Performance Improvement of Low Voltage Ride-Through Using Optimal Structure in DFIG

M. J. Harandi, Alireza Hosein Pour, Bahram Jahanbakhshi Pordanjani, M. Bina
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Abstract

Increasing wind energy utilization and connecting high-capacity wind farms to the grid has made it necessary to study their impact on grid stability and the requirements needed to increase grid reliability. The most important generator used in wind turbine technology is DFIG. Although this generator has many advantages, such as having converters with low rating devices which leads to lower cost, there are some disadvantages associated with that excessive overcurrent during short-circuit fault due to the direct connection of the stator to the AC grid. This paper proposes a new topology and novel control method to limit the fault current, so that grid requirements are met during transient fault. Also, this novel scheme does not add any complexity and power loss to system during normal operation,
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基于优化结构的DFIG低电压穿越性能改进
增加风能利用和将大容量风电场连接到电网使得有必要研究它们对电网稳定性的影响以及提高电网可靠性所需的要求。风力发电技术中最重要的发电机是DFIG。虽然这种发电机有许多优点,例如具有低额定装置的转换器,从而降低成本,但由于定子直接连接到交流电网,因此在短路故障期间存在过多过流的缺点。本文提出了一种新的拓扑结构和控制方法来限制故障电流,以满足暂态故障时电网的要求。同时,该方案在正常运行时不会增加系统的复杂性和功率损耗。
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