Three-phase model of SCIG-based variable speed wind turbine for unbalanced DSLF analysis

Ismail Yusuf, R. Gianto
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Abstract

Steady state performances of the electric power distribution system are normally assessed or evaluated based on load flow analysis. To properly carry out the analysis, a valid steady state load flow model of each distribution system component, including the wind power plant (WPP), needs to be developed. The present paper proposes a method for modeling and integrating squirrel cage induction generator (SCIG)-based variable speed WPP into a three-phase unbalanced distribution system load flow (DSLF) analysis. The proposed method is based on a single-phase T-circuit model of fixed speed WPP, which has successfully been applied to balanced electric power systems. In the present work, the single-phase T-circuit model is extended and modified to be used in steady state load flow analysis of three-phase unbalanced distribution systems embedded with SCIG-based variable speed WPP. Results of the case studies confirm the validity of the proposed method.
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用于不平衡 DSLF 分析的 SCIG 变速风力发电机三相模型
配电系统的稳态性能通常根据负荷流分析进行评估或评价。为了正确进行分析,需要为包括风力发电站 (WPP) 在内的每个配电系统组件建立有效的稳态负载流模型。本文提出了一种建模方法,可将基于鼠笼式感应发电机(SCIG)的变速风力发电厂纳入三相不平衡配电系统负荷流(DSLF)分析中。所提方法基于定速 WPP 的单相 T 电路模型,该模型已成功应用于平衡电力系统。在本研究中,对单相 T 型电路模型进行了扩展和修改,以用于嵌入 SCIG 型变速水力发电机的三相不平衡配电系统的稳态负载流分析。案例研究结果证实了所提方法的有效性。
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