eBooks & Software Ordering Information Publish with Us About Us Links Promotions Home Cart My Account Help
 
 
Search
 
 
 


BROWSE SUBJECTS
  • Communications
  • Computing

Wavelet Applications in Engineering Electromagnetics
Tapan K. Sarkar, Magdalena Salazar-Palma, Michael C. Wicks
ISBN 978-1-58053-800-8
Copyright 2002
Pages: 372
 
E-Books may not be copied or printed.
See e-Bookstore Information Page before ordering.
Select your location for price.
  • Description
  • Contents
  • Author
Written from an engineering perspective, this unique resource describes the practical application of wavelets to the solution of electromagnetic field problems and in signal analysis with an even-handed treatment of the pros and cons. A key feature of this book is that the wavelet concepts have been described from the filter theory point of view that is familiar to researchers with an electrical engineering background. The book shows you how to design novel algorithms that enable you to solve electrically, large electromagnetic field problems using modest computational resources. It also provides you with new ideas in the design and development of unique waveforms for reliable target identification and practical radar signal analysis. The book includes more then 500 equations, and covers a wide range of topics, from numerical methods to signal processing aspects.

Important!
E-Books may not be copied or printed.
See e-Bookstore Information Page before ordering.
Roadmap of the book. Wavelets from an Electrical Engineering Perspective. Application of Wavelets in Solution of Operator Equations. Solving Matrix equations using the Wavelet Transform. Solving Differential form of Maxwell’s Equations. Adaptive Multiscale Moment Method. Continuous Wavelet transform and its relationship to the Fourier Transform. T-Pulse: Windows that are strictly time limited and practically band limited. Optimal selection of a signal dependent basis and Denoising. Selected Bibliographies.

Tapan K. Sarkar is a professor in the department of electrical engineering and computer science at Syracuse University. He holds a Ph.D. from Syracuse University. He is a fellow of the IEEE. He is a co-author of Iterative and Self-Adaptive Finite-Elements in Electromagnetic Modeling (Artech House, 1998), and is the co-creator of several software packages, including WIPL-D, LINPAR for Windows, Version 2.0, AWAS and MULTIN for Windows (Artech House, 2000, 1999, 1996).

Magdalena Salazar-Palma is a professor titular in the Departmento de Senales, Sistemas y Radiocommunicaciones at the Universidad Politecnica de Madrid, Spain. She obtained a Ph. D. from the same university. She is a co-author of Iterative and Self-Adaptive Finite-Elements in Electromagnetic Modeling (Artech House, 1998). She is the chairperson of the Spain section of IEEE.

Michael C. Wicksis a principal engineer at the US Air Force Research Laboratory in the Sensor Directorate, Radar Signal Processing Branch. He holds a Ph.D. from Syracuse University. He is a fellow of the IEEE. He is on the Board of Governors for IEEE Aerospace and Electronic Systems and is the Chairman of the IEEE Radar Systems Panel.