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Electric Machines: Steady-State Theory and Dynamic Performance, by Mulukutla S. Sarma
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Electric Machines is designed to serve as a textbook for a course on electrical machines for undergraduate students of engineering. It provides an insight into the fundamentals of the theory and performance of electric machines. The book includes comprehensive discussions on phasor diagrams and their applications in the study of electric machines. Beginning with topics such as three-phase circuits, transformers, and machine windings, the book goes on to cover induction machines, synchronous machines, and direct current machines as well as their transient and dynamic characteristics. Discussions on magnetic aspects of electric machines, principles of electromechanical energy conversion, and power semiconductor-controlled devices make the book a complete text for undergraduate students. Written in an easy-to-understand manner, the book presents the relevant topics in a systematic and lucid manner. Solved examples have been interspersed throughout the text to illustrate problem-solving methodologies. A large number of unsolved problems have been included to test the students’ understanding of the concepts discussed.
- Sales Rank: #1263421 in Books
- Brand: Brand: Cengage Learning
- Published on: 1997-02-12
- Original language: English
- Number of items: 1
- Dimensions: 9.54" h x 1.21" w x 7.63" l, 2.50 pounds
- Binding: Hardcover
- 672 pages
- Used Book in Good Condition
Review
PART I: INTRODUCTION 1. A Review of Phasor Diagrams 2. Three-Phase Circuits 3. The Magnetic Aspects 4. Transformers 5. Principles of Electromechanical Energy Conversion 6. Machine Windings PART II: STEADY-SATE THEORY AND PERFORMANCE 7. Induction Machines 8. Synchronous Machines 9. Direct-Current Machines PART III: TRANSIENTS AND DYNAMICS 10. Transients and Dynamics of AC Machines 11. Direct-Current Machine Dynamics 12. Power Semiconductor-Controlled Drives APPENDIXES: A. UNITS, CONSTANTS, AND CONVERSIONS FACTORS FOR THE SI SYSTEM / B. SPECIAL MACHINES / ANSWER TO ODD-NUMBERED PROBLEMS / INDEX
About the Author
Mulukutla S. Sarma is the author of numerous technical articles published in leading journals, including the first studies of methods for computer-aided analysis of three-dimensional nonlinear electromagnetic field problems as applied to the design of electrical machinery. Dr. Sarma is a Life-Fellow of IEEE (USA), a Fellow of IEE (UK) and IEE (INDIA), a reviewer of several IEEE Transactions, a member of the IEEE Rotating Machinery Committee, and a member of several other professional societies. He is also a Professional Engineer in the State of Massachusetts.
Most helpful customer reviews
0 of 0 people found the following review helpful.
Electrical Engineering - Power Conversion Book
By Josh
This book was published in 1994. I guess not much has changed since then. It is not a very good read, but the homework questions are pretty straight forward.
0 of 0 people found the following review helpful.
Five Stars
By Samer
thank you
7 of 7 people found the following review helpful.
Not bad, but not good either
By Rasmus Post
I have this book, and have read it. At the university I give lectures in dynamics of electrical machines. For the students it is the first time they expirience electrical machines. A problem you always face is what is a good book on electrical machines? I know from expirience that the perfect book propperly will never exist. In this book, I must say, there are some very good explanations on how the different motors work and their dynamics. However, for long pasages it is _not_ clear what the aim is. For a person already knowing electrical machines, it is interesting to talk about motor-windings in a general way, but if want to learn how the basic motors as a DC_motor, a induction motor and a synchronous motor works, it is nescessary to explain electromechanical energy convertion first and then attack each of the motors individually. This is where this book fails. It is a mess with some good parts inside.
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