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Digital filters and signal processing in electronic engineering : theory, applications, architecture, code / S.M. Bozic and R.J. Chance.

By: Contributor(s): Series: Ellis Horwood series in electrical and electronic engineeringPublisher: Chichester : Horwood, 1998Description: 1 online resource (xi, 235 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780857099747
  • 0857099744
Subject(s): Genre/Form: Additional physical formats: Print version:: Digital filters and signal processing in electronic engineeringLOC classification:
  • TK7872.F5 B72 1998eb
Online resources:
Contents:
1. Basic concepts and analytical tools -- 2. The fundamental features of a DSP -- 3. The practical DSP devices -- 4. Discrete Fourier transform : properties, uses, and computations -- 5. DSP implementations of Fourier and Goertzel algorithms -- 6. FIR filter design methods -- 7. IIR filter design -- 8. Other topics in digital signal processing.
Action note:
  • digitized 2010 HathiTrust Digital Library committed to preserve
Summary: From industrial and teaching experience the authors provide a blend of theory and practice of digital signal processing (DSP) for advanced undergraduate and post-graduate engineers reading electronics. This fast-moving, developing area is driven by the information technology revolution. It is a source book in research and development for embedded system design engineers, designers in real-time computing, and applied mathematicians who apph DSP techniques in telecommunications, aerospace (control systems), satellite communications, instrumentation, and medical technology (ultrasound and magnetic resonance imaging). The book is particularly useful at the hardware end of DSP, with its emphasis on practical I)SP devices and the integration of basic processes with appropriate software. It is unique to find in one volume the implementation of the equations as algorithms, not only in \IATLAB but right up to a working DSP-based scheme. Other relevant architectural features include number representations, multiply-accumulate, special addressing modes, zero overhead iteration schemes. and single and multiple nlicroprocessors which will allow the readers to compare and understand both current processors and future DSP developments. Fundamental signal processing procedures are introduced and developed: also convolution. correlation, the Discrete Fourier Transform and its fast computation algorithms. Then follo finite impulse response (FIR) filters, infinite impulse response (IlR) filters, multirate filters, adaptive filters, and topics from communication and control. I)esign examples are given in all of these cases, taken through an algorithm testing stage using MATLAB. The design of the latter. using C language models, is explained together with the experimental results of real time integer implementations. Academic prerequisites are first and second year university mathematics, an introductor knowledge of circuit theor 'and microprocessors. and C Language. Provides an unusual blend of theory and practice of digital signal processing (DSP)Discusses fundamental signal processing procedures, convolution, correlation, the Discrete Fourier Transform and its fast computation algorithmsIncludes number representations, multiply-accumulate, special addressing modes, zero overhead iteration schemes, and single and multiple instructions.
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Includes bibliographical references (pages 230-231) and index.

1. Basic concepts and analytical tools -- 2. The fundamental features of a DSP -- 3. The practical DSP devices -- 4. Discrete Fourier transform : properties, uses, and computations -- 5. DSP implementations of Fourier and Goertzel algorithms -- 6. FIR filter design methods -- 7. IIR filter design -- 8. Other topics in digital signal processing.

Print version record.

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Electronic reproduction. [S.l.] : HathiTrust Digital Library, 2010. MiAaHDL

Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. MiAaHDL

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digitized 2010 HathiTrust Digital Library committed to preserve pda MiAaHDL

From industrial and teaching experience the authors provide a blend of theory and practice of digital signal processing (DSP) for advanced undergraduate and post-graduate engineers reading electronics. This fast-moving, developing area is driven by the information technology revolution. It is a source book in research and development for embedded system design engineers, designers in real-time computing, and applied mathematicians who apph DSP techniques in telecommunications, aerospace (control systems), satellite communications, instrumentation, and medical technology (ultrasound and magnetic resonance imaging). The book is particularly useful at the hardware end of DSP, with its emphasis on practical I)SP devices and the integration of basic processes with appropriate software. It is unique to find in one volume the implementation of the equations as algorithms, not only in \IATLAB but right up to a working DSP-based scheme. Other relevant architectural features include number representations, multiply-accumulate, special addressing modes, zero overhead iteration schemes. and single and multiple nlicroprocessors which will allow the readers to compare and understand both current processors and future DSP developments. Fundamental signal processing procedures are introduced and developed: also convolution. correlation, the Discrete Fourier Transform and its fast computation algorithms. Then follo finite impulse response (FIR) filters, infinite impulse response (IlR) filters, multirate filters, adaptive filters, and topics from communication and control. I)esign examples are given in all of these cases, taken through an algorithm testing stage using MATLAB. The design of the latter. using C language models, is explained together with the experimental results of real time integer implementations. Academic prerequisites are first and second year university mathematics, an introductor knowledge of circuit theor 'and microprocessors. and C Language. Provides an unusual blend of theory and practice of digital signal processing (DSP)Discusses fundamental signal processing procedures, convolution, correlation, the Discrete Fourier Transform and its fast computation algorithmsIncludes number representations, multiply-accumulate, special addressing modes, zero overhead iteration schemes, and single and multiple instructions.

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