The coupling coeficient in TE,, mode between two-layered dielectric resonatom in suspended substrate is presented in this article. By introducing coupling between two dielectric resonators through the dielectric substrate, an analytical formulation for the coupling coefficient is der;eloped. Theoret
Coupling between a dielectric resonator and a strip conductor of finite thickness on a suspended substrate
β Scribed by Rajiv K. Shukla; Animesh Biswas
- Publisher
- John Wiley and Sons
- Year
- 1996
- Tongue
- English
- Weight
- 225 KB
- Volume
- 11
- Category
- Article
- ISSN
- 0895-2477
No coin nor oath required. For personal study only.
β¦ Synopsis
Wepresent the coupling between a strip conductor offinite thickness and a cylindrical dielectric resonator (DR) for the EOI6 mode, in a suspended substrate environment. Sy incorporating induced emf on both sides of the conductor, we develop an analytical formulation for the external quality factor (0,) to give a finite-thickness effect. Theoretical data for Q , between DR and microship line as a special case show good agreement with experimental data presented in the literature. We then extend this procedure to calculate the Q, between a DR and two important transmission-line structures: suspended strip line and inverted microstrip line, which are suitable for millimeter-wave applications.
π SIMILAR VOLUMES
An analytical technique for the determination of the Q factor of a dielectric resonator placed in a suspended substrate en¨ironment is presented in this article. Here, loss due to the conductor and u experimental data a¨ailable for a shielded en¨ironment.
A rigorous mode-matching technique is implemented for the study of the unloaded Q-factor of a dielectric resonator operating in the TM -mode. Numerical results demonstrate the Β¨ariation of the 01β¦ unloaded Q-factor against geometrical and material parameters. Finally, the accuracy of the calculation
804, Republic of China KEY TERMS Mutual coupling finite ground plane ABSTRACT ## Characteristics of the mutual coupling between rectangular microstrip antennas on a conductinggroundplane offinite extent are experimentally investigated. The E-and H-plane mutual coupling coefficients of antennas on
## Abstract Both genetic algorithms (GAs) and artificial neural networks (ANNs) have been used in the field of computational electromagnetics as the most powerful optimizing tools. In this paper, a simple and efficient method is presented to handle the problem of competing convention while training