Abstract
Background . Many of the properties of metamaterials are similar to those found in the filter on mutually detuned frequency and unrelated resonators. The bridge filters are used as a low-frequency prototypes of such microwave filters. It is important to establish an analogy between metamaterials and filters on mutually detuned frequency and unrelated resonators for further development and design of new types of metamaterials. Objective. A central objective is a model development of metamaterials based on band-exclusive microwave filters on mutually detuned resonators, and the low-frequency-based prototypes. Methods. Characteristic equivalence test of metamaterials to microwave filters on mutually detuned resonators, their specific dependencies reveal (the modes in parallel channels, the locations of the attenuation poles above or below the bandwidth), manifested regardless of the types of resonators, the study of the possibility of the bridge filter prototypes using for metamaterials simulation. Results. The analogy between metamaterials and microwave filters on mutually detuned resonator is specified, the possibility of bridge bandpass filter use as low-frequency prototypes is shown. Conclusions . Microwave filters on mutually detuned resonators, and bridge band-pass filters as low-frequency prototypes, design techniques of which are well established, can be used for metamaterial modeling.
Highlights
similar to those found in the filter on mutually detuned frequency
The bridge filters are used as a low-frequency prototypes of such microwave filters
important to establish an analogy between metamaterials and filters on mutually detuned frequency
Summary
Many of the properties of metamaterials are similar to those found in the filter on mutually detuned frequency and unrelated resonators. The bridge filters are used as a low-frequency prototypes of such microwave filters. It is important to establish an analogy between metamaterials and filters on mutually detuned frequency and unrelated resonators for further development and design of new types of metamaterials. A central objective is a model development of metamaterials based on band-exclusive microwave filters on mutually detuned resonators, and the low-frequency-based prototypes. The analogy between metamaterials and microwave filters on mutually detuned resonator is specified, the possibility of bridge bandpass filter use as low-frequency prototypes is shown. Microwave filters on mutually detuned resonators, and bridge band-pass filters as low-frequency prototypes, design techniques of which are well established, can be used for metamaterial modeling
Talk to us
Join us for a 30 min session where you can share your feedback and ask us any queries you have
More From: Research Bulletin of the National Technical University of Ukraine "Kyiv Politechnic Institute"
Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.