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 Provides a decision-making framework for power systems on the verge of transformation into increasingly complex, highly renewable, distributed and ‘smart’ grids 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. Energy system planning is reviewed, particularly in terms of consumer smart meter technologies. Distributed optimization methods are discussed in depth, 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. Mohsen Parsa Moghaddam is professor of Electrical Engineering (Power Systems) and Faculty Member of Tarbiat Modares University, Tehran, Iran, since 1988. He received B.Sc. in Electrical Engineering from Sharif University of Technology, Iran, 1980 and M.Sc. in Electrical Engineering from Toyohashi University of Technology, Japan, 1985. His Ph.D. in Electrical Engineering was accomplished in Tohoku University, Japan, 1988. His research interest includes power system operation, power system planning, smart grid technologies, demand response, renewable energy system, power system flexibility and renewable energy integration. He has more than 220 research publications in top-tier journals and conferences. He is also a senior member of IEEE and IEEE PES. Reza Zamani received the B.Sc. degree in electrical engineering from Sharif University of Technology in 2015, and M.Sc. degree in power system from Isfahan University of Technology in 2017. His academic proficiencies are accompanied by his numerous hands-on experiences in industrial projects in several companies. He is currently pursuing Ph.D. degree with the faculty of electrical and computer engineering at Tarbiat Modares University in Teheran, Iran. His major research interests are power systems operation and planning, transactive energy, power system dynamics, electricity market, demand response, power system flexibility, smart grids, microgrids, artificial intelligence, and power system protection. HHassan Haes Alhelou is with Monash Universiy, Australia. He is included in the 2018 Publons list of the top 1% best reviewer and researchers in the field of engineering. He was the recipient of the Outstanding Reviewer Award from Energy Conversion and Management Journal in 2016, ISA Transactions Journal in 2018, Applied Energy Journal in 2019, and many other Awards. He was the recipient of the best young researcher in the Arab Student Forum Creative among 61 researchers from 16 countries at Alexandria University, Egypt, 2011. He has published more than 200 research papers in high-quality peer-reviewed journals and international conferences. He has also performed more than 160 revie
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| Age_group | ADULT |
| Condition | NEW |
| Gender | UNISEX |
| Product_category | Gl_book |
| Google_product_category | Media > Books |
| Product_type | Books > Subjects > Engineering & Transportation > Engineering > Energy Production & Extraction > Electric |