Power System Coherency and Model Reduction

"Power System Coherency and Model Reduction" provides a comprehensive treatment for understanding interarea modes in large power systems and obtaining reduced-order models using the coherency concept and selective modal analysis method. Both linear and nonlinear analysis methods are covered. This is a reference book for researchers interested in interarea oscillations and model reduction, and power engineers in developing reduced models for power system studies and control design.

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Power System Coherency and Model Reduction

"Power System Coherency and Model Reduction" provides a comprehensive treatment for understanding interarea modes in large power systems and obtaining reduced-order models using the coherency concept and selective modal analysis method. Both linear and nonlinear analysis methods are covered. This is a reference book for researchers interested in interarea oscillations and model reduction, and power engineers in developing reduced models for power system studies and control design.

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Power System Coherency and Model Reduction

Power System Coherency and Model Reduction

Power System Coherency and Model Reduction

Power System Coherency and Model Reduction

eBook2013 (2013)

$159.00 

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Overview

"Power System Coherency and Model Reduction" provides a comprehensive treatment for understanding interarea modes in large power systems and obtaining reduced-order models using the coherency concept and selective modal analysis method. Both linear and nonlinear analysis methods are covered. This is a reference book for researchers interested in interarea oscillations and model reduction, and power engineers in developing reduced models for power system studies and control design.


Product Details

ISBN-13: 9781461418030
Publisher: Springer-Verlag New York, LLC
Publication date: 07/08/2014
Series: Power Electronics and Power Systems , #94
Sold by: Barnes & Noble
Format: eBook
Pages: 300
File size: 7 MB

About the Author

Joe H. Chow is at the Rensselaer Polytechnic Institute, Troy, NY USA. 

Table of Contents

Introduction.- Coherency in Power Systems.- Slow Coherency and Aggregation.- Excitation System Aggregation.- A Hybrid Dynamic Equivalent using ANN-based BoundaryMatching Technique.- Krylov Subspace and Balanced Truncation Methods for Power System Model Reduction.- Reduction of Large Power System Models: A Case Study.- Measurement-based Methods for Model Reduction of Power Systems using Synchrophasors.- Selective Modal Analysis.- InterareaMode Analysis for Large Power Systems using Synchrophasor Data.

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