type of discontinuity, would suffer from both a relatively
poor input match and a noticeably narrow
band performance. Additionally, judicious usage of
more than one discontinuity can substantially
increase the available design’s degrees of freedom
and enhance their high performance.
Along these lines, we have developed a compound
rectangular waveguide T-junction loaded with two
types of discontinuities: wedges and diaphragms [1].
Successful two-way power splitter designs for an arbitrary
power split ratio, as a part of large antenna
feeds, have already been demonstrated [2–6]. However,
all these design approaches would require
lengthy calculations and/or extensive EM simulations
to achieve a desired performance. In an effort to
type of discontinuity, would suffer from both a relatively
poor input match and a noticeably narrow
band performance. Additionally, judicious usage of
more than one discontinuity can substantially
increase the available design’s degrees of freedom
and enhance their high performance.
Along these lines, we have developed a compound
rectangular waveguide T-junction loaded with two
types of discontinuities: wedges and diaphragms [1].
Successful two-way power splitter designs for an arbitrary
power split ratio, as a part of large antenna
feeds, have already been demonstrated [2–6]. However,
all these design approaches would require
lengthy calculations and/or extensive EM simulations
to achieve a desired performance. In an effort to
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