
Generalized Filter Design by Computer Optimization
Djuradj Budimir(Author)
Artech House Publishers
Published on 1. January 1998
Book
Hardback
232 pages
978-0-89006-579-2 (ISBN)
Description
Focusing on generalized filter design by computer optimization, this text shows how to employ sophisticated, optimization-based approaches to filter design. It provides ready-made CAD filtre design algorithms aimed to help in the development of a wide variety of filter configurations. The book presents: proven optimization oriented techniques for designing filter structures that have equal ripple insertion or return loss in the passband; an effective filter design procedure based on equal ripple optimization; details on designing lumped element, E-plane, ridged waveguide and coplanar waveguide filters; and a numerically efficient method for calculating the insertion and return losses of a cascade of lossless symmetrical two-ports. Over 200 equations and dozens of real-world examples are included.
More details
Edition
Unabridged edition
Language
English
Place of publication
Norwood
United States
Target group
College/higher education
Professional and scholarly
Edition type
Unabridged edition
Dimensions
Height: 152 mm
Width: 229 mm
ISBN-13
978-0-89006-579-2 (9780890065792)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Person
Djuradj Budimir is a lecturer in the Department of Electronic Systems, University of Westminster. He is also a director at Tesla Communications Ltd., where he currently researches CAD of microwave filters and multiplexing networks for communications systems. The author of more than a dozen professional papers, he earned a Ph.D. from the University of Leeds.
Content
Introduction to Computer-Aided Filter Design. Transmission Lines, Lumped Elements, and Resonators. Characterization of Discontinuities. Optimization-Based Filter Design. Design of Lumped-Element Filters by Optimization. Design of E-Plane Filters by Optimization. Design of Ridged Waveguide Filters by Optimization. Design of Coplanar Waveguide Filters by Optimization. CAD Programs. Appendices.