## Abstract In this paper, an inhomogeneous, multilayered cylindrical stripline is analyzed using the 3DβTLM method. Dispersion characteristics of dominant as well as higherβorder modes are obtained for single and coupled cylindrical striplines. Impedance characteristics for the dominant mode are a
Full-wave analysis of single cylindrical striplines and microstriplines with multilayer dielectrics
β Scribed by Farid Bouttout; Franck Lethimonnier; Denis Le Bihan
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 395 KB
- Volume
- 68
- Category
- Article
- ISSN
- 0029-5981
- DOI
- 10.1002/nme.1722
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β¦ Synopsis
In this paper, the spectral-domain method is used to calculate the propagation characteristics of cylindrical microstrip transmission lines. The problem is formulated using an electric field integral equation and the spectral-domain Green's function. The solutions of the field components are obtained in matrix forms, which facilitate the calculations of the Green's function and the power flowing over the lines. The Green's functions are obtained in terms of transition matrices over the dielectric layers. The obtained integral equation is solved by moment method using four kinds of basis functions. The convergence of the method is proven. Based on the power-current definition, a stationary expression for the characteristic impedance has been derived analytically. Numerical results of the effective dielectric constant and the characteristic impedance for various line parameters are calculated and analysed. The computed data are found to be in good agreement with results obtained using other methods. The formulation is then applied to covered microstripline, microstripline and stripline with air gaps, for which data are not found in the literature to date. The presented method is used to guide design of microstrip coil for magnetic resonance imaging. This method is also suitable for investigation of multiconductor strip lines.
π SIMILAR VOLUMES
CAD-oriented analytic formulas are given for calculating the quasistatic parameters of the cylindrical CPW with three dielectrics. The effects of the dielectric materials on the quasistatic characteristics are investigated by using conformal mapping techniques. The calculated results are compared wi
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