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连接海上风电场的基于直接功率控制的三电平VSC-HVDC

Three-level VSC-HVDC based on direct power control connecting offshore wind farm

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【作者】 解大解蕾张延迟艾芊

【Author】 XIE Da1,XIE Lei1,ZHANG Yan-chi2,3,AI Qian1(1.Electrical Engineering Department,Shanghai Jiao Tong University,Shanghai 200240,China;2.Automation Department,East China University of Science and Technology,Shanghai 200237,China;3.Electrical Engineering Department,Shanghai Dianji University,Shanghai 200240,China)

【机构】 上海交通大学电气工程系华东理工大学自动化系上海电机学院电气工程系

【摘要】 研究了连接海上风电场的基于电压源换流器的VSC-HVDC系统。多电平逆变器应用于VSC-HVDC系统提高系统传输容量并改善电能质量问题。利用基于功率控制的方法对VSC-HVDC系统进行了仿真,实现了双侧的独立控制,风电场侧由风机带换流器组成,采用基于滞环比较的功率控制,而系统侧三电平换流器采用基于直接功率控制,三个滞环控制器分别控制有功功率、无功功率和中点电压。仿真结果证实了基于此算法的VSC-HVDC系统连接大型海上风电场,可以正常稳定地运行。系统侧三电平换流器降低谐波含量并提高功率因数。

【Abstract】 VSC-HVDC system based on voltage source converter connecting large-scale offshore wind farm is illustrated.To improve the transmission capacity and solve power quality problem,multilevel inverter is used in VS C-HVDC system.The simulation system is built on the basis of power control algorithm,implementing the independent control on b i-lateral sides.On wind turbine side,there are wind generators with respective converte r,adopting the power control method based o n hysteresis comparison and the three-level converter on system side adopting multi-level direct power control,achieved by three hysteresis control devices for active power,reactive power and midpoint voltag e.The results on the simulation prove that under large transmission capacity,VS C-HVDC system connecting large-scale offshore wind farm and power system can operate under a normal and stable situation.Owing to the thre e-level inverter on system side,the power quality is better such as low harmonics and hi gh power factor.

  • 【文献出处】 电力系统保护与控制 ,Power System Protection and Control , 编辑部邮箱 ,2010年14期
  • 【分类号】TM721.1
  • 【被引频次】35
  • 【下载频次】502
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