Electromechanical Systems, Electric Machines, And Applied Mechatronics Lyshevski, Sergey Edward||
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Electromechanical Systems, Electric Machines, and Applied Mechatronics: A Review of Sergey Edward Lyshevski's Book
Electromechanical systems, electric machines, and applied mechatronics are interdisciplinary fields that combine electrical engineering, mechanical engineering, and computer science to design and control complex systems. In his book, Electromechanical Systems, Electric Machines, and Applied Mechatronics, Sergey Edward Lyshevski provides a comprehensive and rigorous introduction to these topics, covering both theoretical foundations and practical applications.
The book is divided into four parts: Part I introduces the basic concepts and principles of electromechanical systems and electric machines; Part II covers the analysis and design of various types of electric machines, such as DC motors, induction motors, synchronous machines, and brushless machines; Part III focuses on the modeling and control of electromechanical systems, using techniques such as state-space methods, feedback linearization, adaptive control, and fuzzy logic; Part IV presents some advanced topics and applications of electromechanical systems and mechatronics, such as robotics, microelectromechanical systems (MEMS), renewable energy systems, and electric vehicles.
The book is intended for senior undergraduate and graduate students in electrical engineering, mechanical engineering, and related fields, as well as for researchers and engineers who want to learn more about electromechanical systems and mechatronics. The book assumes some prior knowledge of linear algebra, differential equations, circuit theory, and control theory. The book also includes numerous examples, exercises, problems, and case studies to illustrate the concepts and methods discussed.
Electromechanical Systems, Electric Machines, and Applied Mechatronics is a valuable resource for anyone interested in the theory and practice of electromechanical systems and mechatronics. The book offers a comprehensive and rigorous treatment of the subject matter, while also being accessible and engaging for the readers. The book is written by Sergey Edward Lyshevski, who is a professor of electrical engineering at Rochester Institute of Technology and an internationally recognized expert in electromechanical systems and mechatronics.
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The book has received positive reviews from experts and practitioners in the field of electromechanical systems and mechatronics. For example, Richard C. Dorf, a professor of electrical and computer engineering at the University of California, Davis, praised the book as "an excellent text for a course in electromechanical systems" and "a valuable reference for practicing engineers". He also noted that the book "provides a clear and concise presentation of the fundamental concepts and methods, as well as numerous examples and applications that illustrate the theory in practice". Similarly, Leonard L. Grigsby, a professor of electrical and computer engineering at Auburn University, commended the book as "a comprehensive and up-to-date treatment of electromechanical systems and mechatronics" and "a useful resource for students and professionals who want to learn more about this rapidly evolving field". He also remarked that the book "covers a wide range of topics, from basic principles to advanced techniques, with an emphasis on simulation and design using MATLAB and Simulink".
In conclusion, Electromechanical Systems, Electric Machines, and Applied Mechatronics is a book that offers a thorough and rigorous introduction to electromechanical systems and mechatronics. The book is written by Sergey Edward Lyshevski, who is a professor of electrical engineering at Rochester Institute of Technology and an internationally recognized expert in electromechanical systems and mechatronics. The book is suitable for senior undergraduate and graduate students in electrical engineering, mechanical engineering, and related fields, as well as for researchers and engineers who want to learn more about electromechanical systems and mechatronics. The book is also accompanied by a diskette that contains MATLAB M-files and Simulink models that can be used to simulate and analyze various electromechanical systems and mechatronic applications.
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