𝔖 Scriptorium
✦   LIBER   ✦

πŸ“

Electrical Machines, Drives and Power Systems

✍ Scribed by Théodore Wildi


Publisher
Pearson
Year
2013
Tongue
English
Leaves
927
Edition
6th, intern.
Category
Library

⬇  Acquire This Volume

No coin nor oath required. For personal study only.

✦ Table of Contents


Part I: FUNDAMENTALS. 1. Units. 2. Fundamentals of Electricity, Magnetism and Circuits. 3. Fundamentals of Mechanics and Heat. Part II: ELECTRICAL MACHINES AND TRANSFORMERS. 4. Direct-Current Generators. 5. Direct-Current Motors. 6. Efficiency and Heating of Electrical Machines. 7. Active, Reactive, and Apparent Power. 8. Three-Phase Circuits. 9. The Ideal Transformer. 10. Practical Transformers. 11. Special Transformers. 12. Three-Phase Transformers. 13. Three-Phase Induction Motors. 14. Selection and Application of Three-Phase Induction Machines. 15. Equivalent Circuit of the Induction Motor. 16. Synchronous Generators. 17. Synchronous Motors. 18. Single-Phase Motors. 19. Stepper Motors. Part III: ELECTRICAL AND ELECTRONIC DRIVES. 20. Basics of Industrial Motor Control. 21. Fundamental Elements of Power Electronics. 22. Electronic Control of Direct-Current Motors. 23. Electronic Control of Alternating Current Motors. Part IV: ELECTRIC UTILITY POWER SYSTEMS. 24. Generation of Electrical Energy. 25. Transmission of Electrical Energy. 26. Distribution of Electrical Energy. 27. The Cost of Electricity. 28. Direct-Current Transmission. 29. Transmission and Distribution Solid-State Controllers. 30. Harmonics. References. Appendix A: Conversion Charts. Appendix B: Properties of Insulating Materials. Appendix C: Properties of Conductors and Insulators. Appendix D: Properties of Round Copper Conductors. Answers to Problems. Answers to Industrial Application Problems. Problems. Index.


πŸ“œ SIMILAR VOLUMES


Electrical Machines, Drives, and Power S
✍ Theodore Wildi πŸ“‚ Library πŸ“… 2002 πŸ› Prentice Hall 🌐 English

For one-semester, undergraduate-level courses in Motor Controls, Electric Machines, Power Electronics, and Electric Power. This best-selling text employs a theoretical, practical, multidisciplinary approach to provide introductory students with a broad understanding of modern electric power. The sco

Electrical Machines, Drives, and Power S
✍ Wildi, Theodore πŸ“‚ Library πŸ“… 2013 🌐 English

For courses in Motor Controls, Electric Machines, Power Electronics, and Electric Power. This best-selling text employs a theoretical, practical, multidisciplinary approach to provide introductory students with a broad understanding of modern electric power. The scope of the book reflects the rapid

Electrical Machines, Drives and Power Sy
✍ Theodore Wildi πŸ“‚ Library πŸ“… 2002 πŸ› Prentice Hall 🌐 English

For one-semester, undergraduate-level courses in Motor Controls, Electric Machines, Power Electronics, and Electric Power. This best-selling text employs a theoretical, practical, multidisciplinary approach to provide introductory students with a broad understanding of modern electric power. The sc

Power Quality in Power Systems, Electric
✍ Ewald F. Fuchs, Mohammad A. S. Masoum πŸ“‚ Library πŸ“… 2023 πŸ› Academic Press 🌐 English

<p><span>Power Quality in Power Systems, Electrical Machines</span><span>,</span><span> and Power-Electronic Drives</span><span> uses current research and engineering practices, guidelines, standards, and regulations for engineering professionals and students interested in solving power quality prob

Power Quality in Power Systems, Electric
✍ Ewald F. Fuchs, Mohammad A. S. Masoum πŸ“‚ Library πŸ› Academic Press 🌐 English

<p><span>Power Quality in Power Systems, Electrical Machines</span><span>,</span><span> and Power-Electronic Drives</span><span> uses current research and engineering practices, guidelines, standards, and regulations for engineering professionals and students interested in solving power quality prob

electrical machines and drives systems
✍ John Hindmarsh, Alasdair Renfrew πŸ“‚ Library πŸ“… 1997 πŸ› Butterworth-Heinemann 🌐 English

This introductory text for electrical engineering students is concerned with the principles of electromechanical energy conversion, its utilization within particular drive systems, its practical implementation via power electronic circuitry and its relevance to intergrated power networks. The early