Engineering Applications of Correlation and Spectral Analysis

Engineering Applications of Correlation and Spectral Analysis
Author: Julius S. Bendat
Publisher: Wiley-Interscience
Total Pages: 486
Release: 1993
Genre: Mathematics
ISBN:

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Expanded to cover more advanced applications where statistical properties of data can be nonstationary and the physical systems nonlinear as opposed to only linear. Stresses the practical use and interpretation of analyzed data to solve problems. Special attention is given to bias and random errors involved in desired estimates and the proper interpretation of results from specific applications. Includes numerous case studies concerned with dynamic problems which can occur in a variety of fields.

Engineering Applications of Correlation and Spectral Analysis

Engineering Applications of Correlation and Spectral Analysis
Author: Julius S. Bendat
Publisher:
Total Pages: 328
Release: 1980-05-13
Genre: Mathematics
ISBN:

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Introduction and background; Probability functions and amplitude measures; Correlation and spectral density functions; Single input/single output relationships; System identification and response; Propagation path identification; Single input/multiple output problems; Multiple input/output relationships; Energy source identification; Procedures for solving multiple input/output problems; Statistical errors in measurements.

Inter-area Oscillations in Power Systems

Inter-area Oscillations in Power Systems
Author: Arturo Roman Messina
Publisher: Springer Science & Business Media
Total Pages: 278
Release: 2009-04-21
Genre: Technology & Engineering
ISBN: 0387895302

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The study of complex dynamic processes governed by nonlinear and nonstationary characteristics is a problem of great importance in the analysis and control of power system oscillatory behavior. Power system dynamic processes are highly random, nonlinear to some extent, and intrinsically nonstationary even over short time intervals as in the case of severe transient oscillations in which switching events and control actions interact in a complex manner. Phenomena observed in power system oscillatory dynamics are diverse and complex. Measured ambient data are known to exhibit noisy, nonstationary fluctuations resulting primarily from small magnitude, random changes in load, driven by low-scale motions or nonlinear trends originating from slow control actions or changes in operating conditions. Forced oscillations resulting from major cascading events, on the other hand, may contain motions with a broad range of scales and can be highly nonlinear and time-varying. Prediction of temporal dynamics, with the ultimate application to real-time system monitoring, protection and control, remains a major research challenge due to the complexity of the driving dynamic and control processes operating on various temporal scales that can become dynamically involved. An understanding of system dynamics is critical for reliable inference of the underlying mechanisms in the observed oscillations and is needed for the development of effective wide-area measurement and control systems, and for improved operational reliability.

Introductory Signal Processing

Introductory Signal Processing
Author: Roland Priemer
Publisher: World Scientific
Total Pages: 762
Release: 1991
Genre: Technology & Engineering
ISBN: 9789971509194

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A valuable introduction to the fundamentals of continuous and discrete time signal processing, this book is intended for the reader with little or no background in this subject. The emphasis is on development from basic principles. With this book the reader can become knowledgeable about both the theoretical and practical aspects of digital signal processing.Some special features of this book are: (1) gradual and step-by-step development of the mathematics for signal processing, (2) numerous examples and homework problems, (3) evolutionary development of Fourier series, Discrete Fourier Transform, Fourier Transform, Laplace Transform, and Z-Transform, (4) emphasis on the relationship between continuous and discrete time signal processing, (5) many examples of using the computer for applying the theory, (6) computer based assignments to gain practical insight, (7) a set of computer programs to aid the reader in applying the theory.

Spectral Analysis in Engineering

Spectral Analysis in Engineering
Author: Grant Hearn
Publisher: Butterworth-Heinemann
Total Pages: 321
Release: 1995-08-17
Genre: Technology & Engineering
ISBN: 0080541550

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This text provides a thorough explanation of the underlying principles of spectral analysis and the full range of estimation techniques used in engineering. The applications of these techniques are demonstrated in numerous case studies, illustrating the approach required and the compromises to be made when solving real engineering problems. The principles outlined in these case studies are applicable over the full range of engineering disciplines and all the reader requires is an understanding of elementary calculus and basic statistics. The realistic approach and comprehensive nature of this text will provide undergraduate engineers and physicists of all disciplines with an invaluable introduction to the subject and the detailed case studies will interest the experienced professional. No more than a knowledge of elementary calculus, and basic statistics and probability is needed Accessible to undergraduates at any stage of their courses Easy and clear to follow

Automatic Autocorrelation and Spectral Analysis

Automatic Autocorrelation and Spectral Analysis
Author: Petrus M.T. Broersen
Publisher: Springer Science & Business Media
Total Pages: 301
Release: 2006-08-02
Genre: Technology & Engineering
ISBN: 1846283299

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Spectral analysis requires subjective decisions which influence the final estimate and mean that different analysts can obtain different results from the same stationary stochastic observations. Statistical signal processing can overcome this difficulty, producing a unique solution for any set of observations but that is only acceptable if it is close to the best attainable accuracy for most types of stationary data. This book describes a method which fulfils the above near-optimal-solution criterion, taking advantage of greater computing power and robust algorithms to produce enough candidate models to be sure of providing a suitable candidate for given data.

Spectral Analysis and Its Applications

Spectral Analysis and Its Applications
Author: Gwilym M. Jenkins
Publisher:
Total Pages: 554
Release: 1969
Genre: Mathematics
ISBN:

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This book has been designed primarily for post-graduate engineers, since most of the applications of spectral analysis have been made by engineers and physicists - preface.

Two-Dimensional Correlation Spectroscopy

Two-Dimensional Correlation Spectroscopy
Author: Isao Noda
Publisher: John Wiley & Sons
Total Pages: 310
Release: 2005-01-14
Genre: Science
ISBN: 0470012390

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A valuable tool for individuals using correlation spectroscopy and those that want to start using this technique. Noda is known as the founder of this technique, and together with Ozaki, they are the two biggest names in the area First book on 2D vibrational and optical spectroscopy - single source of information, pulling together literature papers and reveiws Growing number of applications of this methodology - book now needed for people thinking of using this technique Limitations and benefits discussed and comparisons made with 2D NMR Discusses 20 optical and vibrational spectroscopy (IR, Raman, UV, Visible)