Stabilization Control of Power System with Large-Scale Wind Farm by Using DFIG Considering Grid Codes

Md. Rifat Hazari, Effat Jahan, C. A. Hossain, Mohammad Abdul Mannan, A. Umemura, R. Takahashi, J. Tamura
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引用次数: 1

Abstract

This paper proposes an innovative operational scheme for a grid-connected large-scale wind farm (WF) which is composed of both fixed speed wind turbines with squirrel cage induction generators (FSWT-SCIGs) and variable speed wind turbine with doubly fed induction generators (VSWT-DFIGs). Normally, SCIG cannot fulfil the necessities of fault ride-through (FRT), because of the insufficient amount of reactive power supply during transient condition which may leads to the instability of the power system. Thus, in this paper, a new technique is proposed to stabilize SCIG by using DFIG in a grid-connected WF. A novel fuzzy logic controller (FLC) based rotor side controller is proposed for VSWT-DFIG to improve the FRT capability of FSWT-SCIG-based WF and transient stability of entire power system. The proposed FLC is designed in order to inject effective amount of reactive power during fault condition. The effectiveness of the proposed control strategy is verified through simulation analyses on a multi-machine power system model in PSCAD/EMTDC software. Additionally, the transient stability of the entire power system is evaluated by using the transient stability index.
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考虑电网规范的DFIG大型风电场电力系统稳定控制
本文提出了一种由鼠笼式感应发电机固定转速风力发电机(FSWT-SCIGs)和双馈式感应发电机变速风力发电机(VSWT-DFIGs)组成的并网大型风电场(WF)的创新运行方案。通常情况下,由于暂态状态下无功功率不足,导致电力系统不稳定,SCIG不能满足故障穿越的需要。因此,本文提出了一种在并网WF中利用DFIG稳定SCIG的新技术。提出了一种基于模糊逻辑控制器(FLC)的VSWT-DFIG转子侧控制器,以提高基于fswt - scig的WF的FRT能力和整个电力系统的暂态稳定性。该方法是为了在故障状态下注入有效的无功功率而设计的。通过PSCAD/EMTDC软件对多机电力系统模型的仿真分析,验证了所提控制策略的有效性。利用暂态稳定指标对整个电力系统的暂态稳定性进行了评价。
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