proc. IEE , 10 , 1661 - 1664
    7. 7)
      • G. Kron . Equivalent circuit of the field equations of Maxwell—Pt. I. Proc. Inst. Radio Engrs. , 289 - 299
    8. 8)
      • P.H. Masterman , P.J.B. Clarricoats . Computer field-matching solution of waveguide transverse discontinuities. Proc. IEE , 1 , 51 - 63
    9. 9)
      • J.R. Whinnery , S. Ramo . A new approach to the solution of high-frequency field problems. Proc. Inst. Radio Engrs. , 284 - 288
    10. 10)
      • H.Y. Yee , L.B. Felsen . Ray-optics—a novel approach to scattering by discontinuities in a waveguide. IEEE Trans. , 73 - 85
    11. 11)
      • K. Spangenberg , G. Walters , F. Schott . Electrical network analyzers for the solution of electromagnetic field problems. Proc. Inst. Radio Engrs. , 724 - 729
    12. 12)
      • P.L. Arlett , A.K. Bahrani , O.C. Zienkiewicz . Application of finite elements to the solution of Helmholtz's equation. Proc. IEE , 12 , 1762 - 1766
    13. 13)
      • M.A.K. Hamid , S.C. Kashyap , A. Mohsen , W.M. Boerner , R.J. Boulanger . (1969) , A ray-optical approach to the analysis of microwave filters.
http://iet.metastore.ingenta.com/content/journals/10.1049/piee.1971.0217
Loading

Related content

content/journals/10.1049/piee.1971.0217
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading
This is a required field
Please enter a valid email address