Matrix Analysis of Electrical Machinery
eBook - PDF

Matrix Analysis of Electrical Machinery

  1. 368 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Matrix Analysis of Electrical Machinery

About this book

Matrix Analysis of Electrical Machinery, Second Edition is a 14-chapter edition that covers the systematic analysis of electrical machinery performance. This edition discusses the principles of various mathematical operations and their application to electrical machinery performance calculations. The introductory chapters deal with the matrix representation of algebraic equations and their application to static electrical networks. The following chapters describe the fundamentals of different transformers and rotating machines and present torque analysis in terms of the currents based on the principle of the conservation of energy. A chapter focuses on a number of linear transformations commonly used in machine analysis. This edition also describes the performance of other electrical machineries, such as direct current, single-phase and polyphase commutator, and alternating current machines. The concluding chapters cover the analysis of small oscillations and other machine problems. This edition is intended for readers who have some knowledge of or are concurrently studying the physical nature of electrical machines.

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Yes, you can access Matrix Analysis of Electrical Machinery by N. N. Hancock in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Physics. We have over one million books available in our catalogue for you to explore.

Information

Publisher
Pergamon
Year
2016
Print ISBN
9780080178998
eBook ISBN
9781483137292

Table of contents

  1. Front Cover
  2. Matrix Analysis of Electrical Machinery
  3. Copyright Page
  4. Table of Contents
  5. Preface to the second edition
  6. Preface to the first edition
  7. Chapter 1. Introduction
  8. Chapter 2. Elements of matrix algebra
  9. Chapter 3. Application of matrix algebra to static electrical networks
  10. Chapter 4. Transformers
  11. Chapter 5. The matrix equations of the basic rotating machines
  12. Chapter 6. The torque expressions
  13. Chapter 7. Linear transformations in circuits and machines
  14. Chapter 8. The application of matrix techniques to routine performance calculations
  15. Chapter 9. D.C. and single-phase commutator machines
  16. Chapter 10. The steady-state performance of polyphase machines
  17. Chapter 11. Transient and negative-sequence conditions in A.C. machines
  18. Chapter 12. Small oscillations
  19. Chapter 13. Miscellaneous machine problems
  20. Chapter 14. Conclusion
  21. Appendices
  22. Exercises
  23. Hints and answers to exercises
  24. References
  25. Index