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AuthorElserougi, A.A.
AuthorBertozzi, O.
AuthorMassoud, Ahmed
AuthorAhmed, S.
Available date2022-03-23T06:57:30Z
Publication Date2020
Publication NameECCE 2020 - IEEE Energy Conversion Congress and Exposition
ResourceScopus
Identifierhttp://dx.doi.org/10.1109/ECCE44975.2020.9235621
URIhttp://hdl.handle.net/10576/28730
AbstractParallel connection of wind turbines (WTs) is beneficial in high-power applications. For successful operation of parallel WT-based energy conversion systems, a well-regulated voltage is needed at the collection point. Due to wind speed variation, the generated voltage from each WT may differ from one to another. Conventional solutions use regulating converters with full power rating. In this paper, a new concept is presented which depends on using fully-rated uncontrolled rectifier bridges for AC-DC conversion, and partially-rated fully-controlled bridge rectifiers which are used as voltage tuners to guarantee the flow of desired maximum power point DC currents through the parallel connected branches. The proposed system is simple, cost effective, reliable and efficient. The main drawback of the proposed system is the critical need for filters and VAR compensators on the AC side to ensure acceptable performance of the WT generator. Also, smoothing reactors are needed on the DC side for filtering of the transmitted DC current. A simulation model has been built to validate the proposed concept, and the simulation results show the effectiveness of the approach.
SponsorKing Abdullah University of Science and Technology
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
SubjectCost effectiveness
Electric connectors
Electric inverters
Energy conversion
Offshore oil well production
Offshore wind turbines
Rectifying circuits
Synchronous generators
Timing circuits
Wind
Acceptable performance
Energy conversion systems
High power applications
Maximum power point
Parallel connections
Uncontrolled rectifiers
Voltage-balancing circuits
Wind speed variations
Electric rectifiers
TitleInvestigation of a New Voltage Balancing Circuit for Parallel-connected Offshore PMSG-based Wind Turbines
TypeConference
Pagination4182-4188
dc.accessType Abstract Only


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