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Electromagnetic and circuit modelling of multiconductor transmission lines /
Electromagnetic and circuit modelling of multiconductor transmission lines

Author: Niels Fach�e, Frank Olyslager, Dani�el de Zutter. Zutter, Dani�el de. ; Niels Faché; Frank Olyslager; Daniël de Zutter
Publisher: Oxford : Clarendon Press ; New York : Oxford University Press, 1993.
Series: Oxford science publications.; Oxford engineering science series, 35.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:

This book describes how self-consistent CAD circuit models for coupled lines, carrying either TEM or hybrid modes, can be obtained from a full-wave solution of Maxwell's equations and explores the  Read more...

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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Niels Fach�e, Frank Olyslager, Dani�el de Zutter. Zutter, Dani�el de. ; Niels Faché; Frank Olyslager; Daniël de Zutter
ISBN: 0198562500 9780198562504
OCLC Number: 26300500
Description: xix, 250 pages : illustrations ; 24 cm.
Contents: 1. General Introduction to the Circuit Modelling of Multiconductor Lines --
1.1. Overview of the electronmagnetic and circuit modelling problem --
1.2. Circuit modelling of multiconductor lines --
2. Circuit Description of Single Waveguide Structures --
2.2. Modal field representation --
2.3. Application of the power equivalence principle --
2.4. Application of the circuit principle --
3. Circuit Description of Two Coupled Lossless Waveguide Structures --
3.2. Two coupled lossless hybrid waveguide structures --
3.3. Modal field representation --
3.4. Coupled equivalent transmission lines --
3.5. Circuit model --
4. Circuit Description of General Lossy Multiconductor Waveguide Structures --
4.2. General coupled waveguide structure --
4.3. Modal field representation --
4.4. Transformation from a modal to a circuit description --
4.5. Coupled transmission line model --
4.6. Case study --
5. General Introduction to the Full-Wave Analysis of Multiconductor Lines in a Planar Stratified Medium --
5.1. Full-wave analysis of two- and three-dimensional waveguide Structures embedded in a planar stratified medium --
5.2. Infinitely thin strip conductor lines --
5.3. Spectral domain description of a planar stratified medium --
5.4. Discrete wire lines --
5.5. Multiconductor lines formed by polygonal-shaped conductors with finite conductivity --
5.6. Additional features of the integral equation approach --
6. Spectral Field Calculations in a Multilayered Medium --
6.2. The electromagnetic field in the spectral domain --
7. Infinitely Thin Strip Transmission Line Structures --
7.2. Geometry of the strip structures --
7.3. Construction of the integral equation --
7.4. Method of moments solution technique --
7.5. The spectral Green's dyadic --
7.6. The spatial Green's dyadic --
7.7. Calculation of the contribution of each basis function to the integral equation --
7.8. Case studies --
8. Loss Less Wire Transmission Line Structures --
8.2. Geometry --
8.3. Construction of the integral equation --
8.4. Solution of the integral equation --
8.5. The Incoming fields --
8.6. the scattered fields --
8.7. The inverse Fourier transformation --
8.8. The longitudinal currents --
8.9. The propagated power --
8.10. Case studies --
9. Arbitrarily-Shaped Polygonal Transmission Line Structures With Finite Conductivity --
9.2. Geometry --
9.3. Construction of the integral equation --
9.4. Solution technique for the integral equation --
9.5. Excitation and observation integrations --
9.6. Inverse Fourier transformation --
9.7. Impedance calculation --
9.8. Case studies --
Appendix A: Integral representation of the longitudinal modal fields.
Series Title: Oxford science publications.; Oxford engineering science series, 35.
Responsibility: Niels Faché, Frank Olyslager, Daniël de Zutter.
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