Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/344200
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dc.coverage.spatialEnhancing low voltage ride through and transient stability of wind driven dfig with adaptive controllers
dc.date.accessioned2021-10-12T04:39:28Z-
dc.date.available2021-10-12T04:39:28Z-
dc.identifier.urihttp://hdl.handle.net/10603/344200-
dc.description.abstractnewlineEnvironmental concern and the perpetual increase in demand for electricity have necessitated finding alternative energy sources and devising methods to utilize existing renewable sources more efficiently. In recent decades, concerns regarding carbon emissions, climate change and limitation of fossil fuels have lead to a large increase in generation of electricity via renewable resources. Wind energy has been one of the most successful of these new additions to the generation pool. The rapid growth of electric power generation from wind is largely credited to the Doubly Fed Induction Generator (DFIG) technology. As penetration of wind energy has reached a substantial level, new power system operation issues have raised. One of the imperative concerns related to working of wind farms is the low voltage event during the presence of fault. The voltage drop produces adverse effects on wind turbines. Generally wind turbines are vulnerable to higher wind penetration and grid faults. In those conditions the protection of DFIG must be guaranteed to ensure the safe operation against over current and undesirable dc link voltage. The common solution, referred to as a crowbar , essentially short circuits the rotor windings to prevent excessive currents. However, this also effectively disables the machines and disconnects it from the grid, so the crowbar itself is not an effective aid. According to the new operational strategies, wind farms must be continuously connected to the grid without any interruption and provide reactive power for supporting the grid voltage during the grid faults. This capacity of wind farms is known as the Fault Ride Through (FRT) capability and also as the Low Voltage Ride Through (LVRT) capability.
dc.format.extentxxi,187p.
dc.languageEnglish
dc.relationp.177-186
dc.rightsuniversity
dc.titleEnhancing low voltage ride through and transient stability of wind driven dfig with adaptive controllers
dc.title.alternative
dc.creator.researcherMohammed Feros Khan J
dc.subject.keywordLow Voltage Ride Through
dc.subject.keywordAdaptive controllers
dc.subject.keywordEngineering Electrical and Electronic
dc.description.note
dc.contributor.guideShanmuga Vadivoo N
dc.publisher.placeChennai
dc.publisher.universityAnna University
dc.publisher.institutionFaculty of Electrical Engineering
dc.date.registered
dc.date.completed2020
dc.date.awarded2020
dc.format.dimensions21 cm
dc.format.accompanyingmaterialNone
dc.source.universityUniversity
dc.type.degreePh.D.
Appears in Departments:Faculty of Electrical Engineering

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02_certificates.pdf105.51 kBAdobe PDFView/Open
03_vivaproceedings.pdf188.07 kBAdobe PDFView/Open
04_bonafidecertificate.pdf348.94 kBAdobe PDFView/Open
05_abstracts.pdf20.7 kBAdobe PDFView/Open
06_acknowledgements.pdf96.12 kBAdobe PDFView/Open
07_contents.pdf22.71 kBAdobe PDFView/Open
08_listoftables.pdf51.8 kBAdobe PDFView/Open
09_.listoffigures.pdf66 kBAdobe PDFView/Open
10_listofabbreviations.pdf15.67 kBAdobe PDFView/Open
11_chapter1.pdf435.6 kBAdobe PDFView/Open
12_chapter2.pdf80.65 kBAdobe PDFView/Open
13_chapter3.pdf1.4 MBAdobe PDFView/Open
14_chapter4.pdf2.04 MBAdobe PDFView/Open
15_chapter5.pdf1.7 MBAdobe PDFView/Open
16_chapter6.pdf1.45 MBAdobe PDFView/Open
17_conclusion.pdf64.5 kBAdobe PDFView/Open
18_references.pdf92.61 kBAdobe PDFView/Open
19_listofpublications.pdf14.43 kBAdobe PDFView/Open
80_recommendation.pdf220.66 kBAdobe PDFView/Open


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