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VLSI数字信号处理系统设计与实现 Vlsi Digital Signal Processing 英文原版 Keshab Parhi Wiley

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Vlsi Digital Signal Processing


基本信息

Hardcover: 808 pages

Publisher: Wiley-Blackwell (19 Jan. 1999)

Language: English

ISBN-10: 0471241865

ISBN-13: 978-0471241867

Product Dimensions: 166 x 244 x 47mm | 1,280g

页面参数仅供参考,具体以实物为准


书籍简介

本书详细而全面地论述VLSI信号处理中性能优化技术,汇集了VLSI的架构理论与算法,描述了硬件实现层中的各种架构,给出了若干种分析、估计与降低功耗的方法,重点讲解设计应用时所需要的定制或半定制VLSI电路。 


本书适合作为高年级本科书和低年级研究生的教科书或参考书,对于专业技术人员,也是一本很好的参考书。


特点:

通过上百张图片对不同的DSP算法进行解释。

每章后的习题将技术与现实紧密结合起来。

适用面广,可作为《VLSI数字信号处理体系结构》或《高性能VLSI系统设计》等课程的教材。

提供有无线、有线、多媒体通信多个领域内的技术与经验。


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.


目录

Introduction to Digital Signal Processing Systems.


Iteration Bound.


Pipelining and Parallel Processing.


Retiming.


Unfolding.


Folding.


Systolic Architecture Design.


Fast Convolution.


Algorithmic Strength Reduction in Filters and Transforms.


Pipelined and Parallel Recursive and Adaptive Filters.


Scaling and Roundoff Noise.


Digital Lattice Filter Structures.


Bit-Level Arithmetic Architectures.


Redundant Arithmetic.


Numerical Strength Reduction.


Synchronous, Wave, and Asynchronous Pipelines.


Low-Power Design.


Programmable Digital Signal Processors.


Appendices.


Index.


作者简介

KESHAB K. PARHI is Edgar F. Johnson Professor of Electrical and Computer Engineering at the University of Minne-sota in Minneapolis. Dr. Parhi is widely recognized for his work in the area of VLSI digital signal and image processing. In addition to publishing more than two hundred fifty papers and serving on the editorial boards of a number of professional journals, he has coauthored several books, most recently, Pipelined Lattice and Wave Digital Recursive Filters, and Digital Signal Processing for Multimedia Systems.

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