Transmission Lines and Lumped Circuits
Fundamentals and Applications
Academic Press
Published on 23. February 2001
Book
Hardback
479 pages
978-0-12-189710-9 (ISBN)
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Description
The theory of transmission lines is a classical topic of electrical engineering. Recently this topic has received renewed attention and has been a focus of considerable research. This is because the transmisson line theory has found new and important applications in the area of high-speed VLSI interconnects, while it has retained its significance in the area of power transmission. In many applications, transmission lines are connected to nonlinear circuits. For instance, interconnects of high-speed VLSI chips can be modelled as transmission lines loaded with nonlinear elements. These nonlinearities may lead to many new effects such as instability, chaos, generation of higher order harmonics, etc. The mathematical models of transmission lines with nonlinear loads consist of the linear partial differential equations describing the current and voltage dynamics along the lines together with the nonlinear boundary conditions imposed by the nonlinear loads connected to the lines. These nonlinear boundary conditions make the mathematical treatment very difficult. For this reason, the analysis of transmission lines with nonlinear loads has not been addressed adequately in the existing literature. The unique and distinct feature of the proposed book is that it will present systematic, comprehensive, and in-depth analysis of transmission lines with nonlinear loads.
More details
Series
Language
English
Place of publication
San Diego
United States
Publishing group
Elsevier Science Publishing Co Inc
Target group
Professional and scholarly
This book will be of interest to a broad audience of engineers and researchers involved in electromagnetic analysis, design of VLSI circuits, power systems, and CAD software development.
Dimensions
Height: 229 mm
Width: 152 mm
Weight
790 gr
ISBN-13
978-0-12-189710-9 (9780121897109)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
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Additional editions

Giovanni Miano | Antonio Maffucci
Transmission Lines and Lumped Circuits
Fundamentals and Applications
E-Book
02/2001
Academic Press
€124.00
Available for download
Persons
Antonio Maffucci is Associate Professor of Electrical Engineering at the University of Cassino and Southern Lazio. Since 2014, he has also been associated to the INFN, Frascati National Laboratories. His research focuses on issues of electromagnetic and circuit modeling, computational electromagnetics, electromagnetic compatibility, nanotechnology. He is the author of 160 international publications, 3 reviews, 1 book, 7 book chapters and 4 receiverships.
Author
Universita di Napoli Federico II, Italy
University of Cassino and Southern Lazio, Cassino, Italy
Content
Transmission Line Equations and Properties
Ideal Two-Conductor Transmission Lines Connected to Lumped Circuits
Ideal Multiconductor Transmission Lines
Lossy Two-Conductor Transmission Lines
Lossy Two-Conductor Transmission Lines with Frequency-Dependent Parameters
Lossy Multiconductor Transmission Lines
Nonuniform Transmission Lines
Transmission Line Equations in Characteristic Form
Lumped Nonlinear Networks Interconnected by Transmission Lines
Qualitative Analysis of an Ideal Two-Conductor Line Connected to Nonlinear Resistors: Periodic Solutions, Bifurcations and Chaos
Appendix A: Some Useful Notes on the Matrix Operators
Appendix B: Some Useful Notes on the Laplace Transformation
Appendix C: Some a-priori Estimates
Appendix D: Tables of Equivalent Representations of Transmission Lines
Ideal Two-Conductor Transmission Lines Connected to Lumped Circuits
Ideal Multiconductor Transmission Lines
Lossy Two-Conductor Transmission Lines
Lossy Two-Conductor Transmission Lines with Frequency-Dependent Parameters
Lossy Multiconductor Transmission Lines
Nonuniform Transmission Lines
Transmission Line Equations in Characteristic Form
Lumped Nonlinear Networks Interconnected by Transmission Lines
Qualitative Analysis of an Ideal Two-Conductor Line Connected to Nonlinear Resistors: Periodic Solutions, Bifurcations and Chaos
Appendix A: Some Useful Notes on the Matrix Operators
Appendix B: Some Useful Notes on the Laplace Transformation
Appendix C: Some a-priori Estimates
Appendix D: Tables of Equivalent Representations of Transmission Lines