Quality radiating open spherical resonators

Abstract

Theoretical investigation of the sphere dielectric resonator are realizated and their quality radiating is calculated.

Authors and Affiliations

M. Starkov

Keywords

Related Articles

Algorithm for motion artifacts removal from the ensemble of pulse waves

Introduction. In this paper we propose an artifact removal algorithm (motion artifacts) from the ensemble of pulse waves of photoplethysmographic signal. Research results. The motion artifact is removed by using the extr...

Multi-Element Antennas Based on Cylindrical Dielectric Resonators and Microstrip Lines in Case of Their Orthogonal Mutual Orientation

The design of a singleelement antenna, where cylindrical dielectric resonator, which is located orthogonally relative to feeding microstrip line, is used as radiating element, is described. There have been performed the...

Joint Filtering and Segmentation of Non-uniform Random Fields with Exponentially Correlated Textures

It’s synthesized the optimal and kvazioptimal algorithms of joint filtering and segmentation of non-uniform random fields with exponentially correlated textures. The presented algorithms are based on the mixed Markov pro...

Adaptive detection of group multifrequency signals

Introduction. The article poses the problem of adaptive detection of group multifrequency signals of moving targets against the background of clutter with a priori uncertainty of the clutter parameters. The purpose of th...

Transmission gain of a system of cylindrical dielectric resonators coupled with a microstrip line

The method of analytical calculation of gain of a system of cylindrical dielectric resonators in case of their orthogonal orientation relative to an edge microstrip line is stated. Two ways of experimental determination...

Download PDF file
  • EP ID EP309472
  • DOI 10.20535/RADAP.2010.40.87-91
  • Views 43
  • Downloads 0

How To Cite

M. Starkov (2010). Quality radiating open spherical resonators. Вісник НТУУ КПІ. Серія Радіотехніка, Радіоапаратобудування, 0(40), 87-91. https://europub.co.uk/articles/-A-309472