9781441951533-1441951539-Digital Filters and Signal Processing: With MATLAB® Exercises

Digital Filters and Signal Processing: With MATLAB® Exercises

ISBN-13: 9781441951533
ISBN-10: 1441951539
Edition: 3rd ed. 1996
Author: Leland B. Jackson
Publication date: 2010
Publisher: Springer
Format: Paperback 516 pages
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Book details

ISBN-13: 9781441951533
ISBN-10: 1441951539
Edition: 3rd ed. 1996
Author: Leland B. Jackson
Publication date: 2010
Publisher: Springer
Format: Paperback 516 pages

Summary

Digital Filters and Signal Processing: With MATLAB® Exercises (ISBN-13: 9781441951533 and ISBN-10: 1441951539), written by authors Leland B. Jackson, was published by Springer in 2010. With an overall rating of 4.3 stars, it's a notable title among other Computer Science (Internet, Groupware, & Telecommunications, Networking & Cloud Computing, Telecommunications & Sensors, Engineering) books. You can easily purchase or rent Digital Filters and Signal Processing: With MATLAB® Exercises (Paperback) from BooksRun, along with many other new and used Computer Science books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

Digital Filters and Signal Processing, Third Edition ... with MATLAB Exercises presents a general survey of digital signal processing concepts, design methods, and implementation considerations, with an emphasis on digital filters. It is suitable as a textbook for senior undergraduate or first-year graduate courses in digital signal processing. While mathematically rigorous, the book stresses an intuitive understanding of digital filters and signal processing systems, with numerous realistic and relevant examples. Hence, practicing engineers and scientists will also find the book to be a most useful reference.
The Third Edition contains a substantial amount of new material including, in particular, the addition of MATLAB exercises to deepen the students' understanding of basic DSP principles and increase their proficiency in the application of these principles. The use of the exercises is not mandatory, but is highly recommended.
Other new features include: normalized frequency utilized in the DTFT, e.g., X(ejomega); new computer generated drawings and MATLAB plots throughout the book; Chapter 6 on sampling the DTFT has been completely rewritten; expanded coverage of Types I-IV linear-phase FIR filters; new material on power and doubly-complementary filters; new section on quadrature-mirror filters and their application in filter banks; new section on the design of maximally-flat FIR filters; new section on roundoff-noise reduction using error feedback; and many new problems added throughout.

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