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Cyberphysical Infrastructures In Power Systems Architectures And Vulnerabilities Magdi S Mahmoud

  • SKU: BELL-47937338
Cyberphysical Infrastructures In Power Systems Architectures And Vulnerabilities Magdi S Mahmoud
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Cyberphysical Infrastructures In Power Systems Architectures And Vulnerabilities Magdi S Mahmoud instant download after payment.

Publisher: Elsevier
File Extension: PDF
File size: 15.83 MB
Pages: 426
Author: Magdi S. Mahmoud, Haris M. Khalid, Mutaz M. Hamdan
ISBN: 9780323852616, 0323852610
Language: English
Year: 2021

Product desciption

Cyberphysical Infrastructures In Power Systems Architectures And Vulnerabilities Magdi S Mahmoud by Magdi S. Mahmoud, Haris M. Khalid, Mutaz M. Hamdan 9780323852616, 0323852610 instant download after payment.

In an uncertain and complex environment, to ensure secure and stable operations of large-scale power systems is one of the biggest challenges that power engineers have to address today. Traditionally, power system operations and decision-making in controls are based on power system computations of physical models describing the behavior of power systems. Largely, physical models are constructed according to some assumptions and simplifications, and such is the case with power system models. However, the complexity of power system stability problems, along with the system's inherent uncertainties and nonlinearities, can result in models that are impractical or inaccurate. This calls for adaptive or deep-learning algorithms to significantly improve current control schemes that solve decision and control problems. Cyberphysical Infrastructures in Power Systems: Architectures and Vulnerabilities provides an extensive overview of CPS concepts and infrastructures in power systems with a focus on the current state-of-the-art research in this field. Detailed classifications are pursued highlighting existing solutions, problems, and developments in this area. Gathers the theoretical preliminaries and fundamental issues related to CPS architectures. Provides coherent results in adopting control and communication methodologies to critically examine problems in various units within smart power systems and microgrid systems. Presents advanced analysis under cyberphysical attacks and develops resilient control strategies to guarantee safe operation at various power levels.

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