Stability augmentation of interconnected offshore wind and marine current farms

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3 Scopus citations

Abstract

This paper presents a co-operative control scheme for a small scale offshore wind and marine current farms composed of variable speed wind turbine driven doubly fed induction generators (DFIGs) and fixed speed squirrel cage induction generators (IGs), respectively. One of the objectives of the proposed scheme is to reduce the overall cost due to the low cost of induction generator. However, induction generator has the stability problem as it requires large amount of reactive power to restore electromagnetic torque during grid disturbance. The proposed cooperative scheme will help marine current generators (IGs) in a marine current farm to provide necessary reactive power demand from their surrounding wind generators (DFIGs) resides in a offshore wind farm without installing additional reactive power compensating devices (STATCOM/SVC). Optimum capacities of wind and marine current farms that can be used in proposed scheme to augment the stability of both farms are also determined, in this study. Different types of fault conditions are examined and the effectiveness of the proposed control scheme is demonstrated by using laboratory standard power system simulator PSCAD/EMTDC.

Original languageBritish English
Title of host publicationProceedings
Subtitle of host publicationIECON 2011 - 37th Annual Conference of the IEEE Industrial Electronics Society
Pages961-966
Number of pages6
DOIs
StatePublished - 2011
Event37th Annual Conference of the IEEE Industrial Electronics Society, IECON 2011 - Melbourne, VIC, Australia
Duration: 7 Nov 201110 Nov 2011

Publication series

NameIECON Proceedings (Industrial Electronics Conference)

Conference

Conference37th Annual Conference of the IEEE Industrial Electronics Society, IECON 2011
Country/TerritoryAustralia
CityMelbourne, VIC
Period7/11/1110/11/11

Keywords

  • doubly fed induction generator
  • frequency converter
  • marine current farm
  • offshore wind farm
  • transient stability

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