High Performance VLSI Algorithms and Architectures for Digital Signal Processing

High Performance VLSI Algorithms and Architectures for Digital Signal Processing

Author: Paul Ming Yu Chau

Publisher:

Published: 1987

Total Pages: 916

ISBN-13:

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Book Synopsis High Performance VLSI Algorithms and Architectures for Digital Signal Processing by : Paul Ming Yu Chau

Download or read book High Performance VLSI Algorithms and Architectures for Digital Signal Processing written by Paul Ming Yu Chau and published by . This book was released on 1987 with total page 916 pages. Available in PDF, EPUB and Kindle. Book excerpt:


High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Algorithms and Architectures

High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Algorithms and Architectures

Author: K. J. Ray Liu

Publisher: Wiley-IEEE Press

Published: 1998

Total Pages: 702

ISBN-13:

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Electrical Engineering/Signal Processing High—Performance VLSI Signal Processing Innovative Architectures and Algorithms Volume 1 Algorithms and Architectures The first volume in a two-volume set, High-Performance VLSI Signal Processing: Innovative Architectures and Algorithms brings together the most innovative papers in the field, focused introductory material, and extensive references. The editors present timely coverage of algorithm and design methodologies with an emphasis on today’s rapidly-evolving high-speed architectures for VLSI implementations. These volumes will serve as vital resources for engineers who want a comprehensive knowledge of the extremely interdisciplinary field of high-performance VLSI processing. The editors provide a practical understanding of the merits of total system design through an insightful, synergistic presentation of methodology, architecture, and infrastructure. Each volume features: Major papers that span the wide range of research areas in the field Chapter introductions, including historical perspectives Numerous applications-oriented design examples Coverage of current and future technological trends Thorough treatment of high-speed architectures


Book Synopsis High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Algorithms and Architectures by : K. J. Ray Liu

Download or read book High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Algorithms and Architectures written by K. J. Ray Liu and published by Wiley-IEEE Press. This book was released on 1998 with total page 702 pages. Available in PDF, EPUB and Kindle. Book excerpt: Electrical Engineering/Signal Processing High—Performance VLSI Signal Processing Innovative Architectures and Algorithms Volume 1 Algorithms and Architectures The first volume in a two-volume set, High-Performance VLSI Signal Processing: Innovative Architectures and Algorithms brings together the most innovative papers in the field, focused introductory material, and extensive references. The editors present timely coverage of algorithm and design methodologies with an emphasis on today’s rapidly-evolving high-speed architectures for VLSI implementations. These volumes will serve as vital resources for engineers who want a comprehensive knowledge of the extremely interdisciplinary field of high-performance VLSI processing. The editors provide a practical understanding of the merits of total system design through an insightful, synergistic presentation of methodology, architecture, and infrastructure. Each volume features: Major papers that span the wide range of research areas in the field Chapter introductions, including historical perspectives Numerous applications-oriented design examples Coverage of current and future technological trends Thorough treatment of high-speed architectures


Architectures for Digital Signal Processing

Architectures for Digital Signal Processing

Author: Peter Pirsch

Publisher: Wiley

Published: 1998-05-08

Total Pages: 0

ISBN-13: 9780471971450

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Digital signal processing (DSP) covers a wide range of applicationssuch as signal acquisition, analysis, transmission, storage, andsynthesis. Special attention is needed for the VLSI (very largescale integration) implementation of high performance DSP systemswith examples from video and radar applications. This book providesbasic architectures for VLSI implementations of DSP tasks coveringarchitectures for application specific circuits and programmableDSP circuits. It fills an important gap in the literature byfocusing on the transition from algorithms specification toarchitectures for VLSI implementations. Areas coveredinclude: * architectures for basic operations and elementary functions * parallel processing and pipelining * application specific array processors * programmable digital signal processors With the fusion of signal processing algorithms and VLSI circuitdesign it will assist digital signal processing architecturedevelopers. This book is of particular interest to electronicengineering and computer science students and will benefitpractitioners of digital signal processor circuit design.


Book Synopsis Architectures for Digital Signal Processing by : Peter Pirsch

Download or read book Architectures for Digital Signal Processing written by Peter Pirsch and published by Wiley. This book was released on 1998-05-08 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Digital signal processing (DSP) covers a wide range of applicationssuch as signal acquisition, analysis, transmission, storage, andsynthesis. Special attention is needed for the VLSI (very largescale integration) implementation of high performance DSP systemswith examples from video and radar applications. This book providesbasic architectures for VLSI implementations of DSP tasks coveringarchitectures for application specific circuits and programmableDSP circuits. It fills an important gap in the literature byfocusing on the transition from algorithms specification toarchitectures for VLSI implementations. Areas coveredinclude: * architectures for basic operations and elementary functions * parallel processing and pipelining * application specific array processors * programmable digital signal processors With the fusion of signal processing algorithms and VLSI circuitdesign it will assist digital signal processing architecturedevelopers. This book is of particular interest to electronicengineering and computer science students and will benefitpractitioners of digital signal processor circuit design.


VLSI Digital Signal Processing Systems

VLSI Digital Signal Processing Systems

Author: Keshab K. Parhi

Publisher: Wiley-Interscience

Published: 1999

Total Pages: 824

ISBN-13:

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Digital audio, speech recognition, cable modems, radar, high-definition television-these are but a few of the modern computer and communications applications relying on digital signal processing (DSP) and the attendant application-specific integrated circuits (ASICs). As information-age industries constantly reinvent ASIC chips for lower power consumption and higher efficiency, there is a growing need for designers who are current and fluent in VLSI design methodologies for DSP. Enter VLSI Digital Signal Processing Systems-a unique, comprehensive guide to performance optimization techniques in VLSI signal processing. Based on Keshab Parhi's highly respected and popular graduate-level courses, this volume is destined to become the standard text and reference in the field. This text integrates VLSI architecture theory and algorithms, addresses various architectures at the implementation level, and presents several approaches to analysis, estimation, and reduction of power consumption. Throughout this book, Dr. Parhi explains how to design high-speed, low-area, and low-power VLSI systems for a broad range of DSP applications. He covers pipelining extensively as well as numerous other techniques, from parallel processing to scaling and roundoff noise computation. Readers are shown how to apply all techniques to improve implementations of several DSP algorithms, using both ASICs and off-the-shelf programmable digital signal processors. The book features hundreds of graphs illustrating the various DSP algorithms, examples based on digital filters and transforms clarifying key concepts, and interesting end-of-chapter exercises that help match techniques with applications. In addition, the abundance of readily available techniques makes this an extremely useful resource for designers of DSP systems in wired, wireless, or multimedia communications. The material can be easily adopted in new courses on either VLSI digital signal processing architectures or high-performance VLSI system design. An invaluable reference and practical guide to VLSI digital signal processing. A tremendous source of optimization techniques indispensable in modern VLSI signal processing, VLSI Digital Signal Processing Systems promises to become the standard in the field. It offers a rich training ground for students of VLSI design for digital signal processing and provides immediate access to state-of-the-art, proven techniques for designers of DSP applications-in wired, wireless, or multimedia communications. Topics include: * Transformations for high speed using pipelining, retiming, and parallel processing techniques * Power reduction transformations for supply voltage reduction as well as for strength or capacitance reduction * Area reduction using folding techniques * Strategies for arithmetic implementation * Synchronous, wave, and asynchronous pipelining * Design of programmable DSPs. An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the Wiley editorial department.


Book Synopsis VLSI Digital Signal Processing Systems by : Keshab K. Parhi

Download or read book VLSI Digital Signal Processing Systems written by Keshab K. Parhi and published by Wiley-Interscience. This book was released on 1999 with total page 824 pages. Available in PDF, EPUB and Kindle. Book excerpt: Digital audio, speech recognition, cable modems, radar, high-definition television-these are but a few of the modern computer and communications applications relying on digital signal processing (DSP) and the attendant application-specific integrated circuits (ASICs). As information-age industries constantly reinvent ASIC chips for lower power consumption and higher efficiency, there is a growing need for designers who are current and fluent in VLSI design methodologies for DSP. Enter VLSI Digital Signal Processing Systems-a unique, comprehensive guide to performance optimization techniques in VLSI signal processing. Based on Keshab Parhi's highly respected and popular graduate-level courses, this volume is destined to become the standard text and reference in the field. This text integrates VLSI architecture theory and algorithms, addresses various architectures at the implementation level, and presents several approaches to analysis, estimation, and reduction of power consumption. Throughout this book, Dr. Parhi explains how to design high-speed, low-area, and low-power VLSI systems for a broad range of DSP applications. He covers pipelining extensively as well as numerous other techniques, from parallel processing to scaling and roundoff noise computation. Readers are shown how to apply all techniques to improve implementations of several DSP algorithms, using both ASICs and off-the-shelf programmable digital signal processors. The book features hundreds of graphs illustrating the various DSP algorithms, examples based on digital filters and transforms clarifying key concepts, and interesting end-of-chapter exercises that help match techniques with applications. In addition, the abundance of readily available techniques makes this an extremely useful resource for designers of DSP systems in wired, wireless, or multimedia communications. The material can be easily adopted in new courses on either VLSI digital signal processing architectures or high-performance VLSI system design. An invaluable reference and practical guide to VLSI digital signal processing. A tremendous source of optimization techniques indispensable in modern VLSI signal processing, VLSI Digital Signal Processing Systems promises to become the standard in the field. It offers a rich training ground for students of VLSI design for digital signal processing and provides immediate access to state-of-the-art, proven techniques for designers of DSP applications-in wired, wireless, or multimedia communications. Topics include: * Transformations for high speed using pipelining, retiming, and parallel processing techniques * Power reduction transformations for supply voltage reduction as well as for strength or capacitance reduction * Area reduction using folding techniques * Strategies for arithmetic implementation * Synchronous, wave, and asynchronous pipelining * Design of programmable DSPs. An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the Wiley editorial department.


High-performance VLSI Signal Processing

High-performance VLSI Signal Processing

Author: K. J. Ray Liu

Publisher:

Published: 1998

Total Pages:

ISBN-13:

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Book Synopsis High-performance VLSI Signal Processing by : K. J. Ray Liu

Download or read book High-performance VLSI Signal Processing written by K. J. Ray Liu and published by . This book was released on 1998 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:


VLSI Design Methodologies for Digital Signal Processing Architectures

VLSI Design Methodologies for Digital Signal Processing Architectures

Author: Magdy A. Bayoumi

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 407

ISBN-13: 1461527627

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Designing VLSI systems represents a challenging task. It is a transfonnation among different specifications corresponding to different levels of design: abstraction, behavioral, stntctural and physical. The behavioral level describes the functionality of the design. It consists of two components; static and dynamic. The static component describes operations, whereas the dynamic component describes sequencing and timing. The structural level contains infonnation about components, control and connectivity. The physical level describes the constraints that should be imposed on the floor plan, the placement of components, and the geometry of the design. Constraints of area, speed and power are also applied at this level. To implement such multilevel transfonnation, a design methodology should be devised, taking into consideration the constraints, limitations and properties of each level. The mapping process between any of these domains is non-isomorphic. A single behavioral component may be transfonned into more than one structural component. Design methodologies are the most recent evolution in the design automation era, which started off with the introduction and subsequent usage of module generation especially for regular structures such as PLA's and memories. A design methodology should offer an integrated design system rather than a set of separate unrelated routines and tools. A general outline of a desired integrated design system is as follows: * Decide on a certain unified framework for all design levels. * Derive a design method based on this framework. * Create a design environment to implement this design method.


Book Synopsis VLSI Design Methodologies for Digital Signal Processing Architectures by : Magdy A. Bayoumi

Download or read book VLSI Design Methodologies for Digital Signal Processing Architectures written by Magdy A. Bayoumi and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 407 pages. Available in PDF, EPUB and Kindle. Book excerpt: Designing VLSI systems represents a challenging task. It is a transfonnation among different specifications corresponding to different levels of design: abstraction, behavioral, stntctural and physical. The behavioral level describes the functionality of the design. It consists of two components; static and dynamic. The static component describes operations, whereas the dynamic component describes sequencing and timing. The structural level contains infonnation about components, control and connectivity. The physical level describes the constraints that should be imposed on the floor plan, the placement of components, and the geometry of the design. Constraints of area, speed and power are also applied at this level. To implement such multilevel transfonnation, a design methodology should be devised, taking into consideration the constraints, limitations and properties of each level. The mapping process between any of these domains is non-isomorphic. A single behavioral component may be transfonned into more than one structural component. Design methodologies are the most recent evolution in the design automation era, which started off with the introduction and subsequent usage of module generation especially for regular structures such as PLA's and memories. A design methodology should offer an integrated design system rather than a set of separate unrelated routines and tools. A general outline of a desired integrated design system is as follows: * Decide on a certain unified framework for all design levels. * Derive a design method based on this framework. * Create a design environment to implement this design method.


Parallel Algorithms and Architectures for DSP Applications

Parallel Algorithms and Architectures for DSP Applications

Author: Magdy A. Bayoumi

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 289

ISBN-13: 146153996X

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Over the past few years, the demand for high speed Digital Signal Proces sing (DSP) has increased dramatically. New applications in real-time image processing, satellite communications, radar signal processing, pattern recogni tion, and real-time signal detection and estimation require major improvements at several levels; algorithmic, architectural, and implementation. These perfor mance requirements can be achieved by employing parallel processing at all levels. Very Large Scale Integration (VLSI) technology supports and provides a good avenue for parallelism. Parallelism offers efficient sohitions to several problems which can arise in VLSI DSP architectures such as: 1. Intermediate data communication and routing: several DSP algorithms, such as FFT, involve excessive data routing and reordering. Parallelism is an efficient mechanism to minimize the silicon cost and speed up the pro cessing time of the intermediate middle stages. 2. Complex DSP applications: the required computation is almost doubled. Parallelism will allow two similar channels processing at the same time. The communication between the two channels has to be minimized. 3. Applicatilm specific systems: this emerging approach should achieve real-time performance in a cost-effective way. 4. Testability and fault tolerance: reliability has become a required feature in most of DSP systems. To achieve such property, the involved time overhead is significant. Parallelism may be the solution to maintain ac ceptable speed performance.


Book Synopsis Parallel Algorithms and Architectures for DSP Applications by : Magdy A. Bayoumi

Download or read book Parallel Algorithms and Architectures for DSP Applications written by Magdy A. Bayoumi and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 289 pages. Available in PDF, EPUB and Kindle. Book excerpt: Over the past few years, the demand for high speed Digital Signal Proces sing (DSP) has increased dramatically. New applications in real-time image processing, satellite communications, radar signal processing, pattern recogni tion, and real-time signal detection and estimation require major improvements at several levels; algorithmic, architectural, and implementation. These perfor mance requirements can be achieved by employing parallel processing at all levels. Very Large Scale Integration (VLSI) technology supports and provides a good avenue for parallelism. Parallelism offers efficient sohitions to several problems which can arise in VLSI DSP architectures such as: 1. Intermediate data communication and routing: several DSP algorithms, such as FFT, involve excessive data routing and reordering. Parallelism is an efficient mechanism to minimize the silicon cost and speed up the pro cessing time of the intermediate middle stages. 2. Complex DSP applications: the required computation is almost doubled. Parallelism will allow two similar channels processing at the same time. The communication between the two channels has to be minimized. 3. Applicatilm specific systems: this emerging approach should achieve real-time performance in a cost-effective way. 4. Testability and fault tolerance: reliability has become a required feature in most of DSP systems. To achieve such property, the involved time overhead is significant. Parallelism may be the solution to maintain ac ceptable speed performance.


VLSI Digital Signal Processors

VLSI Digital Signal Processors

Author: Vijay Madisetti

Publisher: Butterworth-Heinemann

Published: 1995

Total Pages: 554

ISBN-13:

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This is the only book that offers a thorough treatment of the following: design and application of programmable digital signal processors; formal specification and optimization of signal processing architectures and circuits; high-level synthesis of DSP architectures and datapaths; detailed treatment of application-specific integrated circuits (ASICs); scheduling, allocation and assignment algorithms for multiple processor DSP systems; and hardware/software co-design issues in DSP. VLSI Digital Signal Processors: An Introduction to Rapid Prototyping and Design Synthesis provides a cohesive, quantitative and clear exposition of the implementation and prototyping of digital signal processing algorithms on programmable signal processors, parallel processing systems and application-specific ICs. Included are both programmable and dedicated digital signal processors, and discussions of the latest optimization methods and the use of computer-aided-design techniques.


Book Synopsis VLSI Digital Signal Processors by : Vijay Madisetti

Download or read book VLSI Digital Signal Processors written by Vijay Madisetti and published by Butterworth-Heinemann. This book was released on 1995 with total page 554 pages. Available in PDF, EPUB and Kindle. Book excerpt: This is the only book that offers a thorough treatment of the following: design and application of programmable digital signal processors; formal specification and optimization of signal processing architectures and circuits; high-level synthesis of DSP architectures and datapaths; detailed treatment of application-specific integrated circuits (ASICs); scheduling, allocation and assignment algorithms for multiple processor DSP systems; and hardware/software co-design issues in DSP. VLSI Digital Signal Processors: An Introduction to Rapid Prototyping and Design Synthesis provides a cohesive, quantitative and clear exposition of the implementation and prototyping of digital signal processing algorithms on programmable signal processors, parallel processing systems and application-specific ICs. Included are both programmable and dedicated digital signal processors, and discussions of the latest optimization methods and the use of computer-aided-design techniques.


High Performance VLSI Technologies, Integrated Circuits, and Architecture for Digital Signal Processing

High Performance VLSI Technologies, Integrated Circuits, and Architecture for Digital Signal Processing

Author: Richard Webster Linderman

Publisher:

Published: 1984

Total Pages: 512

ISBN-13:

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Book Synopsis High Performance VLSI Technologies, Integrated Circuits, and Architecture for Digital Signal Processing by : Richard Webster Linderman

Download or read book High Performance VLSI Technologies, Integrated Circuits, and Architecture for Digital Signal Processing written by Richard Webster Linderman and published by . This book was released on 1984 with total page 512 pages. Available in PDF, EPUB and Kindle. Book excerpt:


High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Systems Design and Applications

High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Systems Design and Applications

Author: K. J. Ray Liu

Publisher: Wiley-IEEE Press

Published: 1998

Total Pages: 704

ISBN-13:

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Electrical Engineering/Signal Processing High-Performance VLSI Signal Processing Innovative Architectures and Algorithms Volume 2 Systems Design And Applications The second volume in a two-volume set, High-Performance VLSI Signal Processing: Innovative Architectures and Algorithms brings together the most innovative papers in the field, focused introductory material, and extensive references. The editors present timely coverage of the latest design tools, design environments, and implementations of VLSI signal processing systems. These volumes will serve as vital resources for engineers who want a comprehensive knowledge of the extremely interdisciplinary field of high-performance VLSI processing. The editors provide a practical understanding of the merits of total system design through an insightful, synergistic presentation of methodology, architecture, and infrastructure. Each volume features: Major papers that span the wide range of research areas in the field Chapter introductions including historical perspectives Numerous applications-oriented design examples Coverage of current and future technological trends


Book Synopsis High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Systems Design and Applications by : K. J. Ray Liu

Download or read book High-Performance VLSI Signal Processing Innovative Architectures and Algorithms, Systems Design and Applications written by K. J. Ray Liu and published by Wiley-IEEE Press. This book was released on 1998 with total page 704 pages. Available in PDF, EPUB and Kindle. Book excerpt: Electrical Engineering/Signal Processing High-Performance VLSI Signal Processing Innovative Architectures and Algorithms Volume 2 Systems Design And Applications The second volume in a two-volume set, High-Performance VLSI Signal Processing: Innovative Architectures and Algorithms brings together the most innovative papers in the field, focused introductory material, and extensive references. The editors present timely coverage of the latest design tools, design environments, and implementations of VLSI signal processing systems. These volumes will serve as vital resources for engineers who want a comprehensive knowledge of the extremely interdisciplinary field of high-performance VLSI processing. The editors provide a practical understanding of the merits of total system design through an insightful, synergistic presentation of methodology, architecture, and infrastructure. Each volume features: Major papers that span the wide range of research areas in the field Chapter introductions including historical perspectives Numerous applications-oriented design examples Coverage of current and future technological trends