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Cover image for Inter-area oscillations in power systems : a nonlinear and nonstationary perspective
Title:
Inter-area oscillations in power systems : a nonlinear and nonstationary perspective
Personal Author:
Series:
Power electronics and power systems
Publication Information:
New York, NY : Springer, 2009
Physical Description:
xvi, 267 p. : ill. ; 25 cm.
ISBN:
9780387895291

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30000010205362 TK1010 M47 2009 Open Access Book Book
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Summary

Summary

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.


Table of Contents

Daniel Trudnowski and John PierreNilanjan SenroyDina Shona Laila and Arturo Roman Messina and Bikash Chandra PalT. J. Browne and V. Vittal and G. T. Heydt and Arturo Roman MessinaJaime Quintero and Vaithianathan (Mani) VenkatasubramanianP. Esquivel and E. Barocio and M.A. Andrade and F. LezamaGerard Ledwich and Ed Palmer and Arindam GhoshSergio Bruno and Michele De Benedictis and Massimo La Scala
1 Signal Processing Methods for Estimating Small-Signal Dynamic Properties from Measured Responsesp. 1
2 Enhancements to the Hilbert-Huang Transform for Application to Power System Oscillationsp. 37
3 Variants of Hilbert-Hung Transform with Applications to Power Systems' Oscillatory Dynamicsp. 63
4 Practical Application of Hilbert Transform Techniques in Identifying Inter-area Oscillationsp. 101
5 A Real-Time Wide-Area Controller for Mitigating Small-Signal Instabilityp. 127
6 Complex Empirical Orthogonal Function Analysis of Power System Oscillatory Dynamicsp. 159
7 Detection and Estimation of Nonstationary Power Transientsp. 189
8 Advanced Monitoring and Control Approaches for Enhancing Power System Securityp. 231
Indexp. 261
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