Distributed Learning Optimization And Control Methods For Future Power Grids

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Distributed learning, optimization, and control methods for future power grids

Author : Zhi-Wei Liu,Xiao-Kang Liu,Jun Yan,Chao Deng
Publisher : Frontiers Media SA
Page : 104 pages
File Size : 55,9 Mb
Release : 2024-01-02
Category : Technology & Engineering
ISBN : 9782832541524

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Distributed learning, optimization, and control methods for future power grids by Zhi-Wei Liu,Xiao-Kang Liu,Jun Yan,Chao Deng Pdf

Distributed Control and Optimization Technologies in Smart Grid Systems

Author : Fanghong Guo,Changyun Wen,Yong-Duan Song
Publisher : CRC Press
Page : 192 pages
File Size : 48,5 Mb
Release : 2017-11-09
Category : Science
ISBN : 9781351613972

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Distributed Control and Optimization Technologies in Smart Grid Systems by Fanghong Guo,Changyun Wen,Yong-Duan Song Pdf

The book aims to equalize the theoretical involvement with industrial practicality and build a bridge between academia and industry by reducing the mathematical difficulties. It provides an overview of distributed control and distributed optimization theory, followed by specific details on industrial applications to smart grid systems, with a special focus on micro grid systems. Each of the chapters is written and organized with an introductory section tailored to provide the essential background of the theories required. The text includes industrial applications to realistic renewable energy systems problems and illustrates the application of proposed toolsets to control and optimization of smart grid systems.

Decentralized Frameworks for Future Power Systems

Author : Mohsen Parsa Moghaddam,Reza Zamani,Hassan Haes Alhelou,Pierluigi Siano
Publisher : Academic Press
Page : 502 pages
File Size : 54,8 Mb
Release : 2022-05-12
Category : Technology & Engineering
ISBN : 9780323985628

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Decentralized Frameworks for Future Power Systems by Mohsen Parsa Moghaddam,Reza Zamani,Hassan Haes Alhelou,Pierluigi Siano Pdf

Decentralized Frameworks for Future Power Systems: Operation, Planning and Control Perspectives is the first book to consider the principles and applications of decentralized decision-making in future power networks. The work opens by defining the emerging power system network as a system-of-systems (SoS), exploring the guiding principles behind optimal solutions for operation and planning problems. Chapters emphasize the role of regulations, prosumption behaviors, and the implementation of transactive energy processes as key components in decentralizing power systems. Contributors explore local markets, distribution system operation and proactive load management. The role of cryptocurrencies in smoothing transactive distributional challenges are presented. Final sections cover energy system planning, particularly in terms of consumer smart meter technologies and distributed optimization methods, including artificial intelligence, meta-heuristic, heuristic, mathematical and hybrid approaches. The work closes by considering decentralization across the cybersecurity, distributed control, market design and power quality optimization vertices. Develops a novel framework for transactive energy management to enhance flexibility in future power systems Explores interactions between multiple entities in local power markets based on a distributed optimization approach Focuses on practical optimization, planning and control of smart grid systems towards decentralized decision-making

Control and Optimization Methods for Electric Smart Grids

Author : Aranya Chakrabortty,Marija D. Ilić
Publisher : Springer Science & Business Media
Page : 377 pages
File Size : 47,5 Mb
Release : 2011-12-17
Category : Technology & Engineering
ISBN : 9781461416050

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Control and Optimization Methods for Electric Smart Grids by Aranya Chakrabortty,Marija D. Ilić Pdf

Control and Optimization Methods for Electric Smart Grids brings together leading experts in power, control and communication systems, and consolidates some of the most promising recent research in smart grid modeling, control and optimization in hopes of laying the foundation for future advances in this critical field of study. The contents comprise eighteen essays addressing wide varieties of control-theoretic problems for tomorrow’s power grid. Topics covered include control architectures for power system networks with large-scale penetration of renewable energy and plug-in vehicles, optimal demand response, new modeling methods for electricity markets, cyber-security,data analysis and wide-area control using synchronized phasor measurements.

Big Data Analytics in Future Power Systems

Author : Ahmed F. Zobaa,Trevor J. Bihl
Publisher : CRC Press
Page : 243 pages
File Size : 43,6 Mb
Release : 2018-08-14
Category : Science
ISBN : 9781351601283

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Big Data Analytics in Future Power Systems by Ahmed F. Zobaa,Trevor J. Bihl Pdf

Power systems are increasingly collecting large amounts of data due to the expansion of the Internet of Things into power grids. In a smart grids scenario, a huge number of intelligent devices will be connected with almost no human intervention characterizing a machine-to-machine scenario, which is one of the pillars of the Internet of Things. The book characterizes and evaluates how the emerging growth of data in communications networks applied to smart grids will impact the grid efficiency and reliability. Additionally, this book discusses the various security concerns that become manifest with Big Data and expanded communications in power grids. Provide a general description and definition of big data, which has been gaining significant attention in the research community. Introduces a comprehensive overview of big data optimization methods in power system. Reviews the communication devices used in critical infrastructure, especially power systems; security methods available to vet the identity of devices; and general security threats in CI networks. Presents applications in power systems, such as power flow and protection. Reviews electricity theft concerns and the wide variety of data-driven techniques and applications developed for electricity theft detection.

Distributed Energy Management of Electrical Power Systems

Author : Yinliang Xu,Wei Zhang,Wenxin Liu,Wen Yu
Publisher : John Wiley & Sons
Page : 352 pages
File Size : 49,9 Mb
Release : 2020-12-15
Category : Science
ISBN : 9781119534877

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Distributed Energy Management of Electrical Power Systems by Yinliang Xu,Wei Zhang,Wenxin Liu,Wen Yu Pdf

Go in-depth with this comprehensive discussion of distributed energy management Distributed Energy Management of Electrical Power Systems provides the most complete analysis of fully distributed control approaches and their applications for electric power systems available today. Authored by four respected leaders in the field, the book covers the technical aspects of control, operation management, and optimization of electric power systems. In each chapter, the book covers the foundations and fundamentals of the topic under discussion. It then moves on to more advanced applications. Topics reviewed in the book include: System-level coordinated control Optimization of active and reactive power in power grids The coordinated control of distributed generation, elastic load and energy storage systems Distributed Energy Management incorporates discussions of emerging and future technologies and their potential effects on electrical power systems. The increased impact of renewable energy sources is also covered. Perfect for industry practitioners and graduate students in the field of power systems, Distributed Energy Management remains the leading reference for anyone with an interest in its fascinating subject matter.

Smart Power Distribution Systems

Author : Qiang Yang,Ting Yang,Wie Li
Publisher : Academic Press
Page : 630 pages
File Size : 53,5 Mb
Release : 2018-10-17
Category : Technology & Engineering
ISBN : 9780128123256

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Smart Power Distribution Systems by Qiang Yang,Ting Yang,Wie Li Pdf

Smart Power Distribution Systems: Control, Communication, and Optimization explains how diverse technologies work to build and maintain smart grids around the globe. Yang, Yang and Li present the most recent advances in the control, communication and optimization of smart grids and provide unique insight into power system control, sensing and communication, and optimization technologies. The book covers control challenges for renewable energy and smart grids, communication in smart power systems, and optimization challenges in smart power system operations. Each area discussed focuses on the scientific innovations relating to the approaches, methods and algorithmic solutions presented. Readers will develop sound knowledge and gain insights into the integration of renewable energy generation in smart power distribution systems. Presents the latest technological advances in electric power distribution networks, with a particular focus on methodologies, approaches and algorithms Provides insights into the most recent research and developments from expert contributors from across the world Presents a clear and methodical structure that guides the reader through discussion and analysis, providing unique insights and sound knowledge along the way

Distributed Economic Operation in Smart Grid: Model-Based and Model-Free Perspectives

Author : Jiahu Qin,Yanni Wan,Fangyuan Li,Yu Kang,Weiming Fu
Publisher : Springer Nature
Page : 246 pages
File Size : 52,7 Mb
Release : 2023-01-25
Category : Technology & Engineering
ISBN : 9789811985942

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Distributed Economic Operation in Smart Grid: Model-Based and Model-Free Perspectives by Jiahu Qin,Yanni Wan,Fangyuan Li,Yu Kang,Weiming Fu Pdf

This book aims to work out the distributed economic operation in smart grids in a systematic way, which ranges from model-based to model-free perspectives. The main contributions of this book can be summarized into three folds. First, we investigate the fundamental economic operation problems in smart grids from model-based perspective. Specifically, these problems can be modeled as deterministic optimization models, and we propose some distributed optimization algorithms by integrating the multi-agent consensus theory and optimization techniques to achieve the distributed coordination of various generation units and loads. Second, due to the randomness of the large-scale renewable energies and the flexibility of the loads, we further address these economic operation problems from a model-free perspective, and we propose learning-based approaches to address the uncertainty and randomness. At last, we extend the idea of model-based and model-free algorithms to plug-in electric vehicles (PEVs) charging/discharging scheduling problem, the key challenge of which involves multiple objectives simultaneously while the behavior of PEVs and the electricity price are intrinsically random. This book presents several recent theoretical findings on distributed economic operation in smart grids from model-based and model-free perspectives. By systematically integrating novel ideas, fresh insights, and rigorous results, this book provides a base for further theoretical research on distributed economic operation in smart grids. It can be a reference for graduates and researchers to study the operation and management in smart grids. Some prerequisites for reading this book include optimization theory, matrix theory, game theory, reinforcement learning, etc.

Control and Optimization of Distributed Generation Systems

Author : Magdi S. Mahmoud,Fouad M. AL-Sunni
Publisher : Springer
Page : 0 pages
File Size : 54,8 Mb
Release : 2016-10-13
Category : Technology & Engineering
ISBN : 3319366793

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Control and Optimization of Distributed Generation Systems by Magdi S. Mahmoud,Fouad M. AL-Sunni Pdf

This text is an introduction to the use of control in distributed power generation. It shows the reader how reliable control can be achieved so as to realize the potential of small networks of diverse energy sources, either singly or in coordination, for meeting concerns of energy cost, energy security and environmental protection. The book demonstrates how such microgrids, interconnecting groups of generating units and loads within a local area, can be an effective means of balancing electrical supply and demand. It takes advantage of the ability to connect and disconnect microgrids from the main body of the power grid to give flexibility in response to special events, planned or unplanned. In order to capture the main opportunities for expanding the power grid and to present the plethora of associated open problems in control theory Control and Optimization of Distributed Generation Systems is organized to treat three key themes, namely: system architecture and integration; modelling and analysis; and communications and control. Each chapter makes use of examples and simulations and appropriate problems to help the reader study. Tools helpful to the reader in accessing the mathematical analysis presented within the main body of the book are given in an appendix. Control and Optimization of Distributed Generation Systems will enable readers new to the field of distributed power generation and networked control, whether experienced academic migrating from another field or graduate student beginning a research career, to familiarize themselves with the important points of the control and regulation of microgrids. It will also be useful for practising power engineers wishing to keep abreast of changes in power grids necessitated by the diversification of generating methods.

Optimizing and Measuring Smart Grid Operation and Control

Author : Recioui, Abdelmadjid,Bentarzi, Hamid
Publisher : IGI Global
Page : 400 pages
File Size : 42,9 Mb
Release : 2020-11-13
Category : Technology & Engineering
ISBN : 9781799840282

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Optimizing and Measuring Smart Grid Operation and Control by Recioui, Abdelmadjid,Bentarzi, Hamid Pdf

Smart grid (SG), also called intelligent grid, is a modern improvement of the traditional power grid that will revolutionize the way electricity is produced, delivered, and consumed. Studying key concepts such as advanced metering infrastructure, distribution management systems, and energy management systems will support the design of a cost-effective, reliable, and efficient supply system, and will create a real-time bidirectional communication means and information exchange between the consumer and the grid operator of electric power. Optimizing and Measuring Smart Grid Operation and Control is a critical reference source that presents recent research on the operation, control, and optimization of smart grids. Covering topics that include phase measurement units, smart metering, and synchrophasor technologies, this book examines all aspects of modern smart grid measurement and control. It is designed for engineers, researchers, academicians, and students.

Intelligent Learning Approaches for Renewable and Sustainable Energy

Author : Josep M. Guerrero,Pankaj Gupta,Ritu Kandari,Alexander Micallef
Publisher : Elsevier
Page : 315 pages
File Size : 55,5 Mb
Release : 2024-02-21
Category : Computers
ISBN : 9780443158070

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Intelligent Learning Approaches for Renewable and Sustainable Energy by Josep M. Guerrero,Pankaj Gupta,Ritu Kandari,Alexander Micallef Pdf

Intelligent Learning Approaches for Renewable and Sustainable Energy provides a practical, systematic overview of the application of advanced intelligent control techniques, adaptive techniques, machine learning algorithms, and predictive control in renewable and sustainable energy.The book begins by introducing the intelligent learning approaches, and the roles of artificial intelligence and machine learning in terms of energy and sustainability, grid transformation, large-scale integration of renewable energy, and variability and flexibility of renewable sources. The second section of the book provides detailed coverage of intelligent learning techniques as applied to key areas of renewable and sustainable energy, including forecasting, supply and demand, integration, energy management, and optimization, supported by case studies, figures, schematics, and references.This is a useful resource for researchers, scientists, advanced students, energy engineers, R&D professionals, and other industrial personnel with an interest in sustainable energy and integration of renewable energy sources, energy systems, energy engineering, machine learning, and artificial intelligence. Explores cutting-edge intelligent techniques and their implications for future energy systems development Opens the door to a range of applications across forecasting, supply and demand, energy management, optimization, and more Includes a range of case studies that provide insights into the challenges and solutions in real-world applications

Distributed Optimization for the DER-Rich Electric Power Grid

Author : Jannatul Adan,Anurag K. Srivastava
Publisher : Unknown
Page : 0 pages
File Size : 45,6 Mb
Release : 2023-11
Category : Science
ISBN : 1638282927

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Distributed Optimization for the DER-Rich Electric Power Grid by Jannatul Adan,Anurag K. Srivastava Pdf

This book provides a detailed overview of possible applications of distributed optimization in power systems. Centralized algorithms are widely used for optimization and control in power system applications. These algorithms require all the measurements and data to be accumulated at a central location and hence suffer from single-point-of-failure. Additionally, these algorithms lack scalability in the number of sensors and actuators, especially with the increasing integration of distributed energy resources (DERs). As the power system becomes a confluence of a diverse set of decision-making entities with a multitude of objectives, the preservation of privacy and operation of the system with limited information has been a growing concern. Distributed optimization techniques solve these challenges while also ensuring resilient computational solutions for the power system operation in the presence of both natural and man-made adversaries. There are numerous commonly-used distributed optimization approaches, and a comprehensive classification of these is discussed and detailed in this work. All of these algorithms have displayed efficient identification of global optimum solutions for convex continuous distributed optimization problems. The algorithms discussed in the literature thus far are predominantly used to manage continuous state variables, however, the inclusion of integer variables in the decision support is needed for specific power system problems.The mixed integer programming (MIP) problem arises in a power system operation and control due to tap changing transformers, capacitors and switches. There are numerous global optimization techniques for MIPs. Whilst most are able to solve NP-hard convexified MIP problems centrally, they are time consuming and do not scale well for large scale distributed problems. Decomposition and a solution approach of distributed coordination can help to resolve the scalability issue. Despite the fact that a large body of work on the centralized solution methods for convexified MIP problems already exists, the literature on distributed MIPs is relatively limited. The distributed optimization algorithms applied in power networks to solve MIPs are included in this book. Machine Learning (ML) based solutions can help to get faster convergence for distributed optimization or can replace optimization techniques depending on the problem. Finally, a summary and path forward are provided, and the advancement needed in distributed optimization for the power grid is also presented.

Distributed Optimization for the DER-Rich Electric Power Grid

Author : JANNATUL ADAN; ANURAG K. SRIVASTAVA.,Jannatul Adan
Publisher : Unknown
Page : 0 pages
File Size : 47,7 Mb
Release : 2023
Category : TECHNOLOGY & ENGINEERING
ISBN : 1638282935

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Distributed Optimization for the DER-Rich Electric Power Grid by JANNATUL ADAN; ANURAG K. SRIVASTAVA.,Jannatul Adan Pdf

This book provides a detailed overview of possible applications of distributed optimization in power systems. Centralized algorithms are widely used for optimization and control in power system applications. These algorithms require all the measurements and data to be accumulated at a central location and hence suffer from single-point-of-failure. Additionally, these algorithms lack scalability in the number of sensors and actuators, especially with the increasing integration of distributed energy resources (DERs). As the power system becomes a confluence of a diverse set of decision-making entities with a multitude of objectives, the preservation of privacy and operation of the system with limited information has been a growing concern. Distributed optimization techniques solve these challenges while also ensuring resilient computational solutions for the power system operation in the presence of both natural and man-made adversaries. There are numerous commonly-used distributed optimization approaches, and a comprehensive classification of these is discussed and detailed in this work. All of these algorithms have displayed efficient identification of global optimum solutions for convex continuous distributed optimization problems. The algorithms discussed in the literature thus far are predominantly used to manage continuous state variables, however, the inclusion of integer variables in the decision support is needed for specific power system problems.The mixed integer programming (MIP) problem arises in a power system operation and control due to tap changing transformers, capacitors and switches. There are numerous global optimization techniques for MIPs. Whilst most are able to solve NP-hard convexified MIP problems centrally, they are time consuming and do not scale well for large scale distributed problems. Decomposition and a solution approach of distributed coordination can help to resolve the scalability issue. Despite the fact that a large body of work on the centralized solution methods for convexified MIP problems already exists, the literature on distributed MIPs is relatively limited. The distributed optimization algorithms applied in power networks to solve MIPs are included in this book. Machine Learning (ML) based solutions can help to get faster convergence for distributed optimization or can replace optimization techniques depending on the problem. Finally, a summary and path forward are provided, and the advancement needed in distributed optimization for the power grid is also presented.

Design, Control, and Operation of Microgrids in Smart Grids

Author : Mehdi Rahmani-Andebili
Publisher : Springer Nature
Page : 182 pages
File Size : 43,5 Mb
Release : 2021-06-08
Category : Technology & Engineering
ISBN : 9783030646318

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Design, Control, and Operation of Microgrids in Smart Grids by Mehdi Rahmani-Andebili Pdf

This book offers a wide-ranging overview of advancements, techniques, and challenges related to the design, control, and operation of microgrids and their role in smart grid infrastructure. It brings together an authoritative group of specialists who approach the subject from a number of different viewpoints in the electric power industry, including electricity distribution companies, aggregators, power market retailers, and power generation companies. Design, Control, and Operation of Microgrids in Smart Grids is an authoritative resource for students, researchers, and professionals working with power and energy systems.

Distributed Energy Resources in Local Integrated Energy Systems

Author : Giorgio Graditi,Marialaura Di Somma
Publisher : Elsevier
Page : 452 pages
File Size : 52,5 Mb
Release : 2021-02-27
Category : Technology & Engineering
ISBN : 9780128242148

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Distributed Energy Resources in Local Integrated Energy Systems by Giorgio Graditi,Marialaura Di Somma Pdf

Distributed Energy Resources in Local Integrated Energy Systems: Optimal Operation and Planning reviews research and policy developments surrounding the optimal operation and planning of DER in the context of local integrated energy systems in the presence of multiple energy carriers, vectors and multi-objective requirements. This assessment is carried out by analyzing impacts and benefits at local levels, and in distribution networks and larger systems. These frameworks represent valid tools to provide support in the decision-making process for DER operation and planning. Uncertainties of RES generation and loads in optimal DER scheduling are addressed, along with energy trading and blockchain technologies. Interactions among various energy carriers in local energy systems are investigated in scalable and flexible optimization models for adaptation to a number of real contexts thanks to the wide variety of generation, conversion and storage technologies considered, the exploitation of demand side flexibility, emerging technologies, and through the general mathematical formulations established. Integrates multi-energy DER, including electrical and thermal distributed generation, demand response, electric vehicles, storage and RES in the context of local integrated energy systems Fosters the integration of DER in the electricity markets through the concepts of DER aggregation Addresses the challenges of emerging paradigms as energy communities and energy blockchain applications in the current and future energy landscape Proposes operation optimization models and methods through multi-objective approaches for fostering short- and long-run sustainability of local energy systems Assesses and models the uncertainties of renewable resources and intermittent loads in the short-term decision-making process for smart decentralized energy systems