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Spectral techniques and fault detection.

Author: Marg Karpovsky
Publisher: Oxford : Elsevier Science, 1985.
Edition/Format:   eBook : Document : EnglishView all editions and formats
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Spectral techniques and fault detection.
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Genre/Form: Electronic books
Conference papers and proceedings
Congresses
Additional Physical Format: Print version:
Karpovsky, Marg.
Spectral techniques and fault detection.
Oxford : Elsevier Science, ©1985
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Marg Karpovsky
ISBN: 9780323144421 032314442X
OCLC Number: 831117140
Notes: Ii. notational conventions and the partial boolean derivative.
Description: 1 online resource (619 pages)
Contents: Front Cover; Spectral Techniques and Fault Detection; Copyright Page; Table of Contents; CONTRIBUTORS; PREFACE; CHAPTER 1. INTRODUCTION; 1. Linearity; 2. Translation of Arguments; 3. Logical Convolution; 4. PIancherel Theorem; 5. Poisson Summation Theorem; REFERENCES; CHAPTER 2. SYNTHESIS OF ENCODED PLAS; I. INTRODUCTION; II. MATHEMATICAL BACKGROUND FOR ENCODED PLA ANALYSIS; III. EXAMPLES OF ALGORITHM OPERATION; IV. AN ALTERNATE SELECTION ALGORITHM; V. RESULTS AND CONCLUSIONS; APPENDIX A: DERIVATION OF M IN TERMS OF AUTOCORRELATIONS; REFERENCES. Chapter 3. spectral processing of switching functions using signal-flcw transformations1. introduction; 2. wht of dyadic ordered data; 3. similarity transformations under the wht; 4. examples of spectral processing; 5. applications; 6. concluding remarks; references; chapter 4. the chrestenson transform in pattern analysis; i . summary; ii. definitions; iii. properties of the two sided chrestenson spectrum of a pattern; iv. compact spectra; v. closing remarks; references; chapter 5. filtering in a communication channel by fourier transforms over finite groups; i. introduction. II. HARMONIC ANALYSIS OVER FINITE GROUPSIII. OPTIMAL AND SUBOPTIMAL WIENER FILTERS; IV. GROUP WIENER FILTERS; V. COMPUTER EXPERIMENTS; VI. REFERENCES; CHAPTER 6. 3D CELLULAR ARRAYS FOR PARALLEL/CASCADE IMAGE/SIGNAL PROCESSING; I. Introduction; II. Constant Geometry Algorithms for Generalized Spectral Analysis; III. A Universal Processing Element for Parallel/Cascade Processing; IV. A Model for Parallel/Cascade Processing Using the UPE; V. Memory Configurations; VI. Processors for 1D and 2D Signals; VII. Array Topology; VIII. Convolution and Correlation Using the Z Transform; IX. Conclusions. AcknowledgementReferences; CHAPTER 7. UNIVERSAL TESTING OF COMPUTER HARDWARE; I. INTRODUCTION; II. BASIC IDEAS OF UNIVERSAL TESTING AND APPLICATIONS TO COMBINATIONAL AND SEQUENTIAL CIRCUITS; III. ADVANTAGES AND LIMITATIONS OF UNIVERSAL TESTING METHODS; IV. CONCLUDING REMARKS; REFERENCES; CHAPTER 8. SPECTRAL TECHNIQUES FOR FAULT DETECTION IN COMBINATIONAL LOGIC; I. INTRODUCTION; II. NOTATION AND BACKGROUND; III. SPECTRAL COEFFICIENT TESTABILITY; IV. SYNDROME AND CONSTRAINED SYNDROME TESTING; V. SPECTRAL CHARACTERIZATION OF CONSTRAINED SYNDROME TESTING; VI. SPECTRAL COEFFICIENT SIGNATURES. Vii. programmable logic arraysviii. sequential networks and test implementation; ix. multiple-output networks; x. conclusion; references; chapter 9. signature techniques in fault detection and location; i. introduction; ii. fault detection problem; iii. discussion of the data compaction techniques; iv. linear feedback shift register as signature analyzer; v. fault location problem; vi. future directions and conclusions; references; chapter 10. the design and analysis of high-speed logic systems with distributed error correction; i. introduction.

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Spectral techniques and fault detection.

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