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  • 學位論文

大型離岸風場採用GE及Vestas風機之電力系統衝擊分析

The Impact on Power System for a Large Offshore Wind Farm Using GE and Vestas Wind Turbine

指導教授 : 李清吟
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摘要


本文採用電力系統分析軟體PSS/E為模擬工具,並使用其內建之繞線式感應發電機及雙饋式感應發電機模型進行研究,並選擇台電離岸風力發電預定計劃中之彰化離岸風場進行模擬,模擬過程中採用Vestas公司生產之V80型繞線式感應發電機和GE公司生產之GE3.6型雙饋式感應發電機,並將兩種不同型式之風機配置於同一處離岸風場,且併入於台電線西D/S變電所161kV系統匯流排,探討藉由兩種不同廠牌之風機群組,以混合方式併聯運轉時,風機運轉於固定或變動風速期間,並進行模擬包括電壓變動、風場潮流、故障電流及暫態響應等分析,以及當風機具有LVRT功能於事故期間內,探討風場對系統的影響,用以瞭解風機對併網系統的衝擊及系統發生故障時對風機的影響,找出較佳的配置及控制方法。

關鍵字

風力發電 系統衝擊

並列摘要


In this paper, power system analysis software PSS/E for the simulation tools, and use its Wound Rotor Induction Generator and Doubly Fed Induction Generator model type research, and select offshore wind power Taipower's planned Changhua offshore wind farm simulation using the process of production of Vestas Wound type V80 and GE induction generator produces GE3.6 type of Doubly Fed Induction Generator type and two different forms of fan configuration in one place offshore wind farm, and the Hsien-His D/S system bus 161kV substation to explore two different brands with a group of fans to a hybrid method of parallel operation, the fan running at fixed or changes in wind speed during the and simulation, voltage variation, wind farm power flow, fault current and transient response analysis, as well as when the fan has LVRT function during the accident, the wind farm to explore the impact of the system to understand the system fan on and the impact of and system fault impact on the fans to find a better way to configure and control.

並列關鍵字

Wind Generation System Impact

參考文獻


[3] Z. Chen, “Issues of connecting wind farms into power systems,” Transmission and Distribution Conference and Exhibition: Asia and Pacific, 2005 IEEE/PES, pp.1-6.
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[5] Sun Tao, Zhe Chen and F. Blaabjerg, “Voltage recovery of grid-connected wind turbines after a short-circuit fault,” The 29th Annual Conference of the IEEE Industrial Electronics Society, Vol.3, 2003, pp. 2723-2728.
[9] J. Morren, S. W. H. de Haan, “Short-Circuit current of wind turbines with doubly fed induction generator,” IEEE Transactions on energy conversion, Vol. 22, Issue 1, March., 2007, pp. 174-180.
[10] D. Xiang, L. Ran, P. J. Tavner, S. Yang “Control of a Doubly Fed Induction Generator in a wind turbine During Gird Fault Ride-Through,” IEEE Transactions on energy conversion, Vol. 21, NO. 3, September., 2006, pp. 652-662.

被引用紀錄


徐永昌(2017)。離岸風力發電之關鍵影響因子及風險評估分析〔碩士論文,淡江大學〕。華藝線上圖書館。https://doi.org/10.6846/TKU.2017.01068
杜柄龍(2010)。風力發電工程執行之關鍵影響因素探討〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2010.01476
姚君憲(2011)。使用DFIG與DDSG分別評估澎湖風力發電最大占比〔碩士論文,國立臺北科技大學〕。華藝線上圖書館。https://www.airitilibrary.com/Article/Detail?DocID=U0006-2801201110341000

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