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This book can be used as the main text in courses such as Engineering Optimization, Convex Engineering Optimization, Advanced Engineering Mathematics and Robust Optimization and will be useful for practicing design engineers in electrical engineering fields.
With an emphasis on practical methods for computer analysis and design, this book thoroughly explains the basic principles of power system AGC systems. It presents frequency response models, intelligent structures, and mathematical algorithms, which are used to adapt artificial intelligent control techniques for AGC issues. The authors consider physical constraints and engineering aspects of AGC systems and examine most developed intelligent control strategies, using real-time simulations. Rather than describing sophisticated mathematical analytical methods, the text develops appropriate concepts relative to the intelligent AGC problem in real-world power systems.
This book discusses relevant microgrid technologies in the context of integrating renewable energy and also addresses challenging issues. The authors summarize long term academic and research outcomes and contributions.
This updated edition of the industry standard reference on power system frequency control provides practical, systematic and flexible algorithms for regulating load frequency, offering new solutions to the technical challenges introduced by the escalating role of distributed generation and renewable energy sources in smart electric grids.
Frequency control as a major function of automatic generation control is one of the important control problems in electric power system design and operation, and is becoming more signi?cant today because of the increasing size, changing structure, emerging new uncertainties, environmental constraints and the complexity of power systems.
Providing full coverage of the basic principles on the subject, Wide Area Power System Monitoring and Control highlights key technologies for monitoring, protection, and control.
With an emphasis on practical methods for computer analysis and design, this book thoroughly explains the basic principles of power system AGC systems. It presents frequency response models, intelligent structures, and mathematical algorithms, which are used to adapt artificial intelligent control techniques for AGC issues. The authors consider physical constraints and engineering aspects of AGC systems and examine most developed intelligent control strategies, using real-time simulations. Rather than describing sophisticated mathematical analytical methods, the text develops appropriate concepts relative to the intelligent AGC problem in real-world power systems.
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