Modeling And Analysis Of Doubly Fed Induction Generator Wind Energy Systems: Modeling, Analysis And…

Paperback | April 21, 2015

byLingling Fan, Zhixin MiaoEditorLingling Fan

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Wind Energy Systems: Modeling, Analysis and Control with DFIG provides key information on machine/converter modelling strategies based on space vectors, complex vector, and further frequency-domain variables. It includes applications that focus on wind energy grid integration, with analysis and control explanations with examples. For those working in the field of wind energy integration examining the potential risk of stability is key, this edition looks at how wind energy is modelled, what kind of control systems are adopted, how it interacts with the grid, as well as suitable study approaches. Not only giving principles behind the dynamics of wind energy grid integration system, but also examining different strategies for analysis, such as frequency-domain-based and state-space-based approaches. Focuses on real and reactive power control Supported by PSCAD and Matlab/Simulink examples Considers the difference in control objectives between ac drive systems and grid integration systems

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From the Publisher

Wind Energy Systems: Modeling, Analysis and Control with DFIG provides key information on machine/converter modelling strategies based on space vectors, complex vector, and further frequency-domain variables. It includes applications that focus on wind energy grid integration, with analysis and control explanations with examples. For t...

Format:PaperbackDimensions:154 pages, 8.75 × 6.35 × 0.68 inPublished:April 21, 2015Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0128029692

ISBN - 13:9780128029695

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Table of Contents

1. Introduction of Wind Energy Integration Issues 2. AC machine modeling 3. Modeling of Doubly Fed Induction Generation (DFIG) converter control 4. Unbalanced DFIG Analysis 5. State-space based DFIG Wind Energy System Modeling 6. Frequency-domain based DFIG Wind Energy Systems Modeling 7. Multi-machine modeling and inter-area oscillation damping