Power System Dynamics: Analysis and Simulation

Author:   R. Ramanujam
Publisher:   PHI Learning
ISBN:  

9788120335257


Pages:   528
Publication Date:   30 January 2010
Format:   Paperback
Availability:   To order   Availability explained
Stock availability from the supplier is unknown. We will order it for you and ship this item to you once it is received by us.

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Power System Dynamics: Analysis and Simulation


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Full Product Details

Author:   R. Ramanujam
Publisher:   PHI Learning
Imprint:   PHI Learning
Dimensions:   Width: 20.00cm , Height: 5.00cm , Length: 25.00cm
Weight:   0.333kg
ISBN:  

9788120335257


ISBN 10:   8120335252
Pages:   528
Publication Date:   30 January 2010
Audience:   College/higher education ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Paperback
Publisher's Status:   Active
Availability:   To order   Availability explained
Stock availability from the supplier is unknown. We will order it for you and ship this item to you once it is received by us.

Table of Contents

Preface; 1. ONCE OVER LIGHTLY; 2. POWER SYSTEM STABILITY-ELEMENTARY ANALYSIS; 3. SYNCHRONOUS MACHINE MODELLING FOR POWER SYSTEM DYNAMICS; 4. MODELLING OF OTHER COMPONENTS FOR DYNAMIC ANALYSIS; 5. OVERVIEW OF NUMERICAL METHODS; 6. SMALL-SIGNAL STABILITY ANALYSIS OF POWER SYSTEMS; 7. TRANSIENT STABILITY ANALYSIS OF POWER SYSTEMS; 8. SUBSYNCHRONOUS AND TORSIONAL OSCILLATIONS; 9. ENHANCEMENT AND COUNTERMEASURES; Index.

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Author Information

R. Ramanujam, Ph.D., is Professor in the Department of Electrical and Electronics Engineering, College of Engineering, Guindy, Anna University, Chennai, India. He has been a Research Associate with the University of British Columbia, Canada, and has worked for leading consulting and software development firms in India, United States and Germany. He has over 34 years teaching experience including teaching power system dynamics both at undergraduate and postgraduate levels. He has authored over 40 papers in his areas of research interests which include power system dynamics, nonlinear phenomenon in power systems, FACTS and power system education.

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