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Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox (IEEE Press)
BDT 16657
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Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox, Second Edition combines theoretical as well as practical information for use as a text for formal instruction or for reference by working engineers.
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What Stands Out
Product Details
- Addresses dynamic modeling and simulation for power system planning, design, and operation.
- Includes systematic derivation of synchronous machine dynamic models and speed and voltage control subsystems.
- Discusses reduced-order modeling and multi-machine models interconnected through the transmission network.
- Introduces new chapters on synchrophasor measurement and using the Power System Toolbox for dynamic simulation.
- Covers energy function methods, small-signal analysis, and power system stabilizer design.
- Comes with a book companion website for instructors and students featuring solutions, PowerPoint files, and MATLABTM files.
| Item Weight | 2.5 lbs (1.13 kg) |
Who Should Buy?
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Graduate Students
Ideal for graduate students specializing in electrical engineering who want in-depth knowledge of power system dynamics.
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Industry Professionals
Suited for engineers and technologists working in power systems who require practical insights into system stability assessments.
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Researchers
Beneficial for researchers interested in synchrophasor technology and its application in enhancing power system stability.
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Undergraduate Learners
May be too advanced for undergraduate students not yet familiar with power system concepts and terminologies.
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Casual Readers
Not suited for those looking for a general overview, as the content is technical and in-depth.
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Budget-Conscious Users
Price may be a concern for individuals or organizations with limited budgets seeking inexpensive resources.
Product Description
Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox (IEEE Press)
About This Item
Introducing the second edition of "Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox" by Peter W. Sauer and M. A.
Pai. This classic power system dynamics text has been updated to incorporate phasor measurement and simulation toolbox, making it an essential resource for power system planning, design, and operation. This comprehensive guide starts with a systematic derivation of synchronous machine dynamic models, including speed and voltage control subsystems. The authors then explore reduced-order modeling based on integral manifolds, providing a solid foundation for understanding the limitations and derivations of lower-order dynamic models.
In addition, this edition includes new chapters on synchrophasor measurement and using the Power System Toolbox for dynamic simulation. These chapters enhance the treatment of power system dynamics, offering both theoretical and practical information. One of the key features of this book is its emphasis on energy function methods for evaluating stability.
The authors discuss potential energy boundary surface and controlling unstable equilibrium point approaches, allowing readers to directly assess stability. Furthermore, this edition showcases the importance of phasor computation and synchrophasor data applications. Time-synchronized high-sampling-rate phasor measurement units (PMUs) have been implemented worldwide to monitor power system disturbances.
With the inclusion of these topics, readers will gain valuable insights into modern power system monitoring techniques. This book also provides additional resources for both instructors and students. Instructors will find solutions and PowerPoint files on the book's companion website, while students can access MATLAB files for further understanding and simulation practice. About the Authors: Peter W. Sauer is the Grainger Professor of Electrical Engineering at the University of Illinois, Urbana-Champaign.
With a career spanning over four decades, he specializes in modeling and simulation of power systems, focusing on steady-state and transient stability analysis. He is a registered Professional Engineer, a Fellow of the IEEE, and a member of the U.S. National Academy of Engineering. M.
A. Pai is a Professor Emeritus in Electrical and Computer Engineering. His expertise lies in power system dynamics and stability.
With his vast experience, he contributes valuable insights to this edition. "Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox, Second Edition" offers a comprehensive and practical approach to power system dynamics. Whether you are a student or a working engineer, this book will serve as an essential reference for understanding and analyzing power system behavior.
Customer Questions & Answers
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Question:
What topics are covered in Power System Dynamics and Stability?
Answer: This book extensively covers various aspects of power system dynamics, emphasizing stability analysis, modeling techniques, and control strategies. It also highlights the application of synchrophasor measurements to enhance the understanding of power system behaviors. The content is structured to assist both students and professionals in grasping complex concepts through practical examples and simulations related to real-world applications in power systems. -
Question:
Who is the target audience for this book?
Answer: Power System Dynamics and Stability is primarily designed for graduate students and researchers in the field of electrical engineering, particularly those focusing on power systems. However, it is also a valuable resource for industry professionals interested in improving system reliability and efficiency. By combining theoretical frameworks with practical insights, it serves as an essential reference for anyone engaged in power system analysis and design. -
Question:
How does the book address modern challenges in power systems?
Answer: The book thoroughly examines contemporary challenges such as integration of renewable energy sources, grid stability, and the impact of digital technologies. By utilizing synchrophasor measurement techniques, it offers innovative approaches to mitigate issues arising from ever-evolving power system dynamics. This forward-thinking perspective equips readers with tools and methodologies to tackle real-time operational challenges effectively. -
Question:
Are there practical examples included in the book?
Answer: Yes, the book includes numerous practical examples and case studies that illustrate the concepts discussed. These examples demonstrate how theoretical models are applied in real-world scenarios, providing readers with a clear understanding of power system behavior under varying conditions. Such insights are invaluable, especially for professionals looking to implement learned principles in operational settings. -
Question:
What role does the Power System Toolbox play in this book?
Answer: The Power System Toolbox is a crucial component of the book, offering simulation tools that complement the theoretical content. It allows users to model dynamic systems, analyze stability, and visualize results, making complex concepts more accessible. By engaging with these tools, readers can perform simulations that reinforce their understanding and enhance their practical skills in power system analysis. -
Question:
Is the book suitable for self-study?
Answer: Absolutely, this book is well-structured for self-study with clear explanations, examples, and exercises. Each chapter builds on previous content to facilitate a gradual learning process. Additionally, the inclusion of problem sets at the end of chapters encourages readers to test their knowledge, making it an excellent resource for those looking to deepen their understanding independently. -
Question:
How can synchrophasor measurement enhance power system management?
Answer: Synchrophasor measurement provides real-time data on electrical waveforms across the grid, significantly improving monitoring and control of power systems. By incorporating this technology, operators can quickly identify stability issues, enhance situational awareness, and respond proactively to potential disruptions. This advantage leads to more resilient and efficient power management practices, crucial in today's increasingly complex energy landscape. -
Question:
What differentiates this edition from the previous one?
Answer: The 2nd edition includes updated research findings, improved case studies, and enhanced methodologies reflecting the latest advancements in power system dynamics and stability. Furthermore, it offers more extensive coverage of synchrophasor technology, providing readers with the most current and relevant information. These updates ensure that both students and professionals have access to the latest tools and techniques necessary for today's evolving power systems. -
Question:
Can this book be used as a textbook for university courses?
Answer: Yes, Power System Dynamics and Stability serves as an excellent textbook for university courses focused on power systems and electrical engineering. Its comprehensive coverage of relevant topics, coupled with practical exercises and simulations, makes it suitable for both undergraduate and graduate-level courses. Instructors can rely on the clear structure and richness of content to enhance classroom learning experiences. -
Question:
Where can I buy Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox IEEE Press 2nd Edition?
Answer: You can buy Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox IEEE Press 2nd Edition from Ubuy. They offer a wide selection of books and are known for their efficient service in Bangladesh. By purchasing through Ubuy, you ensure easy access to this valuable resource, suitable for enhancing your knowledge in power system dynamics.
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BDT 16657
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Features & Benefits
- Addresses the needs of dynamic modeling and simulation in power system planning, design, and operation
- Provides a systematic derivation of synchronous machine dynamic models
- Discusses reduced-order modeling and energy function methods for stability evaluation
- Includes new chapters on synchrophasor measurement and using the Power System Toolbox
- Offers a book companion website for instructors and a website for students with MATLABTM files
- Suitable for formal instruction or as a reference for working engineers
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