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考虑低电压穿越影响的双馈感应发电机谐波电流特性 被引量:3

Analysis on Harmonic Current of Double Fed Induction Generator Considering Low Voltage Ride Through
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摘要 双馈感应发电机(DFIG)作为当前应用最广泛的风力发电机,其特殊的结构使其故障运行特性十分复杂,尤其在低电压穿越(LVRT)运行状态下,已对电网安全运行和保护控制的顺利实施造成一系列影响。目前对DFIG的短路电流特性已有大量研究,但是针对定转子电流谐波特性的研究还鲜有报道。考虑LVRT的影响,对电网不对称故障情况下DFIG定、转子谐波电流的特性进行研究。从电磁暂态过程的角度详细推导了Crowbar动作后的DFIG定子谐波电流的解析表达式;在Crowbar未动作时,从转子侧变流器影响机理出发,研究了由变流器控制引起的定、转子谐波电流的产生机理。所得结论通过仿真进行了验证。 Double fed induction generator(DFIG) is the most widely used wind generator. Because of its special struc-tural design the operating characteristic of DFIG becomes much complicated during fault,especially under the low voltage ride through,and the output of DFIG has caused a series of effects on the safe operation of power grid and relay protection. At present a lot of research has focused on the short-current characteristic of DFIG,but the study of the harmonic current is rarely reported. This paper studies on the stator harmonic current and rotor harmonic current of DFIG during asymmetric fault with consideration of the effect of LVRT. From the perspective of electromagnetic transients,the analytic expressions of the DFIG stator harmonic current are derived in detail under the condition of Crowbar action. The generation mechanism of the harmonic current on the stator and rotor of DFIG caused by the converter control is researched under the condition of the crowbar inaction. The conclusion made is verified by simulation.
出处 《电网与清洁能源》 北大核心 2015年第7期106-113,共8页 Power System and Clean Energy
关键词 DFIG LVRT 不对称短路 变流器控制 谐波分析 DFIG LVRT asymmetric short circuit converter control harmonic analysis
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  • 1赵海岭,王维庆,姚秀萍,常喜强.改善基于双馈感应发电机并网风电场的低电压穿越能力研究[J].电网与清洁能源,2012,28(6):70-75. 被引量:5
  • 2金宇清.并网风电场的等效建模方法研究[D].南京:河海大学,2012.
  • 3NASER I S,GARBA A,ANAYA-LARA O,et al. Impact of Wind Generation on Voltage Stability in Low-voltage Dis-tribution Networks[C]. Glasgow:Proceedings of IEEE 44th International Universities Power Engineering Conference, 2009: 1-5.
  • 4DONGXU Z,XIAOMING L. Research on the Voltage Sta-bility Control for Wind Turbine Group Based on Dynamic Reactive Power Compensation[C]// Chengdu:Power and Energy Engineering Conference(APPEEC),2010 Asia-Pacific.IEEE,2010:1-5.
  • 5TOMKOI A,TAKAHASHI R,MURATA T,et al. Smooth-ing Control of Wind Power Generator Output by Supercon-ducting Magnetic Energy Storage System[C]. Seoul: Proceedings of International Conference on Electrical Machines and Systems,2007:302-307.
  • 6SENJYU T,SAKAMOTO R,URASAKI N,et al. Output Power Leveling of Wind Turbine Generator for All Operating Regions by Pitch Angle Control[J]. IEEE Transactions on Energy Conversion,2006,21(2):467-475.
  • 7ROGERIO G,ALMEDIA D,PEACAS LOPES J A. Parti-cipation of Doubly Fed Induction Wind Generators in System Frequency Regulation[J]. IEEE Transactions on Power Systems,2007,22(3):944-950.
  • 8廖勇,何金波,姚骏,庄凯.基于变桨距和转矩动态控制的直驱永磁同步风力发电机功率平滑控制[J].中国电机工程学报,2009,29(18):71-77. 被引量:108
  • 9曹军,王虹富,邱家驹.变速恒频双馈风电机组频率控制策略[J].电力系统自动化,2009,33(13):78-82. 被引量:130
  • 10傅旭,李海伟,李冰寒.大规模风电场并网对电网的影响及对策综述[J].陕西电力,2010,38(1):53-57. 被引量:89

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