
MUTUAL COUPLING COEFFICIENTS OF ROTATING RECTANGULAR DIELECTRIC RESONATORS IN CUT-OFF RECTANGULAR WAVEGUIDE
Author(s) -
А. А. Трубин
Publication year - 2021
Publication title -
information and telecommunication sciences
Language(s) - English
Resource type - Journals
eISSN - 2411-2976
pISSN - 2312-4121
DOI - 10.20535/2411-2976.12021.48-54
Subject(s) - resonator , coupling coefficient of resonators , coupling (piping) , dielectric , filter (signal processing) , rotation (mathematics) , waveguide filter , waveguide , dielectric resonator , physics , materials science , optics , electronic engineering , acoustics , prototype filter , filter design , optoelectronics , geometry , mathematics , electrical engineering , engineering , metallurgy
Background. A further increase in the speed of information transfer is determined by more stringent requirements for the elements of communication devices. One of the most important components of such devices is various filters, which are often made on the basis of dielectric resonators. Calculation of the parameters of multi-section filters is impossible without further development of the theory of their design. The development of filter theory is based on electrodynamic modelling, which involves calculating the coupling coefficients of dielectric resonators in various transmission lines.
Objective. The aim of the research is to calculate and study the coupling coefficients of rectangular dielectric resonators with a rectangular metal waveguide when their axes rotate. Investigation of new effects to improve the performance of filters and other devices based on them.
Methods. Methods of technical electrodynamics are used to calculate and analyse the coupling coefficients. The end result is to obtain new analytical formulas for new structures with rectangular dielectric resonators, which make it possible to analyse and calculate their coupling coefficients.
Results. New analytical expressions are found for the coupling coefficients of dielectric resonators with the rotation of their axes in a rectangular waveguide.
Conclusions. The theory of designing filters based on new structures of dielectric resonators with rotation of their axes in metal waveguides has been expanded. New analytical relationships and new patterns of change in the coupling coefficients are found.
Keywords: dielectric filter; rectangular dielectric resonator; rotation; coupling coefficients.