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

Distributed Economic Operation in Smart Grid: Model-Based and Model-Free Perspectives
Author: Jiahu Qin
Publisher: Springer Nature
Total Pages: 246
Release: 2023-01-25
Genre: Technology & Engineering
ISBN: 9811985944

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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.


Smart Grids from a Global Perspective

Smart Grids from a Global Perspective
Author: Anne Beaulieu
Publisher: Springer
Total Pages: 283
Release: 2016-02-15
Genre: Technology & Engineering
ISBN: 3319280775

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This book presents a cross-disciplinary approach to smart grids, offering an invaluable basis for understanding their complexity and potential, and for discussing their technical, legal, economic, societal, psychological and security aspects. Smart grids are a complex phenomenon involving new, active roles for consumers and prosumers, novel social, political and cultural practices, advanced ICT, new markets, security of supply issues, the informational turn in energy, valuation of assets and investments, technological innovation and (de)regulation. Furthermore, smart grids offer new interfaces, in turn creating hybrid fields: with the increasing use of electric vehicles and electric transportation, smart grids represent the crossroads of energy and mobility. While the aim is to achieve more sustainable production, transportation and use of energy, the importance of smart grids actually has less to do with electricity, heat or gas, and far more with transforming the infrastructure needed to deliver energy, as well as the roles of its owners, operators and users. The immediate goal is to contribute positively to a sustainable world society. The chapters are revised and expanded texts based upon lectures delivered at the Groningen Energy Summer School 2014. Questions for further discussion at the end of each chapter highlight the key themes that emerge. The book offers an indispensable resource for researchers, professionals and companies in the power supply industry, and for students seeking to broaden and deepen their understanding of smart grids.


Distributed Stochastic Economic Dispatch for Smart Grids

Distributed Stochastic Economic Dispatch for Smart Grids
Author: Miguel Andrés Velásquez Motta
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN:

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Power systems have experienced several changes since smart grids and renewable resources increased their penetration. Traditionally, power systems operation has been addressed with unit commitment and economic dispatch problems that rely on a centralized operator. These operation methods are usually performed on a day-ahead basis, i.e., every 24 hours. As a result of volatility in renewable resources and demand, it is better to shorten the operation period, e.g., every hour. Centralized methods might not be feasible for solving short-term economic dispatch, especially in systems with several agents. Thereby, the research questions this thesis are what method can be used for solving short-term economic dispatch in the presence of smart grid elements? Second, what models can be designed in order to optimally dispatch power plants and operate different agents in a smart grid environment? Third, how uncertainty can be considered in such models without increasing dimensionality and keeping tractability? Fourth, what is the best way to operate power systems with smart grid elements? In order to solve all these questions, we deeply analyzed economic dispatch methods and smart grid elements. Next, we proposed two distributed economic dispatch methods that are feasible for hourly and ultra-short term periods. In addition, we integrated stochastic programming through a data-driven scenario generation in order to include randomness of power system variables. Finally, a hierarchical operation of hourly and ultra-short term was proposed to enhance operation performance. The results obtained in this thesis show that proposed methods answer our research questions and serve as a basis for operating power systems more efficiently. Under uncertainty framework, it is better to use stochastic approaches rather than deterministic ones. For using stochastic approaches, it is necessary to pass from centralized controllers to distributed architectures as it has been proposed in this work.


Distributed Optimization and Learning

Distributed Optimization and Learning
Author: Zhongguo Li
Publisher: Elsevier
Total Pages: 288
Release: 2024-08-06
Genre: Technology & Engineering
ISBN: 0443216371

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Distributed Optimization and Learning: A Control-Theoretic Perspective illustrates the underlying principles of distributed optimization and learning. The book presents a systematic and self-contained description of distributed optimization and learning algorithms from a control-theoretic perspective. It focuses on exploring control-theoretic approaches and how those approaches can be utilized to solve distributed optimization and learning problems over network-connected, multi-agent systems. As there are strong links between optimization and learning, this book provides a unified platform for understanding distributed optimization and learning algorithms for different purposes. Provides a series of the latest results, including but not limited to, distributed cooperative and competitive optimization, machine learning, and optimal resource allocation Presents the most recent advances in theory and applications of distributed optimization and machine learning, including insightful connections to traditional control techniques Offers numerical and simulation results in each chapter in order to reflect engineering practice and demonstrate the main focus of developed analysis and synthesis approaches


Distributed Optimization, Game and Learning Algorithms

Distributed Optimization, Game and Learning Algorithms
Author: Huiwei Wang
Publisher: Springer Nature
Total Pages: 227
Release: 2021-01-04
Genre: Technology & Engineering
ISBN: 9813345284

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This book provides the fundamental theory of distributed optimization, game and learning. It includes those working directly in optimization,-and also many other issues like time-varying topology, communication delay, equality or inequality constraints,-and random projections. This book is meant for the researcher and engineer who uses distributed optimization, game and learning theory in fields like dynamic economic dispatch, demand response management and PHEV routing of smart grids.


Modeling of Active Consumers and Their Impact on the Smart Grid

Modeling of Active Consumers and Their Impact on the Smart Grid
Author: Kumarsinh Jhala
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN:

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Active consumers who engage in energy consumption, production, storage and provide ancillary services in a dynamic and interactive manner will be an integral part of the future grid. Firstly, this dissertation models and analyzes the interaction between active consumers and aggregators with a specific focus on consumer actions in response to real-time electricity pricing and the resulting impact on grid voltage. A unique prospect theory based consumer behavior model is introduced. This model captures wide range of consumers each with their individual preferences by modeling the interaction between the active consumers and the aggregator as a Stackelberg game. However, unlike existing game theoretic efforts that assume rational behavior of consumers, the prospect theory based models systematically incorporate realistic consumer behavior including irrationality. Secondly, this dissertation develops probabilistic voltage sensitivity analysis. In contrast to prior approaches that limit themselves to economic aspects, the proposed techno-economic perspective provides an understanding of the impact of large scale penetration of active consumers on the physical grid. Most current studies are scenario-based, and derived results are scenario specific. Determining the impact of spatially distributed active consumers with temporally variable behavior requires investigation of a large number of scenarios, which is computationally intractable using current iterative power flow algorithms. This work provides a new analytical method of voltage sensitivity analysis that allows for stochastic analysis of change in grid voltage due to change in consumer behavior (load and generation choices). This work first derives an upper bound for change in voltage at a particular bus due to change in power consumption at other buses in a radial distribution network. Next, this bound is used to derive the probability distribution of change voltage at a bus due to randomly changing power consumption/injection of random spatial distribution of the active consumers. This upper bound is also used to develop an algorithmic approach to identify the dominant influencer of voltage fluctuations in the power distribution system. Thirdly, security and stability aspects of transactive energy market based power distribution system is investigated. Specifically, the impact of attacks on pricing/load signals on the physical grid is quantified. This work models the interaction between real-time electricity price and total energy demand in the form of a discrete time non-linear autonomous dynamical system. Equilibrium electricity price and energy demand associated with this coupled dynamical system is derived and conditions for bounded input bounded output (BIBO) stability are identified. Then, a BIBO stable algorithm to design real-time electricity pricing scheme from a techno-economic perspective is developed. Finally, the impact of various level of false data injection (FDI) attack on price of electricity, demand and distribution system voltage is investigated. This dissertation shows that impact of FDI attack on electricity prices is more severe than an attack on electricity demand.


Advanced Technologies for Planning and Operation of Prosumer Energy Systems, volume III

Advanced Technologies for Planning and Operation of Prosumer Energy Systems, volume III
Author: Bin Zhou
Publisher: Frontiers Media SA
Total Pages: 385
Release: 2024-07-30
Genre: Technology & Engineering
ISBN: 2832552463

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Prosumers, such as energy storage, smart home, and microgrids, are the consumers who also produce and share surplus energy with other users. With capabilities of flexibly managing the generation, storage and consumption of energy in a simultaneous manner, prosumers can help improve the operation efficiency of smart grid. Due to the rapid expansion of prosumer clusters, the planning and operation issues of prosumer energy systems have been increasingly raised. Aspects including energy infrastructure design, energy management, system stability, etc., are urgently required to be addressed while taking full advantage of prosumers' capabilities. However, up to date, the research on prosumers has not drawn sufficient attention. This proposal presents the need to introduce a Research Topic on prosumer energy systems in Frontiers in Energy Research. We believe this Research Topic can promote the research on advanced planning and operation technologies of prosumer energy systems and contribute to the carbon neutrality for a sustainable society.


Research Anthology on Smart Grid and Microgrid Development

Research Anthology on Smart Grid and Microgrid Development
Author: Information Resources Management Association
Publisher: Engineering Science Reference
Total Pages:
Release: 2021-09-24
Genre: Microgrids (Smart power grids)
ISBN: 9781668436660

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"This reference book covers the latest innovations and trends within smart grid and microgrid development, detailing benefits, challenges, and opportunities, that will help readers to fully understand the current opportunities that smart grids and microgrids present around the world"--


Data-Intensive Computing in Smart Microgrids

Data-Intensive Computing in Smart Microgrids
Author: Herodotos Herodotou
Publisher: MDPI
Total Pages: 238
Release: 2021-09-06
Genre: Technology & Engineering
ISBN: 3036516271

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Microgrids have recently emerged as the building block of a smart grid, combining distributed renewable energy sources, energy storage devices, and load management in order to improve power system reliability, enhance sustainable development, and reduce carbon emissions. At the same time, rapid advancements in sensor and metering technologies, wireless and network communication, as well as cloud and fog computing are leading to the collection and accumulation of large amounts of data (e.g., device status data, energy generation data, consumption data). The application of big data analysis techniques (e.g., forecasting, classification, clustering) on such data can optimize the power generation and operation in real time by accurately predicting electricity demands, discovering electricity consumption patterns, and developing dynamic pricing mechanisms. An efficient and intelligent analysis of the data will enable smart microgrids to detect and recover from failures quickly, respond to electricity demand swiftly, supply more reliable and economical energy, and enable customers to have more control over their energy use. Overall, data-intensive analytics can provide effective and efficient decision support for all of the producers, operators, customers, and regulators in smart microgrids, in order to achieve holistic smart energy management, including energy generation, transmission, distribution, and demand-side management. This book contains an assortment of relevant novel research contributions that provide real-world applications of data-intensive analytics in smart grids and contribute to the dissemination of new ideas in this area.