ABSTRACT
This paper deals with the problem of electromagnetic coupling due to a transmitting antenna placed inside a rectangular shaped cavity. The theoretical approach shows that each TEm n (or TMm n) mode behaves like a transmission line, or virtual line. To determine the field amplitude appearing at resonance frequencies, the concepts of mutual inductance and capacitance used for the TEM mode are extended to the virtual line. The thermal losses are inserted by means of the Q factor. To conclude, some comments about the behavior of large cavities in respect of wavelength are added.
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AUTHOR
-
Bernard DÉMOULIN
: Professor Emeritus, - Lille 1 University, IEMN TELICE Group, CNRS, UMR 8520
INTRODUCTION
The second part of the article dealing with the transmission line
theory applied to electromagnetic cavities, will be devoted to the
power coupled on TE (or TM) modes.
Unlike the transverse electromagnetic modes (TEM) briefly related
in chapter 1 of Part I
[D 1 327]
, TE or TM modes as established in waveguides
short-circuited at both ends, involve wave propagation according to
the transverse dimension of the waveguide. In order to lighten the
theoretical approach, a simpler way will be to assume that propagation
of TE or TM modes behaves like a virtual transmission line, or in
other words, it’s a virtual TEM mode. This alternate way was suggested
in a paper published in year 2001 by Tadeuz Konefal et al. Hence,
this Part II
[D 1 328]
, will be partially build with the mater of this article
as available in reference
.
Chapter
1
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KEYWORDS
electromagnetic cavities
| transmission line theory
| TE (or TM) modes
| EMC
| electronic engineering
Ongoing reading
The Transmission Line Theory to Solve Electromagnetic Coupling within Cavities. Part II - Coupling to TE (or TM) modes