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Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid


Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid
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Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid


Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid
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Author : Kwok-kei Ng (Electrical engineer., Simon)
language : en
Publisher:
Release Date : 2012

Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid written by Kwok-kei Ng (Electrical engineer., Simon) and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with Distributed generation of electric power categories.




Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid


Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid
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Author : Kwok-kei Ng (Electrical engineer., Simon)
language : en
Publisher:
Release Date : 2012

Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid written by Kwok-kei Ng (Electrical engineer., Simon) and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with Distributed generation of electric power categories.




Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid


Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid
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Author : Kwok-Kei Simon Ng
language : en
Publisher: Open Dissertation Press
Release Date : 2017-01-26

Optimal Planning And Management Of Stochastic Demand And Renewable Energy In Smart Power Grid written by Kwok-Kei Simon Ng and has been published by Open Dissertation Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-01-26 with categories.


This dissertation, "Optimal Planning and Management of Stochastic Demand and Renewable Energy in Smart Power Grid" by Kwok-kei, Simon, Ng, 吳國基, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: To combat global climate change, the reduction of carbon emissions in different industries, particularly the power industry, has been gradually moving towards a low-carbon profile to alleviate any irreversible damage to the planet and our future generations. Traditional fossil-fuel-based generation is slowly replaced by more renewable energy generation while it can be harnessed. However, renewables such as solar and wind are stochastic in nature and difficult to predict accurately. With the increasing content of renewables, there is also an increasing challenge to the planning and operation of the grid. With the rapid deployment of smart meters and advanced metering infrastructure (AMI), an emerging approach is to schedule controllable end-use devices to improve energy efficiency. Real-time pricing signals combined with this approach can potentially deliver more economic and environmental advantages compared with the existing common flat tariffs. Motivated by this, the thesis presents an automatic and optimal load scheduling framework to help balance intermittent renewables via the demand side. A bi-level consumer-utility optimization model is proposed to take marginal price signals and wind power into account. The impact of wind uncertainty is formulated in three different ways, namely deterministic value, scenario analysis, and cumulative distributions function, to provide a comprehensive modeling of unpredictable wind energy. To solve the problem in off-the-shelf optimization software, the proposed non-linear bi-level model is converted into an equivalent single-level mixed integer linear programming problem using the Karush-Kuhn-Tucker optimality conditions and linearization techniques. Numerical examples show that the proposed model is able to achieve the dual goals of minimizing the consumer payment as well as improving system conditions. The ultimate goal of this work is to provide a tool for utilities to consider the demand response model into their market-clearing procedure. As high penetration of distributed renewable energy resources are most likely applied to remote or stand-alone systems, planning such systems with uncertainties in both generation and demand sides is needed. As such, a three-level probabilistic sizing methodology is developed to obtain a practical sizing result for a stand-alone photovoltaic (PV) system. The first-level consists of three modules: 1) load demand, 2) renewable resources, and 3) system components, which comprise the fundamental elements of sizing the system. The second-level consists of various models, such as a Markov chain solar radiation model and a stochastic load simulator. The third-level combines reliability indices with an annualized cost of system to form a new objective function, which can simultaneously consider both system cost and reliability based on a chronological Monte Carlo simulation and particle swamp optimization approach. The simulation results are then tested and verified in a smart grid laboratory at the University of Hong Kong to demonstrate the feasibility of the proposed model. In summary, this thesis has developed a comprehensive framework of demand response on variable end-use consumptions with stochastic generation from renewables while optimizing both reliability and cost. Smart grid technologies, such as renewables, microgrid, storage, load signature, and demand



Optimal Planning Of Smart Grid With Renewable Energy Resources


Optimal Planning Of Smart Grid With Renewable Energy Resources
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Author : Jain, Naveen
language : en
Publisher: IGI Global
Release Date : 2021-12-10

Optimal Planning Of Smart Grid With Renewable Energy Resources written by Jain, Naveen and has been published by IGI Global this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-12-10 with Technology & Engineering categories.


Understanding the recent developments in renewable energy is crucial for a range of fields in today’s society. As environmental awareness and the need for a more sustainable future continues to grow, the uses of renewable energy, particularly in areas such as smart grid, must be considered and studied thoroughly to be implemented successfully and move society toward a more sustainable future. Optimal Planning of Smart Grid With Renewable Energy Resources offers a detailed guide to the new problems and opportunities for sustainable growth in engineering by focusing on modeling diverse problems occurring in science and engineering as well as novel effective theoretical methods and robust optimization theories, which can be used to analyze and solve multiple types of problems. Covering topics such as electric drives and energy systems, this publication is ideal for researchers, academicians, industry professionals, engineers, scholars, instructors, and students.



Demand Response Application In Smart Grids


Demand Response Application In Smart Grids
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Author : Sayyad Nojavan
language : en
Publisher: Springer Nature
Release Date : 2020-02-18

Demand Response Application In Smart Grids written by Sayyad Nojavan and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-02-18 with Business & Economics categories.


This book analyzes the economic and technical effects of demand response programs in smart grids. A variety of operational and financial benefits are offered by demand response programs (DRPs) for load-serving entities, grid operators, and electricity consumers. The most notable advantages of DRPs are presented in this book, including decreased electricity prices, risk management, market power mitigation, and flexibility of market operations. In-depth chapters discuss the integration of demand response programs for the planning and operation of smart grids and explore the uncertainties of market prices, renewable resources and intermittent load management, making this a useful reference for a variety of different organizations and players in the electricity market, such as reliability organizations, distribution companies, transmission companies, and electric end-users.



Smart And Sustainable Power Systems


Smart And Sustainable Power Systems
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Author : João P. S. Catalão
language : en
Publisher: CRC Press
Release Date : 2017-12-19

Smart And Sustainable Power Systems written by João P. S. Catalão and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-12-19 with Technology & Engineering categories.


The smart grid initiative, integrating advanced sensing technologies, intelligent control methods, and bi-directional communications into the contemporary electricity grid, offers excellent opportunities for energy efficiency improvements and better integration of distributed generation, coexisting with centralized generation units within an active network. A large share of the installed capacity for recent renewable energy sources already comprises insular electricity grids, since the latter are preferable due to their high potential for renewables. However, the increasing share of renewables in the power generation mix of insular power systems presents a significant challenge to efficient management of the insular distribution networks, mainly due to the variability and uncertainty of renewable generation. More than other electricity grids, insular electricity grids require the incorporation of sustainable resources and the maximization of the integration of local resources, as well as specific solutions to cope with the inherent characteristics of renewable generation. Insular power systems need a new generation of methodologies and tools to face the new paradigm of large-scale renewable integration. Smart and Sustainable Power Systems: Operations, Planning, and Economics of Insular Electricity Grids discusses the modeling, simulation, and optimization of insular power systems to address the effects of large-scale integration of renewables and demand-side management. This practical book: Describes insular power systems, renewable energies, uncertainty, variability, reserves, and demand response Examines state-of-the-art forecasting techniques, power flow calculations, and scheduling models Covers probabilistic and stochastic approaches, scenario generation, and short-term operation Includes comprehensive testing and validation of the mathematical models using real-world data Explores electric price signals, competitive operation of distribution networks, and network expansion planning Smart and Sustainable Power Systems: Operations, Planning, and Economics of Insular Electricity Grids provides a valuable resource for the design of efficient methodologies, tools, and solutions for the development of a truly sustainable and smart grid.



Smart Power Systems And Renewable Energy System Integration


Smart Power Systems And Renewable Energy System Integration
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Author : Dilan Jayaweera
language : en
Publisher: Springer
Release Date : 2016-03-08

Smart Power Systems And Renewable Energy System Integration written by Dilan Jayaweera and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-03-08 with Technology & Engineering categories.


This monograph presents a wider spectrum of researches, developments, and case specific studies in the area of smart power systems and integration of renewable energy systems. The book will be for the benefit of a wider audience including researchers, postgraduate students, practicing engineers, academics, and regulatory policy makers. It covers a wide range of topics from fundamentals, and modelling and simulation aspects of traditional and smart power systems to grid integration of renewables; Micro Grids; challenges in planning and operation of a smart power system; risks, security, and stability in smart operation of a power system; and applied research in energy storage.



Operation Planning And Analysis Of Energy Storage Systems In Smart Energy Hubs


Operation Planning And Analysis Of Energy Storage Systems In Smart Energy Hubs
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Author : Behnam Mohammadi-Ivatloo
language : en
Publisher: Springer
Release Date : 2018-04-04

Operation Planning And Analysis Of Energy Storage Systems In Smart Energy Hubs written by Behnam Mohammadi-Ivatloo and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-04-04 with Technology & Engineering categories.


This book discusses the design and scheduling of residential, industrial, and commercial energy hubs, and their integration into energy storage technologies and renewable energy sources. Each chapter provides theoretical background and application examples for specific power systems including, solar, wind, geothermal, air and hydro. Case-studies are included to provide engineers, researchers, and students with the most modern technical and intelligent approaches to solving power and energy integration problems with special attention given to the environmental and economic aspects of energy storage systems.



Stochastic Optimization For Distributed Energy Resources In Smart Grids


Stochastic Optimization For Distributed Energy Resources In Smart Grids
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Author : Yuanxiong Guo
language : en
Publisher: Springer
Release Date : 2017-06-21

Stochastic Optimization For Distributed Energy Resources In Smart Grids written by Yuanxiong Guo and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-06-21 with Computers categories.


This brief focuses on stochastic energy optimization for distributed energy resources in smart grids. Along with a review of drivers and recent developments towards distributed energy resources, this brief presents research challenges of integrating millions of distributed energy resources into the grid. The brief then proposes a novel three-level hierarchical architecture for effectively integrating distributed energy resources into smart grids. Under the proposed hierarchical architecture, distributed energy resource management algorithms at the three levels (i.e., smart home, smart neighborhood, and smart microgrid) are developed in this brief based on stochastic optimization that can handle the involved uncertainties in the system.



Smart Grid


Smart Grid
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Author : James A. Momoh
language : en
Publisher: John Wiley & Sons
Release Date : 2012-03-20

Smart Grid written by James A. Momoh and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-03-20 with Technology & Engineering categories.


The book is written as primer hand book for addressing the fundamentals of smart grid. It provides the working definition the functions, the design criteria and the tools and techniques and technology needed for building smart grid. The book is needed to provide a working guideline in the design, analysis and development of Smart Grid. It incorporates all the essential factors of Smart Grid appropriate for enabling the performance and capability of the power system. There are no comparable books which provide information on the “how to” of the design and analysis. The book provides a fundamental discussion on the motivation for the smart grid development, the working definition and the tools for analysis and development of the Smart Grid. Standards and requirements needed for designing new devices, systems and products are discussed; the automation and computational techniques need to ensure that the Smart Grid guarantees adaptability, foresight alongside capability of handling new systems and components are discussed. The interoperability of different renewable energy sources are included to ensure that there will be minimum changes in the existing legacy system. Overall the book evaluates different options of computational intelligence, communication technology and decision support system to design various aspects of Smart Grid. Strategies for demonstration of Smart Grid schemes on selected problems are presented.