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風力發(fā)電引起的電壓波動和閃變(參考版)

2024-08-29 17:15本頁面
  

【正文】 Larsson 197。located hybrid wind park[J].IEEE Transactions on Energy Conversion,2001,16(2):123127.[20] Larsson 197。 Moreno V C,Duarte A H,Garcia U J.Propagation of flicker in electric power networks due to wind energy conversions systems[J].IEEE Transactions on Energy Conversion,2002,17(2):267272.[15]s H,Vilar C,Usaola J et al.Frequency domain analysis of flicker produced by wind energy conversions systems[C].Proceedings of the 8th International Conference on Harmonics and Quality of Power,Athens,Greece,1998:11621167.[14] National Laboratory,Ris248。rensen P.Methods for calculation of the flicker contributions from wind turbines[Z].Ris248。Walker F J,Jenkins N.Wind energy technology[M].Chichester:JOHN WILEY amp。Thiringer T.Power quality measurements performed on a lowvoltage grid equipped with two wind turbines[J ].IEEE Transactions on Energy Conversion,1996,11(3):601606.[9]Thiringer T,Dahlberg J.Periodic pulsations from a threebladed wind turbine[J].IEEE Transactions on Energy Conversion,2001,16(2):128133.[8]Spera A D.Wind turbine technology[M].New York:ASME Press, 1995.[7]Gredes G,Santjer F.Power quality of wind turbines and their interaction with the grid[C].Proceedings of 1994 European Wind Energy Conference,Thessaloniki,Greece,1994:11121115.[6]Achermann T,Garner K,Gardiner A.Embedded wind generation in weak gridseconomic optimization and power quality simulation[J].Renewable Energy,1999,18(2):205221.[5]IEC 6140021,Measurement and assessment of power quality characteristics of grid connected wind turbines[S].[4]林海雪(Lin Haixue).現(xiàn)代電能質(zhì)量的基本問題(Main problems of modern power quality)[J].電網(wǎng)技術(Power System Technology),2001,25(10):512.[3]孫樹勤.電壓波動與閃變[M].北京:中國電力出版社,1998.[2] 參考文獻[1]一些輔助設備(如靜止無功補償器和儲能元件等)在風力發(fā)電中的應用可有效減小電壓波動和閃變,從而改善電能質(zhì)量。對于目前已成為世界主流機型的變速恒頻風電機組而言,應綜合應用變流器控制和槳距角控制來調(diào)節(jié)風電機組的輸出功率。 (2)影響風力發(fā)電引起的電壓波動和閃變的因素很多,如風況、風電機組類型、控制系統(tǒng)和電網(wǎng)狀況等。這種閃變計算方法比較煩瑣,能否找到更簡便且計算精度和速度滿足要求的電壓波動和閃變的計算方法還是
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