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Robust Power System Frequency Control [electronic resource] / by Hassan Bevrani.

By: Contributor(s): Material type: TextTextSeries: Power Electronics and Power SystemsPublisher: Boston, MA : Springer US, 2009Description: XIV, 226p. 25 illus. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780387848785
Subject(s): Additional physical formats: Printed edition:: No titleOnline resources:
Contents:
Power System Control: An Overview -- Real Power Compensation and Frequency Control -- Frequency Response Characteristics and Dynamic Performance -- PI-Based Frequency Control Design -- Frequency Regulation with Time Delays -- Multi-Objective Control-Based Frequency Regulation -- Agent-Based Robust Frequency Regulation -- Application of Structured Singular Values in LFC Design -- Frequency Control in Emergency Conditions -- Renewable Energy Options and Frequency Regulation.
In: Springer eBooksSummary: 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 significant today due to the increasing size, changing structure, emerging new uncertainties, environmental constraints, and the complexity of power systems. Robust Power System Frequency Control uses the recent development of linear robust control theory to provide practical, systematic, fast, and flexible algorithms for the tuning of power system load-frequency controllers. The physical constraints and important challenges related to the frequency regulation issue in a deregulated environment are emphasized, and most results are supplemented by real-time simulations. The developed control strategies attempt to bridge the existing gap between the advantages of robust/optimal control and traditional power system frequency control design. The material summarizes the long term research outcomes and contributions of the author’s experience with power system frequency regulation. It provides a thorough understanding of the basic principles of power system frequency behavior over a wide range of operating conditions. It uses simple frequency response models, control structures and mathematical algorithms to adapt modern robust control theorems with frequency control issues as well as conceptual explanations. The engineering aspects of frequency regulation have been considered, and practical methods for computer analysis and design are also discussed. Robust Power System Frequency Control provides a comprehensive coverage of frequency control understanding, simulation and design. The material develops an appropriate intuition relative to the robust load frequency regulation problem in real-world power systems, rather than to describe sophisticated mathematical analytical methods.
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E-Book E-Book Central Library Available E-38114

Power System Control: An Overview -- Real Power Compensation and Frequency Control -- Frequency Response Characteristics and Dynamic Performance -- PI-Based Frequency Control Design -- Frequency Regulation with Time Delays -- Multi-Objective Control-Based Frequency Regulation -- Agent-Based Robust Frequency Regulation -- Application of Structured Singular Values in LFC Design -- Frequency Control in Emergency Conditions -- Renewable Energy Options and Frequency Regulation.

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 significant today due to the increasing size, changing structure, emerging new uncertainties, environmental constraints, and the complexity of power systems. Robust Power System Frequency Control uses the recent development of linear robust control theory to provide practical, systematic, fast, and flexible algorithms for the tuning of power system load-frequency controllers. The physical constraints and important challenges related to the frequency regulation issue in a deregulated environment are emphasized, and most results are supplemented by real-time simulations. The developed control strategies attempt to bridge the existing gap between the advantages of robust/optimal control and traditional power system frequency control design. The material summarizes the long term research outcomes and contributions of the author’s experience with power system frequency regulation. It provides a thorough understanding of the basic principles of power system frequency behavior over a wide range of operating conditions. It uses simple frequency response models, control structures and mathematical algorithms to adapt modern robust control theorems with frequency control issues as well as conceptual explanations. The engineering aspects of frequency regulation have been considered, and practical methods for computer analysis and design are also discussed. Robust Power System Frequency Control provides a comprehensive coverage of frequency control understanding, simulation and design. The material develops an appropriate intuition relative to the robust load frequency regulation problem in real-world power systems, rather than to describe sophisticated mathematical analytical methods.

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