IEEE Press on Power and Energy Systems
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Smart Cyber-Physical Power Systems, Volume 2
Solutions From Emerging Technologies
by Various Authors
Part of the IEEE Press on Power and Energy Systems series
A practical roadmap to the application of artificial intelligence and machine learning to power systems
In an era where digital technologies are revolutionizing every aspect of power systems, Smart Cyber-Physical Power Systems, Volume 2: Solutions from Emerging Technologies shifts focus to cutting-edge solutions for overcoming the challenges faced by cyber-physical power systems (CPSs). By leveraging emerging technologies, this volume explores how innovations like artificial intelligence, machine learning, blockchain, quantum computing, digital twins, and data analytics are reshaping the energy sector.
This volume delves into the application of AI and machine learning in power system optimization, protection, and forecasting. It also highlights the transformative role of blockchain in secure energy trading and digital twins in simulating real-time power system operations. Advanced big data techniques are presented for enhancing system planning, situational awareness, and stability, while quantum computing offers groundbreaking approaches to solving complex energy problems.
For professionals and researchers eager to harness cutting-edge technologies within smart power systems, Volume 2 proves indispensable. Filled with numerous illustrations, case studies, and technical insights, it offers forward-thinking solutions that foster a more efficient, secure, and resilient future for global energy systems, heralding a new era of innovation and transformation in cyber-physical power networks.
Welcome to the exploration of Smart Cyber-Physical Power Systems (CPPSs), where challenges are met with innovative solutions, and the future of energy is shaped by the paradigms of AI/ML, Big Data, Blockchain, IoT, Quantum Computing, Information Theory, Edge Computing, Metaverse, DevOps, and more.
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Electric Power System Basics for the Nonelectrical Professional
by Steven W. Blume
Part of the IEEE Press on Power and Energy Systems series
Understand the fundamentals of electrical power systems with this accessible guide
Few subjects are more fundamental to modern life than electrical power. The systems that generate, transport, and distribute electricity are among the most essential contributors to modern industry, development, and everyday living. As energy demand grows and, with it, the electric power industry, more and more non-electrical professionals must make important policy and administrative decisions regarding the systems that power our world.
Electric Power System Basics for the Nonelectrical Professional provides an education on the basics of this subject, including the various types of energy sources, types of transmission and distribution lines, grid modernization, and much more. From residential to industrial energy, and from metering principles to energy conservation techniques, this book provides a one-stop reference on all relevant areas of knowledge. Now fully updated to reflect the latest advances and the current state of a growing industry, it is a must-own for anyone looking to bring foundational power systems knowledge to bear on policy or industrial issues.
Readers of the third edition will also find:
• Coverage of wildfire mitigation strategies to reduce safety risk
• Detailed discussion of regulatory changes and their effects on system operations
• Updated coverage of system reliability and smart technologies
• Updated discussion of the transitioning digital power grid
Electric Power System Basics for the Nonelectrical Professional is ideal for power industry executives and state regulators.
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Analysis of Electric Machinery and Drive Systems
by Paul C. Krause
Part of the IEEE Press on Power and Energy Systems series
New edition of the popular reference on machine analysis, focusing on reference frame theory with techniques for derivation of equations
Analysis of Electric Machinery and Drive Systems covers the concepts needed to understand the evolution of electrical and magnetic variables for designing the power-electronic circuits that supply or extract electrical energy from a variety of machines, comprehensively addressing the varied needs of readers in the electric machinery, electric drives, and electric power industries.
This fourth edition has been extensively revised and updated to include nine new or updated chapters on symmetrical three-phase stators, symmetrical induction machines, brushless DC machines, synchronous machines, neglecting electric transients, eigenvalues and voltage-behind-reactive machine equations, direct current machine and drive, and torque control of permanent-magnet and synchronous reluctance machines.
Introductory concepts related to the subject have also been expanded upon, detailing stationary magnetically coupled circuits, energy balance relationships, energy in coupling field, and steady-state and dynamic performance of electromechanical systems. The fourth edition also includes illustrations of the free-acceleration characteristics of induction and brushless dc machines viewed from various reference frames and many other topics.
With problems at the end of each chapter to reinforce learning, the book explores additional topics including:
• Operational impedances and time constraints of synchronous machines, covering Park's equations in operational form and parameters from short-circuit and frequency-response characteristics
• Fully controlled three-phase bridge converters, covering six-step, sine-triangle, space-vector, hysteresis, and delta modulations, along with open- and closed-loop voltage and current regulations
• Motor drives, covering volts-per-hertz, constant slip current, field-oriented, and direct torque control as well as slip energy recovery drives
• Brushless DC motor drives, covering average-value analysis, steady-state performance, and transient and dynamic performance of voltage-source inverter drives
Analysis of Electric Machinery and Drive Systems, Fourth Edition, is a perfect resource for electrical engineering students and an essential, up-to-date reference for electrical and mechanical engineers working with drives.
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Smart Cyber-Physical Power Systems, Volume 1
Fundamental Concepts, Challenges, and Solutions
by Various Authors
Part of the IEEE Press on Power and Energy Systems series
Authoritative, highly comprehensive guide on how emerging technologies can address various challenges in different sectors of smart cyber-physical power systems
As the world shifts towards smarter and more resilient energy systems, cyber-physical power systems (CPSs) represent a critical step in modernizing the power infrastructure. Smart Cyber-Physical Power Systems, Volume 1: Fundamental Concepts, Challenges, and Solutions, offers an in-depth exploration of the fundamental concepts, structures, and major challenges that underlie these complex systems. It covers the essential theories and frameworks that drive the integration of digital technologies with physical power systems, including smart grids, microgrids, and the Internet of Energy.
This volume addresses a range of crucial topics, from global demand response strategies and microgrid architectures to smart energy management in cities and advanced distributed control strategies. Additionally, it highlights key challenges such as ensuring resiliency, protecting against cyberattacks, and maintaining reliability in the face of rapid technological advancements.
Experts from around the world contribute to this volume, sharing vital insights into the transformation of traditional power systems into adaptive, cyber-physical networks. Their focus on the growing importance of privacy, security, and data analytics makes this book a critical resource for anyone involved in power system research, offering essential tools to navigate and shape the future landscapes of energy systems.
Whether you're a researcher, engineer, or industry professional, this volume provides the foundational knowledge needed to understand the evolving landscape of smart cyber-physical power systems and the significant challenges they face.
Join us on a journey through the landscape of Smart Cyber-Physical Power Systems (CPPSs), where cutting-edge solutions meet the challenges of today and forge the energy paradigms of tomorrow, driven by AI/ML, Big Data, Blockchain, IoT, Quantum Computing, Information Theory, Edge Computing, Metaverse, DevOps, and more.
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Understanding Electromagnetic Transients in Power Systems
by Luiz Cera Zanetta Jr.
Part of the IEEE Press on Power and Energy Systems series
Understand transients and their roles in linear systems with this essential guide
Electromagnetic transients are a fundamental aspect of linear power systems, and therefore a key knowledge area for electrical engineers. Understanding Electromagnetic Transients in Power Systems provides a comprehensive but accessible overview to transients, their underlying theory and mathematics, and their impact in electrical power system design. Its detailed but clear presentation makes it a must-own for students and working engineers alike.
Readers of Understanding Electromagnetic Transients in Power Systems will also find:
• Deep consideration of the relationship between foundational concepts, mathematical calculations, and impacts on equipment
• Detailed discussion of topics including time and frequency domain analysis, basic transforms, fundamentals of electrical circuit transients and traveling waves, overvoltage, insulation coordination, and many more
• Dozens of solved simple examples to facilitate understanding
Understanding Electromagnetic Transients in Power Systems is ideal for electrical engineers and professionals in utilities and equipment manufacturing, as well as for graduate and advanced undergraduate students learning about transients, electrical circuits, and related subjects.
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Communities for Clean Energy Justice and Equity in Grid Modernization
by Various Authors
Part of the IEEE Press on Power and Energy Systems series
Comprehensive blueprint to understand, develop, and implement clean energy initiatives and achieve energy justice and equity worldwide
Communities for Clean Energy Justice and Equity in Grid Modernization presents fundamental theories, technologies, and solutions for real-world problems in the operation and planning of clean, safe, resilient, and efficient energy communities that deliver energy justice and equity.
The initial chapters of the book focus on conceptual requirements, emphasizing the definition, structure, features, and challenges of promoting energy justice and equity through the coordinated operation of clean energy communities. Subsequent chapters explore potential technologies and systems to achieve these objectives, examining functionalities in modern energy grids, including self-healing systems, sustainable energy networks, and intelligent, multidimensional communities of agents.
Edited by a team of highly qualified experts, the book explores additional topics including:
• Decision-making tools for optimized operation and planning of multi-energy communities
• Holistic energy availability frameworks capable of dealing with changes and interactions in modern energy grids
• The role of artificial intelligence, machine learning, citizenship, and democracy in realizing energy justice and equity
• Hybrid transitional energy markets, energy policy strategies, and business models related to localization of energy technologies
• Energy storage and trading solutions, hybrid energy technologies, and grid-edge solutions
Communities for Clean Energy Justice and Equity in Grid Modernization is an essential reference on the subject for electrical, mechanical, civil, architectural, and environmental engineers, along with professionals working in power and energy utility companies and policy makers seeking a holistic understanding of the subject.
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