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Resilient Control Architectures and Power Systems

Book Hero Magic crafted this summary to help describe this book. While it's new and still learning, it may not be perfect - your feedback is welcome! Summary
Resilient Control Architectures and Power Systems offers a comprehensive exploration of the challenges and solutions related to automation in modern power grids. The book simulates real-world power control systems, highlighting how these complex infrastructures operate and where vulnerabilities lie, including cyber security threats and human errors. It covers foundational topics such as power grid infrastructure, control system and communication architectures, as well as advanced concepts in control theory, human-system interfaces, and resilience fundamentals. Readers will also find discussions of the latest research aimed at enhancing system resilience against a variety of threats.
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Format: Hardback
$27899
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Book Hero Magic created this recommendation. While it's new and still learning, it may not be perfect - your feedback is welcome! IS THIS YOUR NEXT READ?

This book is an essential resource for research students and practitioners working with power grid automation and control systems. It is also highly relevant to members of professional organisations such as the Control Systems Society, Systems, Man and Cybernetics Society, Computer Society, and the Power and Energy Society.

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Book Hero Magic formatted this description to make it easier to read. While it's new and still learning, it may not be perfect - your feedback is welcome! Description

Master the fundamentals of resilient power grid control applications with this up-to-date resource from four industry leaders.

Resilient Control Architectures and Power Systems delivers a unique perspective on the singular challenges presented by increasing automation in society. In particular, the book focuses on the difficulties presented by the increased automation of the power grid. The authors provide a simulation of this real-life system, offering an accurate and comprehensive picture of how a power control system works and, even more importantly, how it can fail.

The editors invite various experts in the field to describe how and why power systems fail due to cyber security threats, human error, and complex interdependencies. They also discuss promising new concepts researchers are exploring that promise to make these control systems much more resilient to threats of all kinds. Finally, resilience fundamentals and applications are investigated to allow the reader to apply measures that ensure adequate operation in complex control systems.

Among a variety of other foundational and advanced topics, you'll learn about:

  • The fundamentals of power grid infrastructure, including grid architecture, control system architecture, and communication architecture
  • The disciplinary fundamentals of control theory, human-system interfaces, and cyber security
  • The fundamentals of resilience, including the basis of resilience, its definition, and benchmarks, as well as cross-architecture metrics and considerations
  • The application of resilience concepts, including cyber security challenges, control challenges, and human challenges
  • A discussion of research challenges facing professionals in this field today

Perfect for research students and practitioners in fields concerned with increasing power grid automation, Resilient Control Architectures and Power Systems also has a place on the bookshelves of members of the Control Systems Society, the Systems, Man and Cybernetics Society, the Computer Society, the Power and Energy Society, and similar organizations.

Series: IEEE Press Series on Power and Energy Systems

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Book Details

INFORMATION

ISBN: 9781119660415

Publisher: John Wiley & Sons Inc

Format: Hardback

Date Published: 21 January 2022

Country: United States

Imprint: Wiley-IEEE Press

Contributors:

  • Edited by Brian Johnson
  • Edited by Craig Rieger
  • Edited by Ronald Boring
  • Edited by Timothy McJunkin

Audience: Professional and scholarly

DIMENSIONS

Spine width: 10.0mm

Width: 10.0mm

Height: 10.0mm

Weight: 454g

Pages: 336

About the Author

Craig Rieger, PhD, is Chief Control Systems Research Engineer at the Idaho National Laboratory. His research focus is on next generation resilient control systems.

Ronald Boring, PhD, is Researcher and Principal Investigator at Idaho National Laboratory. His primary research foci are on human reliability, human factors, and human-computer interaction forums.

Brian Johnson, PhD, is University Distinguished Professor and Schweitzer Engineering Laboratories Endowed Chair in Power Engineering in the Department of Electrical and Computer Engineering at the University of Idaho.

Timothy McJunkin is an Electrical Engineer at the Idaho National Laboratory. His primary research foci are on the development of interest resilient control of critical infrastructure, Smart Grid for renewable energy integration, and design of zero carbon microgrids.

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