DocumentCode
1020123
Title
Radiation from a rectangular waveguide with infinite flange--Exact solution by the correlation matrix method
Author
Macphie, Robert H. ; Zaghloul, Amir I.
Author_Institution
Univ. of Waterloo, Waterloo, ON., Canada
Volume
28
Issue
4
fYear
1980
fDate
7/1/1980 12:00:00 AM
Firstpage
497
Lastpage
503
Abstract
A rectangular waveguide is terminated by an infinite conducting flange and radiates into half-space. Modal expansions of the TE and TM waveguide fields lead to Hermitian forms for the incident and reflected waveguide power (
) in terms of the corresponding electric field mode amplitude vectors and a diagonal field admittance matrix [
]. The power radiated from the aperture is expressed in terms of correlation functions of the aperture electric fields, and yields a Hermitian form for the radiated power
in terms of the electric mode amplitude vectors and a matrix derived from the field correlation functions-the correlation matrix. Applying the principle of conservation of complex power (
) leads directly to a nonvariational expression for the scattering matrix [S] for the flanged termination. From [S] the effective
load admittance
can be deduced. Numerical results for the latter are compared graphically with previous variational results. Also given are the farfield power patterns for two aperture sizes which are then compared with the traditional patterns due to the
mode only.
) in terms of the corresponding electric field mode amplitude vectors and a diagonal field admittance matrix [
]. The power radiated from the aperture is expressed in terms of correlation functions of the aperture electric fields, and yields a Hermitian form for the radiated power
in terms of the electric mode amplitude vectors and a matrix derived from the field correlation functions-the correlation matrix. Applying the principle of conservation of complex power (
) leads directly to a nonvariational expression for the scattering matrix [S] for the flanged termination. From [S] the effective
load admittance
can be deduced. Numerical results for the latter are compared graphically with previous variational results. Also given are the farfield power patterns for two aperture sizes which are then compared with the traditional patterns due to the
mode only.Keywords
Correlations; Waveguide antennas; Admittance; Antenna arrays; Apertures; Flanges; Laboratories; Phased arrays; Rayleigh scattering; Rectangular waveguides; Tellurium; Transmission line matrix methods;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.1980.1142376
Filename
1142376
Link To Document