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Intelligent Renewable Energy Systems...
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Rigatos, Gerasimos.
Intelligent Renewable Energy Systems = Modelling and Control /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Intelligent Renewable Energy Systems/ by Gerasimos Rigatos.
Reminder of title:
Modelling and Control /
Author:
Rigatos, Gerasimos.
Description:
XXVII, 542 p. 236 illus., 194 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Energy systems. -
Online resource:
https://doi.org/10.1007/978-3-319-39156-4
ISBN:
9783319391564
Intelligent Renewable Energy Systems = Modelling and Control /
Rigatos, Gerasimos.
Intelligent Renewable Energy Systems
Modelling and Control /[electronic resource] :by Gerasimos Rigatos. - 1st ed. 2016. - XXVII, 542 p. 236 illus., 194 illus. in color.online resource. - Green Energy and Technology,1865-3529. - Green Energy and Technology,.
Electric machines and power electronics -- Control of the functioning of Doubly-fed induction generators -- Control of the functioning of synchronous generators -- Control of the functioning of multiphase electric machines -- Control of the functioning of DC to DC and AC to DC converters -- Control of the functioning of DC to AC converters -- Control of fuel cells and batteries -- Synchronization and stabilization of distributed power generation Units -- Condition monitoring and fault diagnosis for electric power generators -- Condition monitoring of the electric power transmission and distribution system -- Glossary.
Focused on renewable energy systems and the development of information and communication technologies (ICTs) for their integration in smart grids, this book presents recent advances and methods that help to ensure that power generation from renewable sources remains stable, that power losses are minimized, and that the reliable functioning of these power generation units is maintained. The book highlights key topics and technologies for renewable energy systems including the intelligent control of power generators, power electronics that connect renewable power generation units to the grid, and fault diagnosis for power generators and power electronics. In particular, the following topics are addressed: • Modeling and control of power generators (PMSGs, DFIGs); • Modeling and control of power electronics (converters, inverters); • Modeling and fault diagnosis of the transmission and distribution Grid; and • Modelling and control of distributed power generation units (interconnected synchronous generators or photovoltaic units). Because of the above coverage, members of the wider engineering community will find that the nonlinear control and estimation methods presented provide essential insights into the functioning of renewable energy power systems, while the academic community will find the book a valuable textbook for undergraduate or graduate courses on renewable energy systems.
ISBN: 9783319391564
Standard No.: 10.1007/978-3-319-39156-4doiSubjects--Topical Terms:
1253529
Energy systems.
LC Class. No.: TK1001-1841
Dewey Class. No.: 621.042
Intelligent Renewable Energy Systems = Modelling and Control /
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Electric machines and power electronics -- Control of the functioning of Doubly-fed induction generators -- Control of the functioning of synchronous generators -- Control of the functioning of multiphase electric machines -- Control of the functioning of DC to DC and AC to DC converters -- Control of the functioning of DC to AC converters -- Control of fuel cells and batteries -- Synchronization and stabilization of distributed power generation Units -- Condition monitoring and fault diagnosis for electric power generators -- Condition monitoring of the electric power transmission and distribution system -- Glossary.
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Focused on renewable energy systems and the development of information and communication technologies (ICTs) for their integration in smart grids, this book presents recent advances and methods that help to ensure that power generation from renewable sources remains stable, that power losses are minimized, and that the reliable functioning of these power generation units is maintained. The book highlights key topics and technologies for renewable energy systems including the intelligent control of power generators, power electronics that connect renewable power generation units to the grid, and fault diagnosis for power generators and power electronics. In particular, the following topics are addressed: • Modeling and control of power generators (PMSGs, DFIGs); • Modeling and control of power electronics (converters, inverters); • Modeling and fault diagnosis of the transmission and distribution Grid; and • Modelling and control of distributed power generation units (interconnected synchronous generators or photovoltaic units). Because of the above coverage, members of the wider engineering community will find that the nonlinear control and estimation methods presented provide essential insights into the functioning of renewable energy power systems, while the academic community will find the book a valuable textbook for undergraduate or graduate courses on renewable energy systems.
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