首页> 外文会议>International Conference on Modeling, Simulation and Applied Optimization >Fault ride-through capability of wind farm (Case Study of Adama Wind Farm Project, Dynamic Modeling and Simulation)
【24h】

Fault ride-through capability of wind farm (Case Study of Adama Wind Farm Project, Dynamic Modeling and Simulation)

机译:风电场的故障穿越能力(阿达玛风电场项目案例研究,动态建模和仿真)

获取原文

摘要

Large scale megawatt wind farms like the Adama wind farm and Ashegoda is being integrated into the Ethiopian Electric Power System. The location of Adama wind farm is about 95 km from Addis Ababa (the capital city of Ethiopia) and 3km from Adama town, with an altitude elevation of 1824~1976m. The central geographical position of the wind farm is 39°13'48"E, 8°32'41"N. The Adama wind farm has two parts named by Phase-1 and Phase-2 with installed capacity of 51 MW and 153 MW respectively. Both Wind farms use variable speed wind turbines. However, the wind turbine type of Adama Phase-1 wind farm is a permanent magnet synchronous generator direct derive wind turbine (PMSG WT) while Adama phase-2 wind turbine is doubly fed induction generator wind turbine (DFIG WT). In this study the dynamic behavior of these wind turbines under fault conditions is discussed. The dynamic modeling of major components involved in wind energy conversion systems like aerodynamic modeling of the turbine rotor, dynamic modeling of generator, shaft system, drive train, controllers, converters, and other components that are involved in wind energy conversion process is done. Modeling and simulation of wind turbines (both PMSG WT and DFIG WT) are done by the DigSILENT PowerFactory Simulation tool. The wind farms (both phase-1 and phase-2) are modeled by aggregated modeling approach and tested for Fault Ride-through capability during three phase short circuit fault on the electric grid near to the wind farms. The simulation results showed that the integration of the wind farms to Ethiopian Electric Power Utility (EEU) network is feasible with respect Fault ride-through capability.
机译:大规模的兆瓦级风电场,如阿达玛风电场和阿希霍达(Ashegoda),正在被整合到埃塞俄比亚电力系统中。阿达玛风电场的位置距埃塞俄比亚首都亚的斯亚贝巴约95公里,距阿达玛镇3公里,海拔1824〜1976m。风电场的中心地理位置是东经39°13'48“,北经8°32'41”。阿达玛风电场有两个部分,分别称为第一阶段和第二阶段,装机容量分别为51兆瓦和153兆瓦。两个风电场均使用变速风力涡轮机。然而,阿达玛1期风电场的风力涡轮机类型是永磁同步发电机直接派生风力涡轮机(PMSG WT),而阿达玛2期风电涡轮机则是双馈感应发电机风力涡轮机(DFIG WT)。在这项研究中,讨论了这些风力涡轮机在故障条件下的动态行为。完成了风能转换系统中涉及的主要组件的动态建模,例如涡轮转子的空气动力学建模,发电机,轴系统,传动系统,控制器,转换器和风能转换过程中涉及的其他组件的动态建模。风力发电机(PMSG WT和DFIG WT)的建模和仿真是通过DigSILENT PowerFactory Simulation工具完成的。通过聚合建模方法对风电场(第1阶段和第2阶段)进行建模,并在靠近风电场的电网上进行三相短路故障期间的故障穿越能力测试。仿真结果表明,就故障穿越能力而言,将风电场集成到埃塞俄比亚电力公司(EEU)网络是可行的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号