Energy Management of Distributed Generation Systems

Energy Management of Distributed Generation Systems
Title Energy Management of Distributed Generation Systems PDF eBook
Author Lucian Mihet-Popa
Publisher BoD – Books on Demand
Total Pages 264
Release 2016-07-13
Genre Technology & Engineering
ISBN 9535124730

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The book contains 10 chapters, and it is divided into four sections. The first section includes three chapters, providing an overview of Energy Management of Distributed Systems. It outlines typical concepts, such as Demand-Side Management, Demand Response, Distributed, and Hierarchical Control for Smart Micro-Grids. The second section contains three chapters and presents different control algorithms, software architectures, and simulation tools dedicated to Energy Management Systems. In the third section, the importance and the role of energy storage technology in a Distribution System, describing and comparing different types of energy storage systems, is shown. The fourth section shows how to identify and address potential threats for a Home Energy Management System. Finally, the fifth section discusses about Economical Optimization of Operational Cost for Micro-Grids, pointing out the effect of renewable energy sources, active loads, and energy storage systems on economic operation.

Distributed Energy Management of Electrical Power Systems

Distributed Energy Management of Electrical Power Systems
Title Distributed Energy Management of Electrical Power Systems PDF eBook
Author Yinliang Xu
Publisher John Wiley & Sons
Total Pages 352
Release 2021-01-13
Genre Science
ISBN 1119534887

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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.

Distributed Generation Systems

Distributed Generation Systems
Title Distributed Generation Systems PDF eBook
Author Gevork B. Gharehpetian
Publisher Butterworth-Heinemann
Total Pages 590
Release 2017-05-19
Genre Technology & Engineering
ISBN 012804263X

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Approx.580 pages Approx.580 pages

Control and Optimization of Distributed Generation Systems

Control and Optimization of Distributed Generation Systems
Title Control and Optimization of Distributed Generation Systems PDF eBook
Author Magdi S. Mahmoud
Publisher Springer
Total Pages 599
Release 2015-05-14
Genre Technology & Engineering
ISBN 3319169106

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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.

Development, Demonstration, and Field Testing of Enterprise-wide Distributed Generation Energy Management System

Development, Demonstration, and Field Testing of Enterprise-wide Distributed Generation Energy Management System
Title Development, Demonstration, and Field Testing of Enterprise-wide Distributed Generation Energy Management System PDF eBook
Author RealEnergy (Firm)
Publisher
Total Pages 124
Release 2003
Genre Building-integrated photovoltaic systems
ISBN

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Integration of Distributed Generation in the Power System

Integration of Distributed Generation in the Power System
Title Integration of Distributed Generation in the Power System PDF eBook
Author Math H. J. Bollen
Publisher John Wiley & Sons
Total Pages 526
Release 2011-08-04
Genre Technology & Engineering
ISBN 111802902X

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The integration of new sources of energy like wind power, solar-power, small-scale generation, or combined heat and power in the power grid is something that impacts a lot of stakeholders: network companies (both distribution and transmission), the owners and operators of the DG units, other end-users of the power grid (including normal consumers like you and me) and not in the least policy makers and regulators. There is a lot of misunderstanding about the impact of DG on the power grid, with one side (including mainly some but certainly not all, network companies) claiming that the lights will go out soon, whereas the other side (including some DG operators and large parks of the general public) claiming that there is nothing to worry about and that it's all a conspiracy of the large production companies that want to protect their own interests and keep the electricity price high. The authors are of the strong opinion that this is NOT the way one should approach such an important subject as the integration of new, more environmentally friendly, sources of energy in the power grid. With this book the authors aim to bring some clarity to the debate allowing all stakeholders together to move to a solution. This book will introduce systematic and transparent methods for quantifying the impact of DG on the power grid.

Energy Storage Systems for Energy Management of Renewables in Distributed Generation Systems

Energy Storage Systems for Energy Management of Renewables in Distributed Generation Systems
Title Energy Storage Systems for Energy Management of Renewables in Distributed Generation Systems PDF eBook
Author Amjed Hina Fathima
Publisher
Total Pages
Release 2016
Genre Technology
ISBN

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Distributed generation (DG) systems are the key for implementation of micro/smart grids of today, and energy storages are becoming an integral part of such systems. Advancement in technology now ensures power storage and delivery from few seconds to days/months. But an effective management of the distributed energy resources and its storage systems is essential to ensure efficient operation and long service life. This chapter presents the issues faced in integrating renewables in DG and the growing necessity of energy storages. Types of energy storage systems (ESSs) and their applications have also been detailed. A brief literature study on energy management of ESSs in distributed microgrids has also been included. This is followed by a simple case study to illustrate the need and effect of management of ESSs in distributed systems.