Detail publikačního výsledku

Quasi-Static Analysis of Planar Transmission Lines - Conformal mapping versus Finite Elements

DOLEŽAL, M.; RAIDA, Z.

Originální název

Quasi-Static Analysis of Planar Transmission Lines - Conformal mapping versus Finite Elements

Anglický název

Quasi-Static Analysis of Planar Transmission Lines - Conformal mapping versus Finite Elements

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

We describe an analysis of a conventional open microstrip line, an open microstrip line on a trapezoidal substrate and on a substrate with a limited width and a microstrip line with a PEC shielding walls on both sides. The analysis is performed using the conformal mapping method and the finite-element one. For all the above described structures, the characteristic impedance is computed by both methods and obtained results are in detail discussed.

Anglický abstrakt

We describe an analysis of a conventional open microstrip line, an open microstrip line on a trapezoidal substrate and on a substrate with a limited width and a microstrip line with a PEC shielding walls on both sides. The analysis is performed using the conformal mapping method and the finite-element one. For all the above described structures, the characteristic impedance is computed by both methods and obtained results are in detail discussed.

Klíčová slova

Quasi-static analysis, planar transtmission lines, conformal mapping, finite elements

Klíčová slova v angličtině

Quasi-static analysis, planar transtmission lines, conformal mapping, finite elements

Autoři

DOLEŽAL, M.; RAIDA, Z.

Vydáno

01.06.1998

ISSN

1210-2512

Periodikum

Radioengineering

Svazek

7

Číslo

2

Stát

Česká republika

Strany od

1

Strany do

7

Strany počet

7

BibTex

@article{BUT39023,
  author="Milan {Doležal} and Zbyněk {Raida}",
  title="Quasi-Static Analysis of Planar Transmission Lines - Conformal mapping versus Finite Elements",
  journal="Radioengineering",
  year="1998",
  volume="7",
  number="2",
  pages="1--7",
  issn="1210-2512"
}