Power System Analysis And Design By J. Dancan Glover

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Power System Analysis And Design By J. Dancan Glover

" Power System Analysis and Design " by J. Duncan Glover is a foundational textbook in electrical engineering, widely used by students and professionals to understand the principles of electric power systems. The book, co-authored in various editions with Mulukutla S. Sarma, Thomas Overbye, and Adam Birchfield, provides a comprehensive overview of the subject, combining theoretical concepts with practical, real-world applications.

The book's strength lies in its ability to present complex topics in a clear and logical manner. It starts with foundational concepts, such as phasors and three-phase circuits, and progressively builds on them to cover more advanced topics. This approach makes the material accessible to students while still providing the depth of knowledge required for professional work.

A key feature of the textbook is its integration of computer-aided analysis. It makes extensive use of the Power World Simulator software, allowing readers to apply the theoretical methods they learn to realistic power system scenarios. The book's worked examples are often extended and illustrated with the software, providing a hands-on learning experience that is crucial for modern power system engineering.

The content is organized into logical sections that cover the entire power system. The book details the components of a power system, including:

  • Power Transformers: Explaining ideal and equivalent circuits, the per-unit system, and three-phase connections.
  • Transmission Lines: Discussing parameters such as resistance, inductance, and capacitance, as well as steady-state operation and reactive compensation.

The core analysis sections of the book delve into:

  • Power Flow Studies: A critical tool for system planning and operation, with detailed explanations of iterative solution methods like Gauss-Seidel and Newton-Raphson.
  • Fault Analysis: Covering both symmetrical and unsymmetrical faults, and introducing the method of symmetrical components for simplifying the analysis of unbalanced conditions.

Beyond analysis, the book also addresses crucial aspects of power system design and operation, including:

  • Economic Dispatch and Optimal Power Flow: Methods for minimizing generation costs.
  • System Protection: Discussing relays, circuit breakers, and protection schemes.
  • Power System Stability: The ability of the system to maintain equilibrium after a disturbance.

Recent editions of the book have been updated to reflect modern trends and challenges in the power industry, such as the integration of renewable energy sources, distributed energy resources, and high-voltage direct current (HVDC) transmission. The addition of new co-authors has brought fresh insights into these contemporary technological advancements.

Overall, "Power System Analysis and Design" is a cornerstone of power engineering education. Its clear explanations, practical examples, and use of industry-standard software make it an invaluable resource for anyone seeking a solid foundation in the theory and application of power system engineering.

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